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Masters Degrees (Medicine And Surgery)

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Our four year MB ChB (Bachelor of Medicine and Surgery) programme is designed for graduates. Read more
Our four year MB ChB (Bachelor of Medicine and Surgery) programme is designed for graduates. It is a challenging but extremely rewarding programme designed to help you become a highly competent, compassionate and strongly motivated doctor, committed to the highest standards of clinical practice, professionalism and patient care.

Our innovative and distinctive programme is the largest graduate-entry course in the UK, with an intake of 177 graduates each year. The course is taught by staff at the forefront of their subjects in state-of-the-art teaching facilities at The University of Warwick and at our regional hospitals. We offer innovative new facilities for teaching anatomy and clinical skills based at University Hospitals Coventry and Warwickshire NHS Trust.

By the time you graduate, you will have developed the knowledge and key personal skills and attitudes necessary to pursue a successful professional career as a doctor.

Other admission details

Please see the website for a detailed list of the MB ChB's admission requirements: http://www2.warwick.ac.uk/fac/med/study/ugr/applying/entryreqs/#academicqual

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The aim of our research into human health and disease is to apply our findings to improve patient care. We invite applications for MPhil projects in all of our clinical research areas. Read more
The aim of our research into human health and disease is to apply our findings to improve patient care. We invite applications for MPhil projects in all of our clinical research areas. You will work with a team of academic and clinical supervisors whose research interests match your own.

We offer supervision for MPhil, PhD and MD in the following areas:
-Anaesthesia
-Care of the elderly
-Child health
-Critical care
-Dermatology
-Diabetes
-ENT (ear, nose and throat)
-Liver
-Musculoskeletal disease
-Oncology
-Ophthalmology
-Neuroscience
-Primary care
-Psychiatry
-Renal medicine/urology
-Reproductive medicine
-Respiratory and cardiac medicine
-Transplantation

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A Queen Mary University of London (QMUL) and Barts Health NHS Trust collaboration. Be the best you can – revolutionise your resuscitation care. Read more
A Queen Mary University of London (QMUL) and Barts Health NHS Trust collaboration

Be the best you can – revolutionise your resuscitation care

Resuscitation is a rapidly evolving area of medicine that crosses the boundaries of emergency medicine, intensive care medicine, anaesthesia and acute medicine. Early recognition of critical illness and resuscitation saves lives and reduces suffering for our patients. We are offering an MSc, Diploma and Taster MOOC to provide an opportunity for you to develop your skills in this area under the guidance of an international faculty. The level of study and knowledge will go beyond most specialist exit exams marking you as a potential leader in this field. We will bring together teaching on diagnosis, resuscitation, pathophysiology, imaging, toxicology, CRM and pre-hospital care/mass casualty medicine under a single umbrella. Resuscitation Medicine is arguably evolving into a subspecialty of medical care and with this course we aim to provide the skills to develop expertise in this field.

Who should apply?

The course welcomes students from medical, nursing and paramedic backgrounds from both overseas and Europe/UK. It is designed for trainees and consultants in Emergency Medicine and other acute care specialities,. It is also designed to assist advanced nurse practitioners and paramedics to gain skills in Resuscitation Medicine.

Why study Emergency and Resuscitation Medicine at QMUL and Barts Health?

-Delivered by a leading UK Medical School ranked 2nd in the UK for Medicine (Guardian University Guide 2017)
-Delivered by a Russell Group university
-An excellent reputation in Emergency Medicine, Trauma Surgery and Critical Care
-Active research and teaching programmes in Emergency Medicine, Trauma Surgery and Critical Care.

Barts Health NHS Trust is home to:

-The largest Emergency Department under one R&D in the UK (approaching 1000 attendances daily)
-Europe’s largest Trauma Centre
-Europe’s busiest Heart attack Centre.
-Close links with Academic Critical Care, with research led by Professor Rupert Pearse (NIHR Clinical Scientist) and Academic -Trauma Sciences, research led by Professor Karim Brohi.

-The William Harvey Research Institute (WHRI) at QMUL has an international profile in Critical Care research

-The Trauma Sciences team are at the forefront of Trauma research with a special interest in trauma coagulopathy and resuscitation

-Excellent worldwide reputation for delivering successful online MSc courses

-The Emergency Department is home to London’s Air Ambulance, a world renowned pre-hospital care paramedic/doctor staffed trauma response team
-The Institute of Pre-hospital care was set up in 2013 and now runs a very popular BSc for undergraduates

-The successful Academic Department Emergency Medicine was set up in 2012 with the appointment a Professor Emergency Medicine. Since then the regional portfolio research has risen annually to be now third placed nationally for recruitment

The MSc and Diploma
The MSc is a 3-year 180 credit MSc, including a 60 credit 10000+/- 500 word dissertation in year 3. It offers two years of structured web based teaching via an online learning platform. For students who wish not to complete a dissertation in year 3, a 2-year Diploma is offered based on the lectures, tutorials and course work.

This course commences September 2017
The course is online, allowing you to study at your own pace and in your own time, enabling you to continue with your work commitments. It provides an excellent structured learning platform for trainees and specialists to develop skills in this area. Lectures are delivered by leading experts in the field with the same lecturer/course leads offering weekly tutorials.

In the first two years the course offers 8 modules covering different areas of critical care. Each of the eight modules runs over 10 weeks, In year 3 the 60-credit dissertation is completed by students completing the MSc.

The Taster MOOC – free online learning
The massive open online course (MOOC) is an opportunity for you to improve your skills and to learn about Emergency and Resuscitation Medicine from an international faculty of world class speakers. The MOOC will give you a taste of what is on offer at masters and Diploma level. The MOOC includes lectures on the recognition and treatment of shock and provides an introduction to statistics and critical appraisal.

