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This course is for you if you wish to prepare yourself for a broad spectrum of career opportunities, spanning the academic, commercial, industrial and healthcare applications of biomedical sciences. Read more
This course is for you if you wish to prepare yourself for a broad spectrum of career opportunities, spanning the academic, commercial, industrial and healthcare applications of biomedical sciences.

Course outline

This taught MSc Biomedical Science course is designed to provide training and experience in Biomedical Sciences. It offers an informed and critical appreciation of recent scientific developments. The specific aims are to:
-Provide a high level of scientific knowledge and understanding of disease processes from the molecular to the body/systems level
-Develop an informed and critical appreciation of recent scientific developments in relation to diagnostic laboratory pathology
-Enable students to gain, through a research project, additional specialist knowledge and practical expertise
-Prepare students for a broad spectrum of career opportunities spanning academic, commercial, industrial and healthcare applications of biomedical sciences. The course is also an excellent foundation for further studies leading to a PhD

[[What you will study
The programme is based around a core of six modules and a research project that provide detailed study and practical experience in key areas of biomedical sciences and in the development of professional skills. Modules are as follows:
-Human Diseases
-Immunology
-Toxicology
-Clinical and Molecular Endocrinology
-Human Physiology
-Research Methods
-Research Project

Learning, teaching & assesment

The course is assessed by a mixture of coursework, examinations, practical work, oral and written presentations. The research project module will be assessed on the basis of a submitted project report and an oral defense of a poster.

Your future career prospects

This course provides an ideal foundation for entering the pharmaceutical industry, the Scientific Civil Service or for further studies leading to a PhD. Many of our graduates have found this course to be a valuable qualification when applying for a PhD. Recent graduates have gained roles such as:
-Research Scholar, Symbiosis International University & Chest Research Foundation
-Biomedical Scientist, St George's Hospital (NHS)
-Administrative and Funding Coordinator, Access to Basic medical Care (ABC) Foundation
-Assistant Lecturer, Unspecified university
-Lab Technician, PROLIVFIC
-Lab Technologist/Army Officer, Military Hospital
-PhD, Institute of Inflammation and Repair, The University of Manchester
-Research Assistant, Aston University
-Research Consultant, Environmental sector
-Research Laboratory Technician, University of Birmingham

It must be emphasised that the course is NOT accredited by an outside organisation.

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This multidisciplinary MRes is ideal for recent graduates seeking to embark on a research career in biomedicine. The programme is focused on developing research and laboratory techniques, providing an opportunity to draw on the knowledge and expertise of the Institute of Child Health and Great Ormond Street Hospital. Read more
This multidisciplinary MRes is ideal for recent graduates seeking to embark on a research career in biomedicine. The programme is focused on developing research and laboratory techniques, providing an opportunity to draw on the knowledge and expertise of the Institute of Child Health and Great Ormond Street Hospital.

Degree information

The programme provides key knowledge, skills and techniques essential for a career in all fields of research in biomedicine, including professions allied to medicine. Practical research constitutes 75% of the programme. Students conduct one 10-week and one 20-week project under supervised conditions within highly-rated research programmes with an excellent track record of cutting-edge, high impact research.

Students undertake modules to the value of 180 credits. There are no optional modules for this programme.

The programme consists of three core modules (45 credits), a mini research project (45 credits) and a maxi research project (90 credits).

Core modules
-Understanding Research and Critical Appraisal: Biomedicine
-Research Methodology and Statistics
-Foundations of Biomedical Sciences

Dissertation/report
Students undertake two research projects, culminating in one dissertation of 6,000 words (mini project), and one dissertation of 12,000 words and an oral examination (maxi project).

Teaching and learning
The programme is delivered through a combination of seminars, taught modules, workshops, tutorials, portfolio development, self-directed learning, research workshops, specialised research allocation, and laboratory meetings. Assessment is through assignments, online examinations, presentations, portfolio, reflective report, an essay, the mini and maxi research projects, and a viva examination.

Careers

The majority of our graduates have gone on to secure PhD places. First destinations of recent graduates include: Biomedicine PhD, Endocrinology PhD, Laboratory Assistant and Research Assistant.

Top career destinations for this degree:
-Research Assistant, Imperial College London
-Laboratory Technician, University College London (UCL)
-Biomedical Researcher, Great Ormond Street Hospital for Children (NHS)
-PhD Biological Sciences, UCLA (University of California, Los Angeles)
-PhD Biomedicine, University College London (UCL)

Employability
The Biomedicine MRes is a comprehensive, one-year laboratory research-oriented programme designed to train and equip students prior to entering PhD or higher degree training. It allows clinicians to explore biomedical research before deciding whether to embark on a research-based career. It draws on the wealth of cutting-edge research conducted within UCL Institute of Child Health and Great Ormond Street Hospital. The programme is designed to allow students to explore other areas of biomedicine they may not have previously considered.

Why study this degree at UCL?

The Institute of Child Health (ICH), together with its clinical partner Great Ormond Street Hospital (GOSH), is the largest centre in Europe devoted to clinical and basic research postgraduate education in children's health. Our research and educational portfolio cover a broad range of paediatric issues, from molecular genetics to ovulation health sciences, and encourages interdisciplinary work and the development of new areas of investigation.

MRes Biomedicine students have the opportunity to draw on the extensive expertise and knowledge of both ICH and GOSH and benefit from excellent state-of-the-art facilities in both laboratory and non-laboratory subjects.

There is also the option to apply for a combined MRes + PhD four year programme.This option may be of interest for those who are able to obtain 4 years of funding and wish to go on to study for an MPhil/PhD at ICH/GOSH directly after completing the MRes degree.

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Do you want to further your knowledge of sport science and athletic development? Southampton Solent’s athletic development and peak performance master’s degree has been designed in partnership with industry experts to help equip students with skills, experience and knowledge precisely tailored to industry requirements. Read more

Overview

Do you want to further your knowledge of sport science and athletic development? Southampton Solent’s athletic development and peak performance master’s degree has been designed in partnership with industry experts to help equip students with skills, experience and knowledge precisely tailored to industry requirements.

- The course has a practical focus, combining hands-on experience with master’s theory to teach students how to apply learning to a professional sporting environment.
- Gaining practical experience is a key element of the programme and students are expected to undertake work placements alongside their studies for the duration of the course.
- Students have full access to the University’s leading sports science facilities, including a BASES-accredited physiology lab. Many of these facilities are regularly used by professional athletes.
- The course team has strong industry links from which students can benefit.
- Past students have benefitted from a programme of regular guest lectures.

The industry -

The UK health and fitness industry is experiencing continued growth. Fitness membership in the UK has risen by 4.5% and now exceeds 8 million (2014 State of the UK Fitness Industry Report). Despite this, industry commentators have urged the sector not to become complacent and to continue to promote a healthy lifestyle to the nation.

