This study will develop computational models to examine how movement and loading affect THR performance, and what might cause early mechanical complications in groups with higher BMIs. An experimental study will be used to validate the model predictions, using the hip simulators in our world-leading laboratory facilities. The study will utilise a unique dataset of image and gait data collected previously by our collaborators at the Leeds Biomedical Research Centre (LBRC). The methods and evidence collected will help surgeons make choices on the type of THR device and how it is positioned to achieve optimum outcomes for individuals with higher BMIs. The supervision team includes engineers and clinical partners from the LBRC, providing extensive experience in the analysis tools and clinical measurement methods. The PhD is part-funded by an orthopaedic company, providing industry support and ensuring a rapid translation of findings into clinical practice.
An inclusive environment and supportive application process: As an international research-intensive university, we welcome students from all walks of life and from across the world. We foster an inclusive environment where all can flourish and prosper, and we are proud of our strong commitment to student education.
Interested? Guidance on how to apply, and more detailed information about the PhD is provided below.
Discuss this PhD Opportunity with Ruth Wilcox by contacting: R.K.Wilcox@leeds.ac.uk
Funding Notes
A highly competitive EPSRC Faculty Doctoral Landscape Award, in collaboration with Johnson & Johnson Med Tech, providing full academic fees, together with a tax-free maintenance grant at the standard UKRI rate of £21,805 for 3.5 years. Training and support will also be provided. This opportunity is open to UK applicants only. All candidates will be placed into the EPSRC Faculty Doctoral Landscape Award Competition and selection is based on academic merit.