The MOOC is a free to access, distance learning package allowing you to study at your own pace and in your own time. This taster course will allow you to access all the teaching material from modules 1 and 2 of the MSc including video lectures., The MOOC will not include content such as the MCQs, online lectures and tutorials, which are reserved for those studying the full MSc/PGDip programme.

If you enjoy the MOOC you may want to enrol in the associated MSc or PG Dip in Emergency and Resuscitation Medicine offered at QMUL. Click here to access the MOOC

Why Study at QMUL/Barts Health?

-A rich and diverse history
-Barts is a faculty of QMUL and has an unrivalled tradition of excellence in research and teaching. The London was the first medical school in England, founded in 1785, and Barts Hospital was established in 1123. Our location in the east of London and elsewhere in the East London Gateway will enhance your experience. Not only are we in one of the capital’s most vibrant areas to live, we also serve a diverse local community where you will develop your clinical skills and knowledge.

Queen Mary University of London (QMUL)

We are one of the UK’s leading universities – in the most recent national assessment of research quality, we were placed ninth in the UK (REF 2014) among multi-faculty universities. This means that the teaching on our postgraduate programmes is directly inspired by the world-leading research of our academics.


* All new courses are required to undergo a two-stage internal review and approval process before being advertised to students. Courses that are marked "subject to approval" have successfully completed the first stage of this process. Applications are welcome but we will not make formal offers for this course until it has passed this second (and final) stage.

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Chelmsford, ICENI Centre, Broomfield Robotic Centre. Our course will provide you with the breadth and depth of experience to fully engage with all aspects of minimally invasive and robotic surgery including the latest technological advances. Read more

Campus

Chelmsford, ICENI Centre, Broomfield Robotic Centre

Overview

Our course will provide you with the breadth and depth of experience to fully engage with all aspects of minimally invasive and robotic surgery including the latest technological advances.
You’ll undertake laparoscopic simulation training, based at the ICENI Centre in Colchester, and you’ll also have access to the Robotic Centre at Broomfield Hospital in Chelmsford. The ICENI Centre is internationally recognised as a leading centre of excellence in the field of minimally invasive surgery. It combines the advanced multidisciplinary laparoscopic techniques practised at Colchester Hospital University NHS Foundation Trust, with the highest-quality research infrastructure established here at Anglia Ruskin University.
We’re home to the Postgraduate Medical Institute (PMI), which has its own £10 million building on our Chelmsford campus. It features state-of-the-art laboratory and training facilities and lecture theatres linked with partner hospital sites. In conjunction with Colchester Hospital University Foundation Trust, we’ve funded a £2 million building specifically for minimally-invasive surgery research and a training centre.
Designed by clinical experts, the course will prepare you to advance your career development and opportunities in this area of surgical specialism. On successful completion of this programme, you will be awarded a Master of Surgery which entitles you to use
MCh after your name. MCh is an abbreviation of Magister Chirurgiae, the Latin for Master of Surgery. Master of Surgery, rather than MCh, will appear on your certificate.

Core Modules

Core Principles of Minimally Invasive and Robotic Surgery
Research Studies
Major Project

Specialist modules

Principles of Minimally Invasive and Robotic Surgery – Gynaecology
Principles of Minimally Invasive and Robotic Surgery – Gastrointestinal
Principles of Minimally Invasive and Robotic Surgery – Urological
Principles of Minimally Invasive and Robotic Surgery – Vascular
In addition to the compulsory modules students select one speciality module from the above list to complete the course.

Optional modules

Global Leadership
Advancing Professional Decision Making

Modules are subject to change and availability.

Start dates

September 2017

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Take advantage of one of our 100 Master’s Scholarships to study Trauma Surgery at Swansea University, the Times Good University Guide’s Welsh University of the Year 2017. Read more
Take advantage of one of our 100 Master’s Scholarships to study Trauma Surgery at Swansea University, the Times Good University Guide’s Welsh University of the Year 2017. Postgraduate loans are also available to English and Welsh domiciled students. For more information on fees and funding please visit our website.

The MSc in Trauma Surgery focuses on state of the art practical techniques and treatment strategies in Major Trauma, using small group teaching sessions, delivered by practicing clinicians who are experts in their fields.
The programme is aimed at all doctors with a committed interest in trauma care, with previous students becoming consultants in Trauma & Orthopaedics, Burns and Plastics, General & Vascular Surgery, Maxillo-facial Surgery, as well as Emergency Department Medicine and Intensive Care.

Key Features of the Trauma Surgery Programme

The bedrock of the Programme is face to face teaching from those with in-depth professional experience of the topics in question . Defence Medical Services personnel may enrol on the MSc Trauma Surgery (Military) Programme, which has 2 dedicated Military Modules detailed below. Trauma care is one of the most rapidly evolving areas in modern medicine. Improvements in the immediate (damage control) resuscitation have improved survival, underpinned by the lessons learnt from the Defence Medical Services and the most effective trauma systems in the developed world. Post-injury reconstructive surgery and rehabilitation now offer potentials for recovery which were previously inconceivable. Thus a sound grasp of the theory and practice of trauma surgery from its integration in damage control resuscitation to definitive reconstruction make this one of the most rewarding fields of medical endeavour. The Trauma Surgery Programme is constantly revised and refreshed in the light of new developments.

The Trauma Surgery Programme is unique in design, delivery and assessment with the innovative use cadaveric teaching and increasingly sophisticated simulation methods to enhance learning. Previous student experience has confirmed that these Programmes offer a robust practical and academic springboard , with graduates moving into consultant careers is all specialties involved in trauma care.