This course can help graduates tap into a number of good career opportunities in sport and exercise science across a number of specialist fields, from developing programmes for elite athletes to working with schools and colleges to encourage the next generation of athletes to excel.

The programme -

Built on a successful and popular undergraduate programme, this high-level master’s degree helps to prepare students for a career in the sports industry by delivering hands-on professional skills and adopting an interdisciplinary approach to coaching.

During the course, students will explore key areas such as talent identification, long-term athlete development, performance analysis, strength and conditioning, peak performance, technical and tactical development, marginal gains, and injury prevention and management.

To complement their studies, students are expected to undertake work placements relevant to the course within professional sport and exercise organisations. Working at all levels, from elite athletes to schools or rehabilitation patients, students will gain valuable ‘real-world’ experience working alongside leading experts. Work placements are expected to have been organised prior to joining the course; if students have been unable to organise a placement, the University will support them in finding a suitable opportunity.

Students have full access to the University’s leading, fully-equipped sports science facilities, which boast a BASES-accredited physiology laboratory, as well as biomechanics, health and exercise, and psychology laboratories. Many of these facilities are regularly used by professional athletes, including players from Southampton FC.

Past students have benefitted from a guest speaker programme which has featured lectures from professionals from the highest level of a variety of sports, who have shared their advice, knowledge and experience of the industry.

The course team has strong industry links and the University is a partner of Southampton FC. The University also works with other top sports organisations, including Reed’s High Performance Academy, British Swimming, Hampshire Rugby, Crystal Palace FC, London Irish RFC and GB Wheelchair Rugby.

Course Content

Technical Development in Sport: On this unit you will critically analyse coaching methods and how skill is acquired, building your understanding and use of technology for developing, monitoring and testing athletic performance.

Psycho-Social Development in Sport: The aim of this unit is to analyse the theories underpinning talent identification and long-term athlete development, and to examine the psycho-social factors affecting performance throughout an athlete’s career.

Physical Preparation in Sport and Exercise: This unit examines the science behind effective training, injury prevention and rehabilitation in a practical setting. You will focus on physical and mental loading, and on the key fitness components of strength, speed, endurance and flexibility.

Tactical Development in Sport: This unit focuses on performance analysis techniques, providing practical opportunities to collect, assimilate and analyse tactical, technical and time motion information, with the aim of improving performance.

Marginal Gains for Peak Performance: This unit identifies past, current and future methods of obtaining potential marginal advantage in performance, with a chance to build first-hand experience via off-site learning.

Individual Project: The project provides an opportunity to undertake a sustained, intensive and independent investigation into a topic of your choosing, presenting your work in a peer-reviewed journal format.

Programme specification document - http://mycourse.solent.ac.uk/course/view.php?id=6152

Teaching, learning and assessment -

The course combines theory-led sessions with practical sessions, working individually and in groups in both the laboratory and the field. On all units you’ll work with real-life clients, in a placement either organised yourself or by members of the course team.

Work experience -

Prior to starting the course you’ll be expected to have a placement organised that will last throughout your studies; this can be in more than one organisation if required. The placement should be in a role relevant to the course, and might include (but not limited to) coach, sport scientist, performance analyst, strength and conditioning coach, exercise physiologist, biomechanist, laboratory technician, etc.

If you’ve been unable to organise a placement, the course team will support you in finding a placement, potentially with university partners Southampton FC or a range of other top sports organisations, including Reed’s High Performance Academy, British Swimming, Hampshire Rugby, Crystal Palace FC, London Irish RFC, GB Wheelchair Rugby and more.

Assessment -

Assessment will be a range of written coursework, viva, presentations, reports and practical tests.

Our facilities -

You’ll have timetabled and extracurricular access to our BASES-accredited physiology laboratory (http://www.solent.ac.uk/business-community/hess/facilities/physiology-lab.aspx), as well as the biomechanics (http://www.solent.ac.uk/business-community/hess/facilities/biomechanics-lab.aspx), health and exercise (http://www.solent.ac.uk/business-community/hess/facilities/health-exercise-lab.aspx) and psychology laboratories (http://www.solent.ac.uk/business-community/hess/facilities/psychology-laboratory.aspx).

Study abroad -

Through discussion with your course leader you’ll have potential opportunities to study abroad through international placement in the industry, for example in Poland.

Web-based learning -

Solent’s virtual learning environment provides quick online access to assignments, lecture notes, suggested reading and other course information.

Why Solent?

What do we offer?

From a vibrant city centre campus to our first class facilities, this is where you can find out why you should choose Solent.

Facilities - http://www.solent.ac.uk/about/facilities/facilities.aspx

City living - http://www.solent.ac.uk/studying/southampton/living-in-southampton.aspx

Accommodation - http://www.solent.ac.uk/studying/accommodation/accommodation.aspx

Career Potential

The skills you’ll develop on this course open up a wide range of career opportunities in sport and exercise science, across every sport imaginable. You could work with professional, elite or Olympic athletes, meeting the challenges of ensuring they maintain peak fitness in world-class competition, or work with hospitals and health organisations to develop training and recovery programmes for patients suffering injury or disability. You could work with schools and/or colleges, developing fitness programmes and encouraging the next generation of athletes to excel.

Links with industry -

This MSc has been designed in conjunction with industry experts, ensuring you receive the skills and theory precisely tailored to industry requirements. Our industry partners are also integral in the provision of placement opportunities, giving you the advantage of real-world experience alongside potential employers during your master’s studies.

The course also incorporates a series of guest lecturers from the highest level of a variety of sports, to share their advice, knowledge and experience of the industry.

Transferable skills -

Presentation, project and time management, leadership, communication, IT and numeracy skills are developed in both the classroom and practical placement opportunities.

Further study -

You’ll have the opportunity to specialise at the highest level with Solent’s PhD programme, under the guidance of various staff members.

Tuition fees

The tuition fees for the 2016/2017 academic year are:

UK and EU full-time fees: £6,695

International full-time fees: £12,380

Other costs -

Compulsory BASES membership: £24

Graduation costs -

Graduation is the ceremony to celebrate the achievements of your studies. For graduates in 2015, there is no charge to attend graduation, but you will be required to pay for the rental of your academic gown (approximately £42 per graduate, depending on your award). You may also wish to purchase official photography packages, which range in price from £15 to £200+. Graduation is not compulsory, so if you prefer to have your award sent to you, there is no cost.
For more details, please visit: http://www.solent.ac.uk/studying/graduation/home.aspx

Next steps

Think you’ve got what it takes to succeed in sport and exercise science? By combining practical experience with advanced academic theory, Southampton Solent’s athletic development and peak performance master’s degree will help you to take your sport science or coaching career to the next level.

