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Biological Sciences×

University of Liverpool, Full Time Masters Degrees in Biological Sciences

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Through the ethos of research-led teaching, our MSc in Advanced Biological Sciences will provide you with an innovative and rewarding experience within… Read more
Through the ethos of research-led teaching, our MSc in Advanced Biological Sciences will provide you with an innovative and rewarding experience within an excellent environment of state-of-the-art research laboratories, cutting-edge provision for proteomics, genomics, advanced genome sequencing and analysis, a cell imaging suite, transgenic plants facility and an NMR centre for protein structure analysis.

The School has developed bespoke pathways to MSc awards across all of its research areas, affording applicants the opportunity to develop their own postgraduate degree programmes. These new programmes can therefore be based around your particular areas of interest. The title of your degree award will reflect your pathway of choice, which in turn reflects the research interest of the research grouping, for example, MSc Advanced Biological Sciences (Molecular Oncology).

You will be able to choose from a series of taught modules to ensure that you develop the correct academic background and skills to excel in research. You will also be offered a flexible but guided programme of study, which will enable you to develop your leadership, information technology and professional skills.

Pathways include:

Advanced Biological Sciences (Animal Sciences)
Advanced Biological Sciences (Bioinformatics)
Advanced Biological Sciences (Biotechnology)
Advanced Biological Sciences (Cell Signalling)
Advanced Biological Sciences (Chemical Biology)
Advanced Biological Sciences (Conservation Biology)
Advanced Biological Sciences (Evolution and Behavioural Biology)
Advanced Biological Sciences (Food Security)
Advanced Biological Sciences (Functional and Comparative Genomics)
Advanced Biological Sciences (Host: Parasite Biology)
Advanced Biological Sciences (Human Immunity)
Advanced Biological Sciences (Microbiology)
Advanced Biological Sciences (Molecular Oncology)
Advanced Biological Sciences (Plant Sciences)
Advanced Biological Sciences (Post-Genomic Science)
Advanced Biological Sciences (Structural Biology)

Projects

Research projects offered in previous years include:

Combining species-specific and site-specific conservation: towards a more integrated conservation effort
Interference interactions between Staphylococcus aureus and other members of the nasal microflora
Preparation of recombinant S100P protein for interaction studies
Investigating the activity of potential malarial therapeutics
From mate choice to partner preference
MCL-1 as a regulator of apoptosis in myeloid cell lines
Using experimental evolution to test diffuse coevolution theory in host-symbiont interactions.

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The Institute of Integrative Biology has developed bespoke pathways to MRes awards across all of its research interests, affording applicants the opportunity to develop their own postgraduate degree programmes. Read more
The Institute of Integrative Biology has developed bespoke pathways to MRes awards across all of its research interests, affording applicants the opportunity to develop their own postgraduate degree programmes.

These new programmes can therefore be based around your particular areas of interest. The title of your degree award will reflect your pathway of choice.

Example Pathways

Advanced Biological Sciences (Animal Sciences)
Advanced Biological Sciences (Bioinformatics)
Advanced Biological Sciences (Biotechnology)
Advanced Biological Sciences (Cell Signalling)
Advanced Biological Sciences (Chemical Biology)
Advanced Biological Sciences (Conservation Biology)
Advanced Biological Sciences (Evolution and Behavioural Biology)
Advanced Biological Sciences (Food Security)
Advanced Biological Sciences (Functional and Comparative Genomics)
Advanced Biological Sciences (Host: Parasite Biology)
Advanced Biological Sciences (Microbiology)
Advanced Biological Sciences (Molecular Oncology)
Advanced Biological Sciences (Plant Sciences)
Advanced Biological Sciences (Structural Biology)

You will be able to choose from a series of taught modules to ensure that you develop the correct academic background and skills to excel in research. An important component of the programme will be the opportunity for non-native English speakers to take a specially designed module in communication skills. This module is taught by members of our English Language Unit and will be designed to improve your English in a scientific context. Please see http://www.liv.ac.uk/elu for details.

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Human impacts on the environment have never been greater. As we approach the 6th mass extinction of species and face the prospect of global climate change, we are just beginning to realize how much we depend on ecosystems to provide us with services such as food, water, clean air, waste disposal and fibre. Read more
Human impacts on the environment have never been greater. As we approach the 6th mass extinction of species and face the prospect of global climate change, we are just beginning to realize how much we depend on ecosystems to provide us with services such as food, water, clean air, waste disposal and fibre. There has never been a more exciting time to study conservation biology and resource management. Our one-year programmes train students to an advanced level in conservation science and resource management, enabling them to become conservation professionals in research or the government, non-governmental organization, and consultancy sectors.

This is inevitably an inter-disciplinary subject. Our programmes benefit from the wide experience of teachers in the Schools of Environmental and Biological Sciences, with backgrounds in disciplines including conservation biology, ecology (including marine and population ecology), genetics, environmental planning, ocean science, management, law, and geography. Our programmes provide ample scope for individual research projects supervised by staff with research interests including socio-economic issues, historical impacts, climate change, conservation of rare species, and habitat management.