This is a part-time programme which spans roughly two calendar years, the first of which is the taught component which comprises of 5 clinical modules and one vital research methods teaching block, each 4 days long. The second year is dedicated to completing the dissertation. We welcome associate students who just wish to attend individual modules, or particular days from any part of the programme.

Modules

The Trauma Surgery Programme is part time with Part 1 comprising 5 clinical (20 credit) and 2 research methods (10 credit) modules and Part 2 being the dissertation. Each of the clinical modules follows a similar pattern with teaching and simulations delivered in the newly completed Morriston Teaching Centre, while the cadaveric teaching takes part in the Anatomy Suite of the Grove Building, located in the Singleton Campus. Each clinical module is 4 days long and the 2 day research methods modules run back to back as another 4 day block.

Modules on the Trauma Surgery programme typically include:

Trauma: The Disease
The Turning Point
Healing & Rehabilitation
Regional Trauma
Definitive Reconstruction
Immediate Management of Burns
Military Operational Surgical Training (Military Pathway)
Combat Surgery: Clinical & logistics (military Pathway)
Evidence-based health and social care
Health research methods and preparation for dissertation
Dissertation

Professional Development

The Medical School offers the following M Level modules as standalone opportunities for prospective students to undertake continued professional development (CPD) in the area of Trauma Surgery.

You can enroll on the programme's associated professional development modules as either an Associate Student (who will be required to complete the module(s) assessments) or as a Non-Associate Student (who can attend all teaching sessions but will not be required to complete any assessments).

How to Apply

For information and advice on applying for any of the continuing education opportunities, please contact the College directly at .

Employability

Postgraduate study has many benefits, including enhanced employability, career progression, intellectual reward and the opportunity to change direction with a conversion course.

From the moment you arrive in Swansea, specialist staff in Careers and Employability will help you plan and prepare for your future. They will help you identify and develop skills that will enable you to make the most of your postgraduate degree and enhance your career options. The services they offer will ensure that you have the best possible chance of success in the job market.

The student experience at Swansea University offers a wide range of opportunities for personal and professional development through involvement in many aspects of student life.

Co-curricular opportunities to develop employability skills include national and international work experience and study abroad programmes and volunteering, together with students' union and athletic union societies, social and leisure activities.

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Sleep medicine has evolved into a new specialty with relevance across a number of fields, including respiratory medicine, cardiology, neurology, surgery, dentistry, paediatrics, psychology, psychiatry, and nursing, with wider implications for health sciences and public health. Read more
Sleep medicine has evolved into a new specialty with relevance across a number of fields, including respiratory medicine, cardiology, neurology, surgery, dentistry, paediatrics, psychology, psychiatry, and nursing, with wider implications for health sciences and public health.

The program aims to provide comprehensive information on the theory and practice of sleep medicine through distance education; the courses provide training in clinical, theoretical and research techniques in sleep medicine and help to establish criteria for best practice in the field. These courses are suitable for those already working in the area of sleep medicine, or for those wishing to undertake a career change. The courses provide a firm basis for vocational training in this discipline.

The Master of Medicine (Sleep Medicine) is designed for professionals already working in the area of sleep medicine, or for graduates wishing to embark on a career in the field. The course offers a unique opportunity to gain a deeper insight into this rapidly growing discipline of sleep medicine. This course is taught predominantly online and contains both coursework and research study.

To ask a question about this course, visit http://sydney.edu.au/internationaloffice/

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For over 26 years, the University of Otago has been an exceptional provider of distance teaching in the fields of Aviation Medicine, Occupational Medicine, and Aeromedical Retrieval and Transport. Read more
For over 26 years, the University of Otago has been an exceptional provider of distance teaching in the fields of Aviation Medicine, Occupational Medicine, and Aeromedical Retrieval and Transport.

The Master in Aviation Medicine (MAvMed) programme is a fully distance-taught that actively encourages international student enrolment.

The University of Otago is a world leader in terms of offering aviation medicine training and professional development for the aviation medicine industry and has 100+ students studying in the Middle East, North America, Europe, Asia and Australia. This is the only aviation medicine programme in the world to offer distance education. It is supported by academic staff and alumni with strong links to the aviation industry.

Graduates of the programme will meet internationally recognised ‘best practice’ standards for aviation medicine practitioners and are frequently employed by airlines including Cathay Pacific, Emirates, and Qantas.

The Master of Aviation Medicine (MAvMed) is available through Distance Learning: http://www.otago.ac.nz/courses/distance_study/index.html

Programme Requirements

The programme shall consist of papers to the value of 240 points (normally eight 30-point papers) which shall normally comprise at least 180 points selected from:
AVME 711 Aviation Physiology
AVME 712 Aircrew Health and Performance
AVME 713 Airport and Travel Health
AVME 714 Clinical Aviation Medicine
AVME 715 Principles of Occupational Medicine
AVME 716 Clinical Occupational Medicine
AVME 717 Medical Logistics in Aeromedical Transport
AVME 718 Operational Aspects of Aeromedical Transport
AVME 719 Aeromedical Studies for Nurses and Paramedics
AVME 720 Clinical Analysis in Aeromedical Retrieval and Transport
AVME 721 Clinical Care in the Air
AVME 722 Organisation of Aeromedical Systems
AVME 723 Managing Occupational Medicine
AVME 724 Health and Industry
AVME 726 Special Topic
AVME 780 Research Project
AVME 785 Research Methods
AVME 801 Occupational Medicine Epidemiology and Biostatistics
AVME 802 Vocational Rehabilitation
AVME 803 Specialist Aeromedical Retrieval
AVME 804 International Assistance Operations