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The Biology PGCE prepares students to develop the professional knowledge and skills they need to teach all aspects of science to pupils up to age 16, as well as teaching Biology to pupils aged up to 18. Read more
The Biology PGCE prepares students to develop the professional knowledge and skills they need to teach all aspects of science to pupils up to age 16, as well as teaching Biology to pupils aged up to 18. We are committed to creative and interactive approaches to teaching science to promote student learning.

Degree information

Students on the Biology PGCE will acquire a critical understanding of current debates and issues relating to science education, and will be guided and supported in developing their subject knowledge. We expect students to engage with reading and research into science education and to regularly reflect upon their own progress, towards meeting the Teachers’ Standards across the 11–16 age range.

Students undertake two level 7 (Master’s-level) modules of 30 credits each, totaling 60 credits. These can be carried forward onto full Master’s programmes at the IOE.

The Secondary PGCE consists of three core modules: two Master’s-level (level 7) modules, which are assessed through written assignments, and the Professional Practice module, which is assessed by the observation of practical teaching in placement schools.

Completion of the Professional Practice module and the two level 7 (Master’s level) modules (60 credits) will result in the award of a Postgraduate Certificate of Education (PGCE). Completion of the Professional Practice module and one or two level 6 (undergraduate/Bachelor’s level) modules, will lead to the Professional Graduate Certificate of Education (PgCE). There are no optional modules for this programme.

Core modules
-Science Education in the Broader Context (30 Master's-level credits)
-Wider Educational Issues (30 Master's-level credits)
-Professional Practice

Placement
Student teachers undertake at least two placements (totaling 120 days) at a school or college, during which time their teaching practice will be supported by a school subject tutor and mentor. The Professional Practice module is assessed through these placements, associated tasks and a portfolio.

Students may teach:
-Key Stage 3: Science (including elements of Physics, Chemistry and Biology)
-Key Stage 4: Science (all areas) and/or Biology (depending on school placement)
-Key Stage 5: AS/A2 level Biology

Teaching and learning
The Biology PGCE is delivered via keynote lectures, seminars, workshops, tutorials and directed study days at the IOE, as well as time spent in placement schools or colleges. Assessment is by the observation of practical teaching, assignments and a portfolio (which links with continuing professional development in the induction year).

Careers

Graduates of this programme are currently working across a broad range of areas. Some are working as school leaders, while others have posts as biology teachers, science teachers and heads of department (both in UK and abroad). They can also be found working as lecturers in science education and in various informal educational roles.

Top career destinations for this degree:
-Secondary Science Teacher, Unspecified School
-Self-employed private tutor
-Biology Teacher, Unspecified 6th Form College
-Teaching Assistant, Unspecified Secondary School
-Laboratory Technician / Secondary School Science Teacher, Cyprus School

Employability
A Biology PGCE from the UCL IOE carries considerable currency and is highly valued by schools, which alongside the quality of training received, puts students in a strong position in the employment market. Last year, all those students who sought employment in a school were successful. We expect 100% success rate in gaining a post in a school by the end of the year.

Why study this degree at UCL?

Students on the Biology PGCE work with a team of expert subject tutors who have all previously been classroom teachers and are actively involved with science education research, curriculum development and consultancy. During teaching practice, student teachers benefit from the support of subject specialist mentors within our network of over 200 schools throughout Greater London and beyond, ensuring each has the opportunity to become a skilled and confident teacher.

The Biology PGCE offers unique opportunities including teaching sessions at museums and Kew Gardens, and residential trips, developing students’ understanding of learning science outside the classroom.

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Study at the frontiers of archaeological science. Like a handful of comparable courses, the York MSc in Bioarchaeology provides training in the advanced osteoarchaeological analysis of skeletal remains. Read more
Study at the frontiers of archaeological science

Why choose this course?

Like a handful of comparable courses, the York MSc in Bioarchaeology provides training in the advanced osteoarchaeological analysis of skeletal remains. Uniquely, however, it is the only course in the UK to combine this discipline with the molecular analysis of human remains. Nowhere else can you immerse yourself in the study of stable isotopes, lipid residue analysis, palaeoproteomics and ancient DNA – and play an active role in the development of new techniques in this constantly evolving branch of archaeology. In 2014, seven of the top 100 discoveries in science were in archaeology, and BioArCh staff were involved in three of these.
-Advanced training in human osteoarchaeology, delivered by the UK’s leading practitioners
-Study ancient biomolecules in world-class facilities at the BioArch centre and Department of Biology
-Unique opportunity to combine bioarchaeology with complementary subjects and tailor a course to suit your interests
-Access an incredible range of in-house analytical equipment
-Take part in cutting-edge science and build essential practical skills
-Work alongside leading researchers and academics in a diverse range of specialisms
-Work on diverse material that is often ‘fresh out of the ground’ and make valuable contributions to live projects Receive career and research guidance from staff with significant experience in the sector and a track record of successfully placing PhD students

What does the course cover?

Through a combination of academic studies, practical training and dissertation research, this course provides a thorough grounding in all aspects of bioarchaeology theory, investigation and practice.

Uniquely, you can combine bioarchaeology with a range of subjects and tailor your degree to your own interests. You could adopt a ‘period’ focus, for example, to specialise in the bioarchaeology of the Medieval, Viking, Mesolithic or early prehistoric periods. You could combine human bioarchaeology with zooarchaeology and orientate your course towards more advanced studies of bone function and anatomy. Or you could focus on skills such as GIS modelling and field archaeology.

Who is it for?

This course is designed for students with a passionate interest in the future of archaeology, who want to work at the frontiers of archaeological science. The degree is primarily aimed at those whose previous experience is in archaeology, anthropology, biology or related fields, but we do accept students from diverse backgrounds. The common factor among our student intake is a keen interest in science and in human remains at a biomolecular or bone level.

What can it lead to?

Molecular analysis is used increasingly widely in archaeology, but the range of osteological and molecular skills offered by the course provide valuable training and expertise for a wide range of careers and further study.

Many students go on to take PhDs at York and other institutions around the world. Others pursue a wide range of professional careers, from osteoarchaeology and environmental archaeology to the medical humanities and laboratory technician work.

Careers

By the end of the MSc Bioarchaeology course you will be able to:
-Identify and record human bone assemblages
-Age, sex and assess pathologies from human bones
-Understand advanced methods for analysing bone tissues, including biomolecular methods
-Apply chemical and biomolecular methods to skeletal material
-Understand the processes of decay and diagenesis of bone tissue
-Critically evaluate published research and datasets
-Orally present knowledge and concepts
-Work effectively within a laboratory environment
-Plan, design and undertake a piece of independent research

These skills and techniques are deployed widely in the field of archaeological research and exploration, but they are also valuable for a wide range of careers and further studies.

Many our MSc Bioarchaeology postgraduates go on to further research in bioarchaeological and environmental fields. The BioArch department has a successful track record of placing students on PhD courses in York and institutions worldwide.