Why Ecology?

£7 million investment

The University's recent £7 million investment in marine ecology and the creation of the new School of Environmental Sciences have resulted in excellent research and teaching facilities.

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The aim of the MRes is to provide training at Masters level for intercalating medical undergraduates, medical and science graduates and career academics-in-training, so meeting regional and national demands for research oriented skills in these disciplines. Read more
The aim of the MRes is to provide training at Masters level for intercalating medical undergraduates, medical and science graduates and career academics-in-training, so meeting regional and national demands for research oriented skills in these disciplines.

A key element of the programme design is the development of relevant, appropriate research skills, in addition to a systematic understanding and critical awareness of the research process.

The programme prepares the student for doctoral research training and satisfies the criteria of the Research Councils for Master of Research training.

Programme objectives
Provide training in transferable skills, techniques, and knowledge appropriate to postgraduate research students at Masters level
Develop the capacity for individual work and teamwork in an interdisciplinary research environment
Conduct independent research through practical experience in formulating appropriate research strategies, methods, data collection and analysis via three 12-week research projects
Develop communication skills both oral and written to enable research debate (with scientific and lay audiences) and peer reviewed journal publications
Equip the student to take the first postgraduate steps leading to future roles in biomedical research in the clinical, industrial, and public sectors
Prepare the student for entry into a PhD programme.
The programme is built around the research interests of the Institutes of Ageing & Chronic Disease and Infection & Global Health and consists of eleven Programme Pathways (listed below) reflecting the world-class research being carried out in these areas within both Institutes.

Programme pathways
Clinical Infection & Global Health
Emerging & Zoonotic Infections
Eye and Vision Science
Infection Immunology
Microbial Pathogenesis
Musculoskeletal Biology
Neurological Infections
Obesity & Endocrinology
One Health
Translation Bacteriology
Veterinary Science
During the course you will undertake three 12-week research projects with academics (both clinical and non-clinical) from these Institutes. By carrying out three research projects linked to one of the pathways highlighted above, you will graduate with the pathway branding in your degree certificate, for example MRes in Clinical Sciences (Emerging & Zoonotic Infections) [or other appropriate pathway].

Alternatively, you are able to experience a broader range of research by carrying out projects across different pathways, and receive the qualification MRes in Clinical Sciences.

Further details of the academic members of staff who contribute to the MRes and the research interests of the Institutes can be found at the following websites: https://www.liv.ac.uk/infection-and-global-health/ and https://www.liv.ac.uk/ageing-and-chronic-disease/.

The programme has a modular structure and is delivered by lectures, tutorials, seminars, workshops and individual tuition for the research projects.

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The twelve month, full-time programme is structured to allow for 3 hours lectures per week whilst the rest of the time is spent in the lab or carrying out other research project related work. Read more
The twelve month, full-time programme is structured to allow for 3 hours lectures per week whilst the rest of the time is spent in the lab or carrying out other research project related work.

MRes in Biomedical Sciences & Translational Medicine students undertake 3 research projects that comprise 10 weeks of lab work followed by 2 weeks in which to write a report. Students also present either a poster or talk at the end of every research project. During the project, all students are encouraged to suggest experiments, design experimental protocols, as well as being taught subject specific techniques and advanced knowledge in transferable skills. The research projects will include at least three different research techniques to enhance experimental training skills that need to be clearly stated at the end of each project.

The lectures relate to state-of-the-art research techniques, application of knowledge in scientific and clinical areas, and the development of personal and professional transferable skills. Important and innovative parts of the transferable skills students take part in include the following workshops “IP and Commercialization (our own version of Dragon’s Den)”, Demonstrator Training and “Writing a PhD Studentship”, as well as taking part in debates for public understanding of science.

Read less
Human impacts on the environment have never been greater. As we approach the 6th mass extinction of species and face the prospect of global climate change, we are just beginning to realize how much we depend on ecosystems to provide us with services such as food, water, clean air, waste disposal and fibre. Read more
Human impacts on the environment have never been greater. As we approach the 6th mass extinction of species and face the prospect of global climate change, we are just beginning to realize how much we depend on ecosystems to provide us with services such as food, water, clean air, waste disposal and fibre. There has never been a more exciting time to study conservation biology and resource management.

Our one-year programmes train students to an advanced level in conservation science and resource management, enabling them to become conservation professionals in research or the government, non-governmental organization, and consultancy sectors.

The MRes programme has an emphasis on developing individual research skills. Students therefore take 60 credits of taught modules and a 120 credit research project.

Why Ecology?

£7 million investment

The University's recent £7 million investment in marine ecology and the creation of the new School of Environmental Sciences have resulted in excellent research and teaching facilities.

Read less

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