Structure of the Programme

-The programme of study shall consist of papers to the value of 240 points.
-At least 180 points must be from papers selected from AVME 711, AVME 712, AVME 713, AVME 714, AVME 715, AVME 716, AVME 717, AVME 718, AVME 719, AVME 720, AVME 721, AVME 722, AVME 723, AVME 724, AVME 726, AVME 780, AVME 785, AVME 801, AVME 802, AVME 803, AVME 804.
-Subject to the approval of the Dean of the Otago Medical School, papers which have been completed at the University of Otago, another university, or an approved examining body may be credited to the programme and/or used as the basis for exemption from the requirements of (b) above, provided that this previous study is directly relevant to the candidate's proposed and approved programme of study, to a maximum of 120 points.
-A candidate who has completed the Postgraduate Diploma in Aeromedical Retrieval and Transport, Postgraduate Diploma in Occupational Medicine, Postgraduate Certificate in Aeromedical Retrieval and Transport, or Postgraduate Certificate in Occupational Medicine may be exempted from one or more papers in the programme for the degree to a maximum of 120 points.

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This MSc is designed to give clinicians and practitioners a deeper understanding of sports medicine, sports injuries and exercise medicine. Read more
This MSc is designed to give clinicians and practitioners a deeper understanding of sports medicine, sports injuries and exercise medicine. The programme covers the evidence-based management of sports medicine and musculoskeletal injuries, and emphasises the vital role of physical activity in the prevention and treatment of chronic disease. This MSc can be taken full time over one year, part-time over two years, or via flexible distance learning.

Degree information

The programme focuses on sports injuries and their prevention and treatment, and provides a thorough grounding in relevant areas of anatomy, biomechanics, exercise physiology and psychology, as well as the fundamentals of exercise in maintaining and improving health. Students develop essential research skills through an independent research project.

All students undertake modules to the value of 180 credits.

The programme consists of seven core modules (105 credits), one optional module (15 credits) and a research project (60 credits). Clinical sessions are spread over the year: commitment is equivalent to one half-day per week over three 12-week semesters. Clinic options include sports injury, physiotherapy and podiatry, exercise testing, and team visits.

A Postgraduate Diploma (120 credits, full-time nine months) is offered.

Core modules
-Exercise Physiology
-Health and Physical Activity
-Sports Injuries I – Lower Limb
-Sports Injuries II – Upper Limb
-Sports Injuries III – Head, Neck and Spine
-Advanced Sports Injury and Injury Prevention
-Research Methods

Optional modules
-Team and Event Medicine
-Rehabilitation of Sports Injuries

Dissertation/report
All MSc students undertake an independent research project from a diverse range of available topics, which culminates in a dissertation, an oral examination and a presentation.

Teaching and learning
Teaching is delivered through a combination of formal lectures, hands-on practical sessions, small group seminars, clinics and field trips, and will be delivered by lecturers who are highly experienced in their field. Up-to-date, evidence-based practice will be emphasised throughout and students' contribution through discussion is considered key. Assessment is through written examination, presentations, coursework and Objective Structured Clinical Examination (OSCE), as well as the dissertation and viva voce (oral) examination.

Careers

Graduates of the programme will gain a deeper understanding and valuable insights into the key areas of sports injury prevention and management, health and physical activity, and will be able to prescribe exercise safely for a range of medical conditions. This will prepare them for potential work in many areas from elite sports medicine to NHS sports and musculoskeletal clinics and exercise medicine services.

Top career destinations for this degree:
-Physiotherapist, Josephine Lawson Physiotherapy Clinic
-Sports Clinical Specialist Physiotherapist, Princess Grace Hospital
-Doctor, NHS Health Education East Midlands
-Rotational and Musculoskeletal Physiotherapist, Guy's and St Thomas' NHS Foundation Trust
-Project Manager, Weight Management Centre

Employability
A Master's-level degree in Sports Medicine, Exercise & Health from UCL will open many doors in the sports and exercise medicine world, from sports injury clinics to developing exercise medicine programmes for the prevention and treatment of chronic disease, and working with sports teams. UCL's MSc in Sports Medicine, Exercise & Health is led by local experts with active involvement in NHS and elite sports and exercise medicine settings. A distinct feature of the programme is the wide variety and large number of distinguished external guest speakers, all experts in their own fields locally, nationally and internationally. Students have unrivalled access to our guest speakers for career advice and potential opportunities.

Why study this degree at UCL?

UCL is one of the world's very best universities, consistently placed in the global top 20 in a wide range of world rankings. The UCL Division of Surgery & Interventional Science is part of one of the most prestigious medical schools in Europe, with a team of nearly 400 people, from surgeons and oncologists to clinical trials specialists and researchers. This programme is based at the Institute of Sport Exercise and Health (ISEH). Our aim is to understand the causes of human disease and develop innovative therapies and technology to improve quality of life.

The MSc in Sports Medicine, Exercise and Health at UCL places a strong emphasis on improving health through exercise alongside the management of sports and musculoskeletal injury. The programme has significant clinical content and students benefit from attendance at numerous specialist clinics and opportunities for field visits to sports teams and events.

Graduate students on the MSc in Sports Medicine, Exercise and Health at UCL are from diverse backgrounds reflecting the true multidisciplinary nature of sports and exercise medicine.

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This MA allows you to develop an in-depth understanding of the history of health, medicine and society. You’ll be trained in historical research methods and conceptual and methodological approaches to the history of health, medicine and society. Read more

Overview

This MA allows you to develop an in-depth understanding of the history of health, medicine and society.

You’ll be trained in historical research methods and conceptual and methodological approaches to the history of health, medicine and society. You can combine British, European and African history under the guidance of leading researchers in History, History and Philosophy and Science and Medieval Studies. You’ll have the chance to focus on topics and periods that suit your own interests, whether that’s the history of health, medicine and society in the Middle Ages or the First World War.