Here’s a selection of the career and research destinations of some of our recent students: US graduate school programmes
-Archaeological field units
-Environmental archaeology
-Professional archaeologists – field and laboratory based
-Laboratory technicians
-Demonstrators
-University/research technicians
-Academia
-On-site osteoarchaeologists
-Medical humanities

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The Master of Science in Horse Science at MTSU centers on a curriculum designed to prepare graduates for the multi-faceted equine industry. Read more
The Master of Science in Horse Science at MTSU centers on a curriculum designed to prepare graduates for the multi-faceted equine industry. Programs are tailored to students’ interests and produce graduates able to adapt to and thrive in this dynamic field. Students may choose from Equine Education, Equine Physiology or Industry Management concentrations. Only the top qualified applicants are invited for an interview at the applicant’s expense, prior to final acceptance into the program. Faculty members mentor students in curriculum development and provide training in scientific methods, principles of equine student education and instruction, and general industry practices. All M.S. degree candidates share a common core of coursework in statistics, research methods, and multiple disciplines in horse science and animal science. A significant number of elective credit hours are available, permitting each student to customize the program with courses in other departments. A limited number of graduate teaching assistantships are available.

Degrees

The Master of Science in Horse Science is offered with three concentrations:

Equine Education includes interdisciplinary courses in coaching and sports management to strengthen knowledge for careers as collegiate riding instructors, equestrian team coaches, horse judging team coaches, or agents for the Cooperative Extension Service.

Equine Physiology emphasizes an interdisciplinary, science-based curriculum structured to build knowledge of scientific principles and apply these principles to a thesis research project related to equine science. Students successfully completing the concentration are prepared for admission into an animal science or equine science Ph.D. program. Students entering this concentration must have a strong foundation in undergraduate biology and chemistry, including organic chemistry.

Industry Management allows students to complete interdisciplinary courses in business management, marketing, and/or sports management to tailor their curriculum for specific industry-related careers.

Equine Education or Industry Management students may choose a research-based thesis or a non-thesis equine experiential learning option. Equine Physiology students must complete a research-based thesis.

The selection procedure is a two-phase process. Based on a review of applications to the M.S. Horse Science program, qualified students are invited for an interview at their expense. Not all applicants are invited for the personal interview.

Career

A wide variety of careers are associated with the horse industry. A student’s talent may pertain directly to horses or to science, education, marketing, management, or business. Some potential career options with advanced degrees in Horse Science follow:

Collegiate horsemanship instructor or equestrian team coach
Community college or technical school instructor
Equine behaviorist
Equine exercise physiologist
Equine facilities manager
Equine nutritionist, equine feed specialist, or nutrition laboratory technician
Equine reproductive physiologist
Horse extension specialist or extension agent
Instructor or program coordinator of therapeutic riding and equine-assisted therapies
Journalist for major horse publications (breed or discipline-specific magazines)
Pasture management specialist
Pharmaceutical representative for equine products
University instructor or teaching professor specializing in horses

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This course will suit you if you are a sport and exercise graduate, a graduate from a related science or a medical student looking to specialise in the field of exercise physiology. Read more

Course in brief

This course will suit you if you are a sport and exercise graduate, a graduate from a related science or a medical student looking to specialise in the field of exercise physiology.

It is designed to focus on professional skills that improve your employability, as you learn with state-of-the-art equipment including environmental chambers, breath-by-breath analysers, blood sampling analysers and transcranial magnetic stimulation devices.

You also again gain real-world experience in areas relevant to your interests by working alongside experienced practitioners. Past projects have included working with participants in our cardiac rehabilitation programme.

Our teaching laboratories are accredited by the British Association of Sport and Exercise Sciences (BASES), as are most of our course staff. You can register on the BASES Supervised Experience Scheme yourself to achieve personal accreditation.

Course structure

The course is flexible in that it allows you to exit with a postgraduate certificate at the end of one semester (three 20-credit modules) or a postgraduate diploma at the end of two semesters (six 20-credit modules). You must complete the 60-credit research project to qualify for the MSc.

You spend around 100 hours of the course with an organisation related to the practice of physiology, which will allow you to apply your academic knowledge in a vocational setting. Previous students have worked in organisations including a cardiac rehabilitation programme and fall prevention classes with Albion in the Community.Many students have started their professional careers with the organisation that provided them with work experience.

Areas of study

In taught physiology modules, you'll experience and discuss the responses of the human body to various stimuli, including effect of environmental changes (heat and hypoxic chambers) and of ergogenic aids which can be used to simulate peculiar clinical conditions and help students understand better exercise tolerance. This novel approach to teaching integrative physiology will help you to develop a host of laboratory skills. You will be introduced to the latest in the research field of exercise physiology and will have an opportunity to write your own paper from your research project.

With modules such as Professional Enquiry, you'll also gain vocational skills to give you a competitive edge in the job market; through placement opportunities and chances to network in the world of exercise physiology, you'll graduate with a foot firmly in the industry.

Modules

Critical Insights into the Study of Physiology
Professional Enquiry
Exercise Tolerance (integrative physiology)
Expertise in Laboratory Skills for Exercise Physiologists
Options:

Applied Environmental Physiology
Innovation, Entrepreneurship and Small Business Management
Ethical and Social Responsibility: Theory and Application
Bodies of Sport
Consultancy
Issues and Innovations in Physiology

Teaching environment

Laboratory work
- We accept a maximum of 15 students on this course
- All classes take place in our Exercise Physiology Laboratories with a ratio of 2:3 (staff:students)
- Students work in groups of four to five on problem-based situations.

Tutorials
- Students can book individual tutorials with every lecturer offering around three hours of tutorials per week.
- Group tutorials are also scheduled in our teaching programmes.

Careers and employability

Career opportunities for sport and exercise scientists are growing. Sports science is recognised as a vital ingredient in the success and development of most sports and for the individuals that take part it is an everyday aspect of their training. Many hospitals and Primary Care Trusts are also appointing specialists with exercise backgrounds to work in areas such as cardiac rehabilitation and health promotion.

An MSc in Applied Exercise Physiology from the University of Brighton will help you to stand out in today's competitive job market. It will equip you with both the theoretical knowledge and practical skills necessary for a successful career and is also ideal preparation for continuing your study at MPhil or PhD level.

Our graduates have started their careers with organisations including:

The East Sussex Healthcare NHS trust (cardiovascular and physiological clinical trials officer; cardiac technician/physiologist)
BUPA (clinical physiologist)

Facilities

Our facilities include an x-m square Gym over two floors with state-of-the-art fitness equipment including a three-camera system to analyse weight-lifting actions and an isokinetic dynamometer to allow measurement of muscle strength. Our sport and exercise laboratories which are all accredited by the British Association of Sport and Exercise Sciences (BASES) and include:
- A Molecular genetics laboratory with biobanking
- A biomechanics laboratory with motion analysis equipment, various EMG systems, an immersive screen
- Two exercise physiology laboratories where aerobic / anaerobic endurance, power and strength assessments as well as body composition, cardiac and pulmonary screening can be carried out
- An Environmental Laboratory with purpose-built environment chamber where we can simulate different climates by controlling the temperature (-20 to +50°C) and relative humidity (20 to 95 per cent), and a 1.13m x 1.13m x 1.5 m water immersion tank
- A research-based laboratory with an oxygen-controlled chamber to simulate altitude (hypoxia)
- A biochemistry laboratory where we can analyse blood and tissue samples.

