Research group

Interdisciplinary Musculoskeletal Health

4 Stained femur cross sections

The University hosts a substantial interdisciplinary community of researchers working to transform musculoskeletal health across the life course.

About

With expertise in regenerative medicine, physiology, engineering, orthopaedics, prosthetics and orthotics, rehabilitation and assistive technologies, epidemiology and clinical trial design, we aim to improve lives by delivering improved treatments, increasing the speed to market of musculoskeletal-focused technology and training the next generation of scientists and engineers. 

The population across the globe is living longer, which brings a number of healthcare challenges, especially in musculoskeletal health. The burden of age-related disease and injury is rising rapidly, having a detrimental impact on people’s quality of life and increasing the costs of healthcare provision. Loss of muscle mass and function is the leading reason for loss of independence in later life, and causes impaired mobility, falls, fractures, physical disability, increased insulin resistance and associated co-morbidities, and mortality. The number of hip fractures is expected to rise to 6.3 million by 2050 and the number of diabetic lower limb amputations has now risen to 7,000 per year in the UK and over 70,000 in the USA. 

The University is working to meet these challenges by creating networks of experts working in interdisciplinary musculoskeletal health research to develop new technologies, interventions and practices that will have a positive effect on people’s lives:

  • FortisNet is an interdisciplinary research network of clinical, academic and industrial partners that aims to develop products and services to transform musculoskeletal health. Launched in 2016, we have fostered over 50 new collaborations with other universities from across the UK, the NHS and industry. We have developed courses with national partners to help innovators understand how to bring medical technologies to market, and through investment in interdisciplinary studentships we are working to dissolve discipline boundaries, to train a new generation of life scientists and engineers for the benefit of society.
  • MyAge (Muscle resilience across the life course: from cells to society) is one of eleven UK Ageing Networks, funded by the Biotechnology and Biological Sciences Research Council and Medical Research Council. Led by the Institute for Life Sciences, together with partners from Birmingham, Nottingham and Imperial, the network will guide the future of muscle resilience research through roadmap development and interdisciplinary collaboration.

Research highlights

Preventing the transmission of non-communicable disease risk between generations

Research from the Developmental Origins of Health and Disease Centre demonstrates how the diet and lifestyle choices of prospective parents and pregnant mothers can affect the long-term health of their children.

Using nanoclay gel to regrow, repair and replace damaged cells

Southampton researchers have developed an innovative medical clay that can be used to apply regenerative medicine to patients with musculoskeletal conditions.

People, projects and publications

People

Professor Damon Teagle

Director of SMMI

Research interests

  • • Formation and evolution of the ocean crust
  • • Fluid-rock interactions and Ore mineralisation
  • • Geochemical analysis

Accepting applications from PhD students

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Dr Daniel Kaganovich

Associate Professor of Neurobiology
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Dr Daniel Stabler

Lecturer in Plant-Organism Interactions

Accepting applications from PhD students

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Dr Danielle Lambrick

Associate Professor

Accepting applications from PhD students

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Dr Danielle Schoenaker BSc, MSc, FHEA, PhD

Senior Research Fellow

Research interests

  • Preconception health
  • Developmental Origins of Health and Disease
  • Maternal, paternal and child health

Accepting applications from PhD students

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Professor Dankmar Böhning

Professor of Medical Statistics

Research interests

  • Meta-analysis
  • Application of capture-recapture methods in Health and Social Science

Accepting applications from PhD students

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Dr Dave Rowe

Senior Research Fellow
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Professor David Baldwin

Professor in Psychiatry
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Professor David Simpson

Prof of Biomedical Signal Processing

Research interests

  • His research interests are in biomedical signal processing with applications in neurophysiology and cardio-vascular and cerebro-vascular control. Specific topics are:
  • Blood flow control in the brain (how does the brain regulate is own blood supply and how to detect impairment of this function).
  • Auditory evoked potentials (methods to detect the small electrical responses of the brain to auditory stimulation for the assessment of various hearing disorders).

Accepting applications from PhD students

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Dr David Toal

Associate Professor

Research interests

  • Design optimisation & automation
  • Machine learning & deep learning
  • Computer aided design
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Related research institutes, centres and groups

Related research institutes, centres and groups

Connect with us

We welcome new members. To join, or find out more about FortisNet or MyAge, please email the Institute for Life Sciences team.