Looking at the health of individuals, families and communities, you could study the human life course from birth to death, the experiences of medical practitioners and caregivers, medicine during periods of war and conflict, or the impact of health policy in different societies. It’s an exciting opportunity to explore how health and medicine have always been shaped by the social and cultural context.

The degree is also available to study part-time over 24 months. The part-time MA may be of special interest to those who are working in related fields as part of their career development.

Facilities and Resources

We have an exceptional range of resources to help you explore the topics that interest you. The world-class Brotherton Library holds a wealth of resources in its Special Collections, including historical works on health, medicine, cookery and medicinal uses of food, as well as extensive archival material about the history of medicine, surgery and nursing during the First World War and across the region since the eighteenth century.

You’ll be encouraged to participate in events run by the School of History’s lively ‘Health, Medicine and Society’ research group, including seminars, reading group sessions and a postgraduate symposium. You’ll also be able to attend a huge range of other events at the University of Leeds, including seminars at the Centre for History and Philosophy of Science and the Leeds Centre for Medical Humanities.

You’ll also have access to the University’s Museum of Science, Technology and Medicine, which is especially rich in its medical collections, and we have close links with the Thackray Medical Museum in east Leeds and its 47,000 medical objects.

Course Content

The first semester will lay the foundations of your studies, introducing you to historical research methods, and key sources, debates and methodologies in the history of health, medicine and society. You’ll take part in a source analysis workshop and gain practical knowledge of documentary, visual and material sources in the university and local area which can be used to study the history of health, medicine and society.

You’ll also develop specialist knowledge of the development of the history of medicine and the social history of medicine as historical sub-disciplines, and the place of health and medicine within the discipline of history.

In Semester Two, you’ll build on this knowledge with your choice from a wide range of optional modules, including specialist topics such as birth , death and illness in the Middle Ages; Medicine and warfare in the 19th and 20th centuries or disease and sexuality in Africa. You’ll also have the opportunity to work collaboratively with partner organisations, such as the West Yorkshire Archive Service, by studying the ‘Making History: Archive collaborations’ module.

Throughout the programme, you’ll develop your knowledge across a variety of areas as well as key skills in research and critical analysis. You’ll showcase these skills when you complete your dissertation, which will be independently researched on a topic of your choice and submitted by the end of the programme in September.

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This programme aims to impart a robust scientific understanding of burns, plastic and reconstructive surgery, and to equip healthcare professionals (doctors, surgeons, nursing staff and physiotherapists) and scientists with the research techniques and translational tools necessary for research in this expanding field. Read more
This programme aims to impart a robust scientific understanding of burns, plastic and reconstructive surgery, and to equip healthcare professionals (doctors, surgeons, nursing staff and physiotherapists) and scientists with the research techniques and translational tools necessary for research in this expanding field.

Degree information

Students will acquire both scientific and clinical research skills in plastic and reconstructive surgery, develop the necessary transferable skills (laboratory, critical, synthetic), and acquire an appreciation of the needs and requirements of patients requiring this speciality.

Students undertake modules to the value of 180 credits for the MSc. The programme consists of five core modules (75 credits), one optional module (15 credits) and a research project (90 credits). A Postgraduate Certificate (60 credits) is offered. The programme consists of two core modules (30 credits) and two optional module (30 credits).

Core modules
-Plastic and Reconstructive Surgery Burns
-Military Injury and Wound Healing
-Biomaterials in Regenerative Medicine
-Research Methodology
-Applied Tissue Engineering

Optional modules - choose one of the following options:
-Nanotechnology in Medicine
-Translation of Nanotechnology and Regenerative Medicine
-Advanced Surgical Skills in Microsurgery
-Stem cells and their applications in Surgery

Dissertation/report
All students undertake an independent research project which culminates in a dissertation of ~15,000 words and a viva.

Teaching and learning
The programme is delivered through a combination of lectures, tutorials, workshops, practical sessions, group discussions and distance learning. Assessment is through written examination, coursework, presentation, dissertation and viva voce.

Careers

Establishing a career in surgery is becoming very competitive, and students on this programme benefit from the latest knowledge and experience in this expanding field. On completion, graduates find they are in a better position to find placements due to the wide exposure they have had to emerging technologies such as nanotechnology, regenerative medicine, and speciality plastic surgery. This MSc also provide our students with an excellent foundation for further research either at MD or PhD level or for a career as a clinician or healthcare professional within this surgical speciality.

Top career destinations for this degree:
-Plastic Surgery Trainee Registrar, NHS (National Health Service)
-MSc Burns, Plastic and Reconstructive Surgery, UCL
-PhD Interventional Science, UCL
-PhD Surgery and Interventional Science, UCL

Employability
This MSc focuses on research as well as theory and students acquire technical, laboratory-based skills. Networking is also one of the key aspects of this programme. Consultant plastic surgeons from both military and civilian backgrounds present lectures, giving students access to one-on-one contact and a multitude of networking opportunities.

Why study this degree at UCL?

This is the only MSc programme in burns, plastic and reconstructive surgery currently in the UK, and addresses a national need.

Clinical staff who undertake teaching include renowned consultants based at the Royal Free Hospital.

The Division of Surgery & Interventional Science is part of one of the most prestigious medical schools in Europe; it is made up of nearly 400 people from surgeons and oncologists to clinical trials specialists and researchers. Its aim is to understand the causes of human disease and develop innovative therapies and technology to improve the quality of life.