Visit: https://www.brighton.ac.uk/sesame/facilities/index.aspx

Course blog

Find out news about the course at http://blogs.brighton.ac.uk/sesmsc/

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With our world-class reputation, renowned experts and new research facilities, we are well placed to offer dentistry and dental research opportunities of the highest international standard. Read more
With our world-class reputation, renowned experts and new research facilities, we are well placed to offer dentistry and dental research opportunities of the highest international standard.

As a postgraduate research student studying for a Dental Sciences MPhil or PhD, you will be based within the Faculty of Medical Sciences.

The programme is delivered in the School of Dental Sciences, the Centre for Oral Health Research (COHR) and the Faculty in addition to the relevant Biomedical Research Institutes for:
-Ageing
-Cell and Molecular Biosciences
-Cellular Medicine
-Health and Society
-Genetic Medicine
-Neurosciences
-Cancer

If your research involves clinical components there may be a partnership with the NHS.

The School of Dental Sciences and COHR

You will spend most of your time within the School of Dental Sciences and the COHR, working within research teams led by experts in their field in a friendly and supportive atmosphere.

We combine world-class clinical and research facilities with an open environment where scholars, clinicians and researchers benefit from working side-by-side. Our focus is on multidisciplinary translational research, work that is relevant to real life.

COHR has a particular focus on understanding molecular and cellular mechanisms and translating these into clinical settings. Evaluation of clinical, community and economic strategies to improve public health and inform a wider health agenda is a central research theme. Within COHR there is a Collaborating Centre for the World Health Organization for Nutrition and Oral Health. Research projects are strongly aligned to the Centre's main research themes:
-Translational oral biosciences
-Oral healthcare and epidemiology
-Biomaterials and biological interfaces

COHR is involved in a number of industrial collaborations. We also work together with the Newcastle Clinical Trials Unit to provide planning, design and implementation of clinical trials in oral health.

Delivery

Certain taught elements of the programme are compulsory, eg laboratory safety. Other taught components are agreed between you and your supervisors depending on your skills and the requirements of the research project.

You are expected to work 40 hours per week with an annual holiday entitlement of 35 days, which includes statutory and bank holidays.

Laboratory work needing to be undertaken outside of normal working hours can be arranged with prior agreement. All our research students are encouraged to attend research seminars and events held within COHR, the Faculty of Medical Sciences Graduate School and your relevant Biomedical Research Institute.

Facilities

The School of Dental Sciences at Newcastle is one of the most modern and best equipped in the country, occupying a spacious, purpose-built facility. The School is in the same building as the Dental Hospital, adjacent to the Medical School and Royal Victoria Infirmary teaching hospital, forming one of the largest integrated teaching and hospital complexes in the country.

Our facilities include:
-In-house production laboratories providing excellent learning opportunities around clinician-technician communication
-Excellent library and computing facilities on-site
-A dedicated clinical research facility offering clinical training and research opportunities of the highest international standard

The Centre for Oral Health Research (COHR) offers a range of research laboratories, undertaking work in oral biology, fluoride research and dental materials science. The research laboratory facilities include:
-Cell and molecular biosciences laboratory
-Dental Clinical Research Facility (CRF)
-Dental materials laboratory
-Fluoride laboratory
-Hard tissue laboratory

Together, the School and COHR offer the highest international standard in clinical training and research opportunities.

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This MSc provides participants with a theoretical understanding of research questions and methodologies in the study of past human-environment interactions, including subsistence and subsistence change. Read more
This MSc provides participants with a theoretical understanding of research questions and methodologies in the study of past human-environment interactions, including subsistence and subsistence change. The Institute of Archaeology has a long research and training tradition in environmental archaeology, and has well-established laboratory facilities and reference collections as a result.

Degree information

Students gain practical experience in laboratory analysis of at least one of either: identification of animal bones, identification of plant macro-remains, sedimentological analyses. They develop an understanding of stratigraphic formation processes and their implications for developing sampling strategies, and are trained to collect and analyse data and report scientific results.

Students undertake modules to the value of 180 credits. The programme consists of three core modules (45 credits), optional modules (45 credits) and a research dissertation (90 credits).

Core modules - students are required to take the following:
-Environmental Archaeology in Practice
-Resources and Subsistence

Optional modules
-Archaeology of the Late Pleistocene and Holocene Hunter Gatherers
-British and European Prehistory: Neolithic to Iron Age
-Funerary Archaeology
-Middle Bronze Age to the Iron Age in the Near East: City-States and Empires
-The Aegean from First Farmers to Minoan States
-The Mediterranean World in the Iron Age
-The Neolithic and Early Bronze Age of the Near East: The emergence of villages and urban societies

Dissertation/report
All students undertake an independent research project, normally based on practical laboratory-based research, which culminates in a dissertation of 15,000 words.

Teaching and learning
The programme is delivered through a combination of lectures, seminars, presentations, laboratory sessions, practicals, and site and museum visits. Assessment is through the dissertation, and a combination of essays, coursework, presentations, practical examination and laboratory reports, depending on the options selected.

Careers

Some graduates of the programme go on to PhD studies but others will be well-placed to pursue a wide range of professional careers both within and beyond archaeology, including employment as environmental specialists for contract archaeology units.

Top career destinations for this degree:
-Archeology in South Asia, University of Barcelona.
-Archaeological Technician, Southeast Archeological Center.
-PhD Archaeology, University of Exeter.

Why study this degree at UCL?

The UCL Institute of Archaeology is the largest and most diverse department of archaeology in the UK, and provides a stimulating environment for postgraduate study.

The institute boasts a wide range of laboratory facilities relevant to this degree including dedicated laboratories for zooarchaeology (with a comparative collection of Near Eastern and European faunal remains), archaeobotany (with extensive comparative collections for seeds, wood, tubers, phytoliths and pollen); phytolith processing, sedimentology and scanning electron microscopy.

UCL is located in central London, close to the resources of the British Museum, the British Library and the Natural History Museum.

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Develop advanced laboratory research skills to progress your career in the field of toxicology. You will enhance your understanding of the interaction of toxins with molecular targets, target organ toxicity, and the role of the immune system in response to toxins. Read more
Develop advanced laboratory research skills to progress your career in the field of toxicology. You will enhance your understanding of the interaction of toxins with molecular targets, target organ toxicity, and the role of the immune system in response to toxins.

You will learn about specific tests utilised in both research and industry, such as toxicological screening programmes used by pharmaceutical and medical companies, and improve your presentation and communication skills by analysing scientific literature and presenting scientific information. You will have access to a variety of research projects which align with the expertise of our staff within the Centre for Biomedical Sciences Research, including neurotoxicity testing using cell culture methods and developing smart bandages for wound care.

You will spend more than 200 hours within our biomedical laboratories, and have access to cell culture facilities and up-to-date molecular toxicology techniques.

- Research Excellence Framework 2014: twice as many of our staff - 220 - were entered into the research assessment for 2014 compared to the number entered in 200.

Visit the website http://courses.leedsbeckett.ac.uk/toxicological_sciences

Mature Applicants

Our University welcomes applications from mature applicants who demonstrate academic potential. We usually require some evidence of recent academic study, for example completion of an access course, however recent relevant work experience may also be considered. Please note that for some of our professional courses all applicants will need to meet the specified entry criteria and in these cases work experience cannot be considered in lieu.

If you wish to apply through this route you should refer to our University Recognition of Prior Learning policy that is available on our website (http://www.leedsbeckett.ac.uk/studenthub/recognition-of-prior-learning.htm).

Please note that all applicants to our University are required to meet our standard English language requirement of GCSE grade C or equivalent, variations to this will be listed on the individual course entry requirements.

Careers

You will be able to enter a wide range of careers, from working in scientific laboratories in pharmaceutical companies to developing further investigative and innovative research. Our course will provide the expertise you require to secure employment in laboratories in commercial industries such as food manufacturing or chemical facilities, where you will utilise your research and lab skills.

- Toxicologist
- Scientific Labratory Technician
- Microbiologist

Careers advice: The dedicated Jobs and Careers team offers expert advice and a host of resources to help you choose and gain employment. Whether you're in your first or final year, you can speak to members of staff from our Careers Office who can offer you advice from writing a CV to searching for jobs.

Visit the careers site - https://www.leedsbeckett.ac.uk/employability/jobs-careers-support.htm

Course Benefits

You will spend over 200 hours of our course making good use of our biomedical science laboratories, working on specific research projects that are of interest to you and that align with our expertise. We will give you access to Class 2 microbiology facilities, along with cell culture and micro-electric fabrication equipment. With our new biomedical sciences research laboratory (opened in 2013), you will be able to conduct project work in a dedicated research environment and will benefit from an enhanced range of equipment.

You'll have your own tutor to support you in your specialist project areas, and will also have time work collaboratively with other research areas to enhance your overall outlook. Guest lectures from industry professionals will provide you with a valuable insight into the research methods currently used in practice.

Core Modules

Contemporary Research In Biomedical Science
Develop your ability to discuss and evaluate current research in biomedical sciences, and to relate this both to the theoretical basis of the subject and to the methodologies used to generate the data.

Advanced Professional Practice and Research
Gain a grounding in the different approaches to research, including quantitatative and qualitative data collection methods, allowing you to plan your own research and more.

Bio-analytical Techniques
Develop a greater understanding of analytical methods, along with how they can be optimised and assessed. You will also gain practical experience in the development of these skills.

Cellular Toxicology
Develop your understanding of the core principles of toxicology and an appreciation of current research in the area by preparing your own portfolio and by critically evaluating other laboratory-based techniques.

Research Project
Undertake an independent research project within the remit of expertise of our course team.

Mechanisms and Molecular Aspects of Immunopathology
Understand immunological disease and disorders, transplantation immunology, prophylaxis and immunotherapy.

Molecular Toxicology
Further explore selected aspects of toxicology and its applications leading to the development of a narrative review.

Facilities

- Biomedical Research Laboratory
The latest scientific testing equipment lets you put your learning into practice and break new ground in biomedical research.

- Library
Our libraries are two of the only university libraries in the UK open 24/7 every day of the year. However you like to study, the libraries have got you covered with group study, silent study, extensive e-learning resources and PC suites.

- Biomedical Science Laboratory
Housing state-of-the-art IT and AV facilities, our new Biomedical Sciences laboratory provides important, cutting edge facilities for our students including walk-in cold rooms.

Find out how to apply here - http://www.leedsbeckett.ac.uk/postgraduate/how-to-apply/

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If you wish to work with sports performers as a strength and conditioner, or applied sports scientist, this innovative course is for you. Read more
If you wish to work with sports performers as a strength and conditioner, or applied sports scientist, this innovative course is for you.

Designed to meet the needs of students interested in the optimisation the fitness capacities required for high level performance in sport, it will provide the theory and foundation knowledge and skills you need to pursue professional accreditation with a number of bodies including the British Association of Sport and Exercise Sciences (BASES); the United Kingdom Strength and Conditioning Association (UKSCA).

Visit the website: https://www.beds.ac.uk/howtoapply/courses/postgraduate/next-year/strength-and-conditioning#about

Course detail

• Study on a unique course with a multidisciplinary approach to strength and conditioning and gain access to world-leading staff expertise and research. In the 2014 Research Excellence Framework (REF) three quarters of our work across sports science, PE and tourism and leisure has internationally recognised impact. More than 95% of our research outputs are rated as internationally recognised or better (compared with a sector average of 93%).
• Explore a range of disciplines and their contribution to helping athletes increase performance, including: strength and conditioning; testing physical capacities; sport science support; laboratory skills.
• Develop your research skills and capabilities including research design and ethics, statistics and laboratory skills, opening up additional career opportunities
• Gain from a course designed to prepare you to for employment in the rewarding and expanding field of strength and conditioning
• Benefit from gaining the necessary skills to pursue roles including Strength and Conditioning Specialist; Applied Sports Scientist; Laboratory Specialised Technician (eg in universities, sports clubs or hospitals) and/or continue to further research-based study on Masters by research, MPhil or PhD programmes.
• Learn in the newly-opened arena facility which provides a space for modern fitness professional to train in a controlled environment designed for student only access. A wide range of cardiovascular and resistance equipment is available including a dedicated Strength and Conditioning suite with weight lifting equipment vital to the development of a Strength and Conditioning coach's delivery skills.

Modules

• Research Methods
• Strength and Conditioning Dissertation
• Assessment of Physical Capacities
• Sport Science Support
• Strength and Conditioning
• Exercise and Nutrition for Clinical Populations*
• Laboratory Skills*
• Placement (short)*
• Placement (long)*

*denotes options

Modes of assessment include examinations (seen and unseen), essays, practical tests, laboratory reports, research projects, case studies, presentations and data-analysis exercises.

These assessment methods will develop and assess core knowledge and practical skills relevant to your future employment and/or further education. Final assessments will be aligned with UKSCA accreditation requirements with you competency as an S & C coach assessed by UKSCA assessors.