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Nanotechnology and Regenerative Medicine are rapidly expanding fields with the potential to revolutionise modern medicine. This cross-disciplinary programme provides students with a robust scientific understanding in these fields, combined with a "hands-on" practical and translational focus. Read more
Nanotechnology and Regenerative Medicine are rapidly expanding fields with the potential to revolutionise modern medicine. This cross-disciplinary programme provides students with a robust scientific understanding in these fields, combined with a "hands-on" practical and translational focus.

Degree information

This programme will equip students with a critical understanding of:
-How nanotechnology can be harnessed for the improved detection and treatment of disease.
-The use of stem cells in medicine.
-Tissue engineering strategies for tissue regeneration.
-Improving biomaterials for directing cell behaviour.
-The regulatory, ethical and commercial hurdles for the translation of these emerging technologies.

Students undertake modules to the value of 180 credits.

The programme consists of five core modules (75 credits), one optional module (15 credits) and a research project (90 credits). A Postgraduate Certificate (60 credits) is offered. The programme consists of two core modules (30 credits) and two optional modules (30 credits).

Core modules
-Nanotechnology in Medicine *
-Applied Tissue Engineering *
-Biomaterials
-Research Methodologies
-Practical Bio-Nanotechnology and Regenerative Medicine
-*PG Cert - compulsory modules

Optional modules - choose one of the following options; attendance at the other module is possible but will not be assessed.
-Stem Cells in Medicine and their Applications in Surgery
-Translation of Nanotechnology and Regenerative Medicine

Dissertation/report
All students undertake an extensive laboratory-based (90 credits) research project which culminates in a dissertation of c.15,000 words and an individual viva voce.

Teaching and learning
The programme is delivered through a combination of lectures, tutorials, workshops, group discussions, practical sessions, and demonstrations. Assessment is through presentations, problem-solving workshops, written practical reports, coursework, unseen written examinations and the dissertation.

Careers

Student career options and progression during and following the completion of the degree are considered to be of the utmost importance. Personal tutors will offer individual advice and seminars are arranged on a variety of career competencies including CV writing, writing research proposals and positive personal presentation.

Networking with world-leading scientists, new biotechnology CEO's and clinicians is encouraged and enabled throughout the programme. Research output in terms of publishing papers and presenting at conferences is also promoted.

Recent career destinations include:
-PhD or Medicine at UCL, Imperial College London and Universities of Oxford and Cambridge
-Clinical PhD training programmes
-NHS hospitals in the UK
-EU and overseas hospitals and research facilities

Top career destinations for this degree:
-Health Careers Program, Harvard University
-PhD Medicine, Queen's University, Belfast
-PhD Bioengineering, Imperial College London
-PhD Nanomedicine, UCL
-DPhil Researcher (Biomedical Sciences), University of Oxford and studying MSc Nanotechnology and Regenerative Medicine, -University College London (UCL)

Employability
Graduates of the programme gain the transferable laboratory, critical and soft skills, such as science communication, necessary to pursue a scientific or clinical research career in the fields of nanomedicine and regenerative medicine.

Why study this degree at UCL?

Based within the world-leading medical research environment of the UCL Division of Surgery and Interventional Science this MSc retains a clinical focus and addresses real medicine needs. Students learn about the route of translation from research ideas into actual products which can benefit patients.

An in-depth laboratory-based research project is an integral component of the programme: expert support allows students to investigate cutting-edge projects and thereby open up opportunities for further research and publications.

Students are embedded within the vibrant research community of the Faculty of Medical Sciences which provides students - through research seminars, symposia and eminent guest lecturers - outstanding networking opportunities within the research, clinical and translational science communities.

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Oral and Maxillofacial Surgery is the specialty concerned with the diagnosis and management of diseases, injuries and defects affecting the mouth, jaws, face and neck. Read more
Oral and Maxillofacial Surgery is the specialty concerned with the diagnosis and management of diseases, injuries and defects affecting the mouth, jaws, face and neck.

All units are based on the speciality of oral surgery but within the wider context of maxillofacial surgery. The three year course provides specialist oral surgery clinical training. You will undertake minor oral surgery under supervision, carried out under local anaesthesia, conscious sedation and general anaesthesia. You will also attend theatre to assist and observe major surgery and attend consultation clinics, trauma clinics, ward rounds and carry out ward duties.

The clinical component of the course consists of the following units:
-Surgical Basic Sciences (Basic surgical science, preoperative and postoperative care) and Patient Care (Assessing patients, medical aspects of patient care and control of pain and anxiety)
-Reflective Oral Surgery Practices
-Dental Tissues (Infections and inflammation of the teeth and jaws, removal of teeth and surgical implantology)
-Bone: Disease and Injury (Diseases of bone and the maxillary sinus, oral and maxillofacial injuries)
-Soft Tissues (Cysts, mucosal disease, premalignancy and malignancy)
-Salivary Tissue, Pain and TMJ (Salivary gland disease, facial pain and disorders of the temporomandibular joint)

You will attend weekly interactive seminars led by senior staff and some invited guest speakers. Some of these have actor patients present to allow you to rehearse your clinical skills. If you study the full three year MSc you will also attend external teaching events such as residential blocks for basic science applied to surgery at the Royal College of Surgeons of England.

Aims

The course aims to:
-Provide dental practitioners with the knowledge and skills to undertake oral surgery in the context of wider knowledge of oral and maxillofacial surgery
-Provide you with the appropriate knowledge, understanding, intellectual skills, practical skills and attitude to practice oral surgery in selected cases
-Enable you to carry out critical evaluation, problem solving and use sound judgement for clinical problems
-Give you the knowledge to criticalyl understand the issues involved in the scientific basis of oral and maxillofacial surgery
-Ensure you are competent in the design and interpretation of original clinical research at the forefront of current dental research (including data collection and statistical analysis using appropriate computer software)
-Provide you with the knowledge and experience to plan, implement and complete a research project showing initiative and personal responsibility

Career opportunities

MSc courses are designed for dental practitioners who wish to further their knowledge of surgery and are a useful foundation for specialist training in this field.