Assessment types include:
• essays, laboratory reports, projects , case studies, dissertation (approx. 85%);
• oral and poster presentations (approx. 10%);
• tests and exams (approx. 5%)

Careers

This Masters degree aims to provide an understanding of real- life applications of theory. You will encounter a range of examples of enhancing athletic performance relevant to a future career in the sport and exercise industry or in a profession where such knowledge and skills would be useful.

The competencies of the lead organisation for strength and conditioning – the UKSCA - are embedded into this course giving you an understanding of, and practise in, the UKSCA accreditation process. This should accelerate your career as a coach and look to gain professional accreditation, vital to gaining employment within this career.

Increased investment in sport has opened up new opportunities for careers in strength and conditioning and sport science support, not only at the elite level of sport, but also at grass roots/school sport.

Funding

For information on available funding, please follow the link: https://www.beds.ac.uk/howtoapply/money/scholarships/pg

How to apply

For information on how to apply, please follow the link: https://www.beds.ac.uk/howtoapply/course/applicationform

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If you wish to work with sports performers as a coach, strength and conditioner, or applied sports scientist, this innovative course is for you. Read more

Course Summary

If you wish to work with sports performers as a coach, strength and conditioner, or applied sports scientist, this innovative course is for you.

Designed to meet the needs of students interested in the optimisation of performance in sport, it will provide the theory and foundation knowledge and skills you need to pursue professional accreditation with a number of bodies including the British Association of Sport and Exercise Sciences (BASES); the United Kingdom Strength and Conditioning Association (UKSCA); and appropriate higher coaching awards (Level 3 or above).

Choose Sports Performance MSc at Bedfordshire and:

- Study on a unique course with a multidisciplinary approach to sports performance and gain access to world-leading staff expertise and research. In the 2014 Research Excellence Framework (REF) three quarters of our work across sports science, PE and tourism and leisure has internationally recognised impact. More than 95% of our research outputs are rated as internationally recognised or better (compared with a sector average of 93%).
- Explore a range of disciplines and their contribution to helping athletes increase performance, including: strength and conditioning; performance analysis; coaching in a performance setting; sport science support ; laboratory skills; talent identification
- Develop your research skills and capabilities including research design and ethics, statistics and laboratory skills, opening up additional career opportunities
- Gain from a course designed to prepare you to for employment in the rewarding and expanding fields of coaching, sport science support and strength and conditioning
- Benefit from gaining the necessary skills to pursue roles including Strength and Conditioning Specialist; as a Coach or in Coach Development; Applied Sports Scientist; Laboratory Specialised Technician (eg in universities, sports clubs or hospitals) and/or continue to further research-based study on Masters by research, MPhil or PhD programmes.

Want to know more about our courses and keep up to date with news? Have a look at our Sport Beds website - http://www.beds.ac.uk/sportbeds#Sport%20Beds%20Link

Why choose this course?

The MSc in Sports Performance is an innovative course designed to meet the needs of students who are interested in maximising sports performance. The course is designed to provide the necessary theoretical and practical skills for those who wish to work within the sport and exercise industry as a Strength and Conditioning Coach, applied sport scientist or a technical coach. It will allow you to be capable of training, test and coach performers to maximise their physical potential to help improve their sporting ability.

Career Management Skills

This Masters degree aims to provide an understanding of real life applications of theory. You will encounter a range of examples of the application of enhancing athletic performance relevant to a future career in the sport and exercise industry or in a profession where such knowledge and skills acquired during the degree would be useful. Throughout the course you will have lectures and workshops given by the Centre for Personal and Career Development.

An initial session on career options is offered by the team from the Centre for Personal and Career Development through your induction process. You will be expected to enhance your career-related and employability skills through interactive exercises, group activities and individual reflection throughout the course.

You will be encouraged to ask appropriate questions and increase the use of feedback that you receive. We also encourage critical thinking, coinciding with the transition to less tutor-led and greater peer- and self-feedback, and `management of tutor. Towards the end of your studies you will be encouraged to make use of the Careers drop-in Centre at the Polhill campus.

Professional competencies are embedded throughout this course. Experiential learning will be promoted through case study and practical assessments of your competency, while work experience and placement opportunities are available both extra to the course and as part of formal learning in a Work Experience unit. The UKSCA is recognised as the lead organisation within Strength & Conditioning in the UK, while BASES is recognised as the lead organisation for sports scientists; there competencies are embedded within this course and will allow you to gain an understanding of and practice the UKSCA accreditation process. This should allow you to accelerate your competency as a coach and look to gain professional accreditation, vital to gaining employment within this career pathway.

Career/Further study opportunities

Career opportunities in the Sports field have expanded greatly in recent years. The professionalizing of many sports through the lottery process and increased governing body investment has opened up opportunities in many sports in terms of careers in the coaching, sport science support and strength and conditioning areas. This process seems to be ongoing with an emphasis, particularly in female and Olympic sports, continuing to grow for the foreseeable future.

Career Possibilities:

- Strength and Conditioning Coach
- Personal Trainer
- Fitness Professional
- Lecturer in Further or Higher Education *
- Teacher *
- Coaching/Coach Development
- Applied Sports Scientist
- Laboratory Specialised Technician (e.g. university, sports clubs, hospitals)
- Police *, Armed Services * and Prison Service.

Further study

University of Bedfordshire Postgraduate degrees such as:

Research degree studies (MSc by Research, Master of Philosophy, Doctor of Philosophy)

The course can also lead on to some conversion postgraduate courses such as:

PGCE

MSc Physiotherapy

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The MRes is a research-based Masters degree that offers specialised training in specific areas. The difference between the MRes and an MSc is that you'll spend more time on a lab-based project, and the final assessment (a thesis) and final award is closer to that for a PhD. Read more

Research opportunities

The MRes is a research-based Masters degree that offers specialised training in specific areas.

The difference between the MRes and an MSc is that you'll spend more time on a lab-based project, and the final assessment (a thesis) and final award is closer to that for a PhD.

This degree is delivered by the Strathclyde Institute of Pharmacy & Biomedical Sciences and offers a vibrant research environment for postgraduate training.

The taught part of your degree will increase your understanding of general scientific skills like statistics, ethics, and effective communication, while also increasing your knowledge in your specific subject through lectures and workshops.

You'll then move on to work on your project in an active research laboratory with a Principal Investigator and, potentially, with post-doctoral fellows and other postgraduate students.

This is an excellent way to find out about what a career in science is really like.

You'll also develop vital technique and project management skills that will prove highly attractive to future employers.

What you'll study

You can study an MRes in the following areas:

-biochemistry
-immunology
-microbiology
-in vivo sciences
-neuroscience
-pharmacology

You'll spend around two-thirds of your time undertaking a single laboratory-based research project, supervised by an academic member of staff.