The three year course provides specialist oral surgery clinical training.

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The Musculoskeletal Science MSc covers a broad spectrum of musculoskeletal topics, including basic science and clinical aspects. Read more
The Musculoskeletal Science MSc covers a broad spectrum of musculoskeletal topics, including basic science and clinical aspects. It aims to give students, in a multidisciplinary setting, a holistic view of musculoskeletal science, orthopaedic bioengineering and medicine, and provides an in-depth knowledge of specific areas appropriate to each student's individual interests.

Degree information

Students on this MSc programme acquire essential scientific knowledge, improve their basic research skills, and are equipped with the ability to solve the musculoskeletal problems emphasised within the NHS framework. The programme emphasises the four major areas as identified by the Bone and Joint Decade - arthritis, osteoporosis, trauma and spinal disorders, and transferable skills and research methodology in orthopaedic bioengineering.

Students undertake modules to the value of 180 credits. The programme consists of eight taught modules (120 credits), and a research project (60 credits).

Students will be awarded an MSc on successful completion of all taught modules and research project; a Postgraduate Diploma on successful completion of eight taught modules (all core modules plus any four from options); and a Postgraduate Certificate on successful completion of four taught modules.

A Postgraduate Diploma (120 credits, full-time nine months and flexible study up to five years) is offered. A Postgraduate Certificate (60 credits, full-time three months and flexible study up to two years) is offered.

Core modules
-Clinical Aspects of Musculoskeletal Medicine and Surgery, Part I
-Musculoskeletal Tissue Biology - Form and Function
-Musculoskeletal Biomechanics and Biomaterials, Part I
-Research Methodology and Generic Skills

Optional modules - up to 60 credits of optional modules (4 modules) drawn from the following:
-Clinical Aspects of Musculoskeletal Medicine and Surgery, Part II
-Musculoskeletal Tissue Biology - Disease and Dysfunction
-Musculoskeletal Biomechanics and Biomaterials, Part II
-Research Governance
-Clinical Experience in Musculoskeletal Surgery
-Surgical Skills in Orthopaedic Surgery

Dissertation/report
All MSc students undertake an independent research project that will contribute to cutting-edge scientific, clinical and industrial research, and culminates in a dissertation and oral examination.

Teaching and learning
The programme is delivered through a combination of taught lectures, seminars, tutorials, group project work and workshops. Assessment is through online MCQs, coursework, and the dissertation and viva voce. Candidates are examined in the year in which they complete the programme.

Careers

This programme offers students from a wide variety of disciplines the opportunity to gain a higher degree in an exciting and rapidly developing field, and equips them to make a strong contribution to the development of musculoskeletal services. The students can develop their careers in healthcare sector, medical device industry and bio-industry, regenerative medicine, regulatory bodies, as well as academic community.

Top career destinations for this degree:
-Orthopaedic Surgeon, St Thomas' Hospital (NHS)
-MBBS (Bachelor of Medicine, Bachelor of Surgery), King's College London
-Medical Research on Replacement Joints, Cardiff University (Prifysgol Caerdydd)
-Occupational Therapy Assistant, Watford General Hospital (NHS)
-Orthopaedic Surgeon, Assaswa International Hospital

Why study this degree at UCL?

The Division of Surgery & Interventional Science is part of one of the most prestigious medical schools in Europe, with a team of nearly 400 people, from surgeons, biologists, bioengineers and material scientists and oncologists, to clinical trials specialists and researchers. Our aim is to understand the causes of human musculoskeletal disease and develop innovative therapies and technology to improve the quality of life.

Students on this MSc will gain an unparalleled grounding in musculoskeletal science and orthopaedic bioengineering, including a holistic view of clinical care as well as orthopaedic sciences and bioengineering. The programme is run at the internationally renowned Royal Orthopaedic Hospital in Stanmore.

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The Musculoskeletal Science MSc covers a broad spectrum of musculoskeletal topics, including basic science and clinical aspects. Read more
The Musculoskeletal Science MSc covers a broad spectrum of musculoskeletal topics, including basic science and clinical aspects. It aims to give students, in a multidisciplinary setting, a holistic view of musculoskeletal science, orthopaedic bioengineering and medicine, and provides an in-depth knowledge of specific areas appropriate to each student's individual interests.

Degree information

Students on this MSc programme acquire essential scientific knowledge, improve their basic research skills, and are equipped with the ability to solve the musculoskeletal problems emphasised within the NHS framework. The programme emphasises the four major areas as identified by the Bone and Joint Decade - arthritis, osteoporosis, trauma and spinal disorders, and transferable skills and research methodology in orthopaedic bioengineering.

Students undertake modules to the value of 180 credits. The programme consists of four core modules (60 credits), four optional modules (60 credits) and a research project (60 credits). A Postgraduate Diploma (120 credits, full-time nine months and flexible study up to five years) is offered. A Postgraduate Certificate (60 credits, full-time three months and flexible study up to two years) is offered.

Core modules
-Clinical aspects of Musculoskeletal Medicine and Surgery, Part I
-Musculoskeletal Tissue Biology - Form and Function
-Musculoskeletal Biomechanics and Biomaterials, Part I
-Research Methodology and Generic Skills

Optional modules - up to 60 credits of optional modules (4 modules) drawn from the following:
-Clinical aspects of Musculoskeletal Medicine and Surgery, Part II
-Musculoskeletal Biology, Part II
-Musculoskeletal Biomechanics and Biomaterials, Part II
-Musculoskeletal Epidemiology and Research Methodology, Part II
-Clinical Experience in Musculoskeletal Surgery

Dissertation/report
All MSc students undertake an independent research project, which can be carried out at their own institution or hospital, and culminates in a dissertation and oral examination.