In addition, you'll take taught classes delivered through lectures, workshops and practical labs in three areas:

-transferable skills training in data mining, interpretation and presentation; experimental planning; personal effectiveness, commercialisation and entrepreneurship
-advanced-level techniques, learning practical skills appropriate to the specialisation chosen
-advanced-level topics, gaining an in-depth understanding appropriate to the specialisation chosen

To support the chosen research project, you'll select advanced-level taught courses in your specialisation.

Support & development

Postgraduate Certificate in Researcher Professional Development (PgCert RPD)

Our PgCert RPD programme aims to ensure you get the most out of your current research activities at Strathclyde and help you prepare for your future career as a researcher.

We'll help you recognise and develop your transferable skills that'll have a positive impact on your research, now and in the future.

Careers

We have a great careers service here at Strathclyde that can help you with everything from writing your CV to interview preparation.

This MRes is ideally suited for:

-graduates looking to gain experience in practical laboratory techniques attractive to employers
-graduates seeking to make the transition from taught material to laboratory research in preparation for future PhD training

Where are they now?

100% of our graduates are in work or further study.**

Recent job titles include:

Biology Teacher
Laboratory Project Set up Co-ordinator
Research Associate
Research Technician

Recent employers include:

Beatson Institute
Boots
Quintiles
Rasa Life Science
University of Nottingham
*Information is intended only as a guide.

**Based on the National Destination of Leavers Study 2011/12 & 2012/13.

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This course will allow you to graduate with a postgraduate degree in the subject-specific discipline of physiology. Read more

Why take this course?

This course will allow you to graduate with a postgraduate degree in the subject-specific discipline of physiology. It will give you the opportunity to study physiological responses to exercise in both healthy and clinical populations, in response to extreme environments, and to examine the role of exercise as a treatment adjunct.

What opportunities might it lead to?

On this course you can:
Obtain laboratory-based skills, as well as the ability to communicate with clients in a professional and approachable style.
Gain experience of conducting research/physiological testing in simulated environmental conditions of heat, cold, humidity and/or hypoxia.
Obtain knowledge and experience of how exercise can be used in the management and treatment of various diseases.

What opportunities might it lead to?

The programme will provide knowledge, skills and experience required to undertake work as a physiologist or specialised technician. Some specific examples are listed below.

Here are some routes our graduates have pursued on allied courses:
health and wellbeing physiologist
health advisor
clinical Exercise Physiologist
exercise Referral Coordinator
personal Trainer
PhD research
technician

Module Details

The programme will be offered in full-time (12 months) and part-Time (24 months) study modes, with the academic year running from September to September. The course includes 120 credits of taught units (delivered on Thursdays during term time) and a 60 credit research project.

Core units include:

Applied Research Methods (30 credits)
Research Project (60 credits)
90 credits are required from a choice of:

Applied Sports Physiology (30 credits)
Environmental Factors Affecting Sports Performance (30 credits)
Exercise Rehabilitation (30 credits)
Clinical Physiology (30 credits)

Programme Assessment

The delivery format for the course is based around seminar, practical, workshop and to a lesser extent, lectures. Sessions will be delivered by DSES staff with knowledge and research expertise in the areas studied.

Assessments include client/patient-focused practical and written assessments as well as some more traditional report writing assessments:

Practical assessments
Laboratory reports
Client reports
Case studies
Project report

Student Destinations

The skills-sets developed will permit students to enter a range of career pathways, examples of which are listed below. The course will provide essential underpinning knowledge for those who may wish to pursue professional training to possess qualifications to provide exercise in clinical populations e.g. cardiac rehabilitation, pulmonary rehabilitation etc. The course will also permit students to gain experience of physiological responses in ‘normal’ conditions as well as extreme environments. This is particularly relevant for those students who wish to pursue employment by providers such as the Ministry of Defence (in particular Defence Science and Technology Laboratory), English Institute of Sport and UK Sport.

Roles our graduates have taken on include:

PhD researcher leading to employment as a professional scientist
Health and wellbeing physiologist
Health advisor
Clinical Exercise Physiologist
Exercise Referral Coordinator
Personal Trainer

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The Cancer MSc reflects the depth and breadth of research interests, from basic science to translational medicine, within the UCL Cancer Institute. Read more
The Cancer MSc reflects the depth and breadth of research interests, from basic science to translational medicine, within the UCL Cancer Institute. The programme, taught by research scientists and academic clinicians, provides students with an in-depth look at the biology behind the disease processes which lead to cancer.

Degree information

This programme offers a foundation in understanding cancer as a disease process and its associated therapies. Students learn about the approaches taken to predict, detect, monitor and treat cancer, alongside the cutting-edge research methods and techniques used to advance our understanding of this disease and design better treatment strategies.

Students undertake modules to the value of 180 credits. The programme consists of two core modules (60 credits), four specialist modules (60 credits) and a research project (60 credits). A Postgraduate Diploma (120 credits, full-time nine months) is offered. A Postgraduate Certificate (60 credits, full-time 12 weeks) is offered.

Core modules
-Basic Biology and Cancer Genetics
-Cancer Therapeutics

Specialist modules
-Behavioural Science and Cancer
-Biomarkers in Cancer
-Cancer Clinical Trials
-Haematological Malignancies and Gene Therapy

Dissertation/report
All MSc students undertake a laboratory project, clinical trials project or systems biology/informatics project, which culminates in a 10,000–12,000 word dissertation and an oral research presentation.

Teaching and learning
Students develop their knowledge and understanding of cancer through lectures, self-study, database mining, wet-lab based practicals, clinical trial evaluations, laboratory training, assigned reading and self-learning. Each taught module is assessed by an unseen written examination and/or coursework. The research project is assessed by the dissertation (75%) and oral presentation (25%).

Careers

The knowledge and skills developed will be suitable for those in an industrial or healthcare setting, as well as those individuals contemplating a PhD or medical studies in cancer.

Top career destinations for this degree:
-Research Technician, NHS Imperial College Healthcare NHS Trust
-Cancer and Genetics, ETH Zurich
-PhD Cancer Research, University of New South Wales (UNSW)
-Clincial Trial Project Manager, Beijing Lawke Health Laboratory Inc.
-Research Scientist, SporeGen

Employability
Skills include critical evaluation of scientific literature, experimental planning and design interpretation of data and results, presentation/public speaking skills, time management, working with a team, working independently and writing for various audiences.

Why study this degree at UCL?

UCL is one of Europe's largest and most productive centres of biomedical science, with an international reputation for leading basic, translational and clinical cancer research.

The UCL Cancer Institute brings together scientists from various disciplines to synergise multidisciplinary research into cancer, whose particular areas of expertise include: the biology of leukaemia, the infectious causes of cancer, the design of drugs that interact with DNA, antibody-directed therapies, the molecular pathology of cancer, signalling pathways in cancer, epigenetic changes in cancer, gene therapy, cancer stem cell biology, early phase clinical trials, and national and international clinical trials in solid tumours and blood cancers.

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