Teaching and learning
The programme is delivered through a combination of web-based taught lectures, seminars, tutorials, online research forum, group project work and workshops. Assessment is through unseen written examination, coursework, and the dissertation and viva voce. Candidates are examined in the year in which they complete the programme.

Careers

This programme offers students from a wide variety of disciplines the opportunity to gain a higher degree in an exciting and rapidly developing field, and equips them to make a strong contribution to the development of musculoskeletal services. The students can develop their careers in healthcare sector, medical device industry and bio-industry, regenerative medicine, regulatory bodies, as well as academic community.

Top career destinations for this degree:
-Trauma and Orthopaedics, NHS Bradford Teaching Hospitals NHS Foundation Trust and studying Engineering, The Open University.

Why study this degree at UCL?

The UCL Division of Surgery & Interventional Science is part of one of the most prestigious medical schools in Europe, with a team of nearly 400 people, from surgeons, biologists, bioengineers and material scientists and oncologists to clinical trials specialists and researchers. Our aim is to understand the causes of human musculoskeletal disease and develop innovative therapies and technology to improve the quality of life of the people around us.

Students on this MSc will gain an unparalleled grounding in musculoskeletal science and orthopaedic bioengineering including a holistic view of clinical care as well as orthopaedic sciences and bioengineering. The programme is run at the internationally renowned Royal Orthopaedic Hospital in Stanmore.

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The programme is a full-time taught postgraduate degree course leading to the degree of MSc in Biomedical Engineering. Read more
The programme is a full-time taught postgraduate degree course leading to the degree of MSc in Biomedical Engineering. It has an international dimension, providing an important opportunity for postgraduate engineers to study the principles and state-of-the-art technologies in biomedical engineering with a particular emphasis on applications in advanced instrumentation for medicine and surgery.

Why study Biomedical Engineering at Dundee?

Biomedical engineers apply engineering principles and design methods to improve our understanding of living systems and to create new techniques and instruments in medicine and surgery.

The taught modules in this course expose students to the leading edge of modern medical and surgical technologies. The course also provides concepts and understanding of the role of entrepreneurship, business development and intellectual property exploitation in the biomedical industry, with case examples.

The research project allows students to work in a research area of their own particular interest, learning skills in presentation, critical thinking and problem-solving. Project topics are offered to students during the first semester of the course.

UK qualifications are recognised and respected throughout the world. The University of Dundee is one of the top UK universities, with a powerful research reputation, particularly in the medical and biomedical sciences. It has previously been named 'Scottish University of the Year' and short-listed for the Sunday Times 'UK University of the Year'.

Links with Universities in China:

This course can be taken in association with partner universities in China with part of the course taken at the home institution before coming to Dundee to complete your studies. For students from elsewhere it is possible to take the entire course at Dundee.

What's so good about Biomedical Engineering at Dundee?

The University of Dundee has had an active research programme in biomedical engineering for over 20 years.

The Biomedical Engineering group has a high international research standing with expertise in medical instrumentation, signal processing, biomaterials, tissue engineering, advanced design in minimally invasive surgery and rehabilitation engineering.

Research partnerships:

We have extensive links and research partnerships with clinicians at Ninewells Hospital (largest teaching hospital in Europe) and with world renowned scientists from the University's College of Life Sciences. The new Institute of Medical Science and Technology (IMSaT) at the University has been established as a multidisciplinary research 'hothouse' which seeks to commercialise and exploit advanced medical technologies leading to business opportunities.

This course has two start dates - September or January, and lasts for 12 months.

How you will be taught

The structure of the MSc course is divided into two parts. The taught modules expose students to the leading edge of modern biomedical and surgical technologies. The course gives concepts and understanding of the role of entrepreneurship, business development and intellectual property exploitation in the biomedical industry, with case examples.

The research project allows students to work in a research area of their own particular interest, learning skills in presentation, critical thinking and problem-solving. Project topics are offered to students towards at the beginning of second semester of the course.

What you will study

The course is divided into two parts:

Part I (60 Credits):

Bioinstrumentation (10 Credits)
Biomechanical Systems (20 Credits)
Biomaterials (20 credits)
Introduction to Medical Sciences (10 Credits)
Part II (120 Credits) has one taught module and a research project module. It starts at the beginning of the University of Dundee's Semester 2, which is in mid-January:

The taught module, Advanced Medical and Surgical Instrumentation (30 Credits), exposes students to the leading edge of modern medical and surgical technologies. It will also give concepts and understanding of the role of entrepreneurship, business development and intellectual property exploitation in the biomedical industry, with case examples.
The research project (90 Credits) will allow students to work in a research area of their own particular interest and to learn skills in presentation, critical thinking and problem-solving. Project topics will be offered to students before Part II of the course. We shall do our best to provide all students with a project of their choice.
The time spent in Dundee will also give students a valuable educational and cultural experience.

How you will be assessed

The course is assessed by coursework and examination, plus dissertation.

Careers

An MSc degree in Biomedical Engineering will prepare you for a challenging and rewarding career in one of many sectors: the rapidly growing medical technology industry, academic institutions, hospitals and government departments.

A wide range of employment possibilities exist including engineer, professor, research scientist, teacher, manager, salesperson or CEO.

The programme also provides the ideal academic grounding to undertake a PhD degree leading to a career in academic research.

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