About
A brief description of who you are and what you do.
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Write about yourself in the third person. Aim for 100 to 150 words covering the main points about who you are and what you currently do. Clear, simple language is best. You can include specialist or technical terms.
You鈥檒l be able to add details about your research, publications, career and academic history to other sections of your staff profile.
Research
Your current research, published research topics, projects and groups.
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Research groups
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Research interests
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Current research
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Describe your current research in 100 to 200 words. Write in the third person. Include broad key terms to help people discover your work, for example, 鈥渟ustainability鈥 or 鈥渇ashion textiles鈥.
Research projects
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Publications
Pagination
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Supervision
Contact your Faculty Operating Service team to update PhD students you supervise and any you鈥檝e previously supervised. Making this information available will help potential PhD applicants to find you.
Teaching
A short description of your teaching interests and responsibilities.
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Courses and modules
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External roles and responsibilities
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Biography
I'm broadly interested in physical constraints that impact biological functions or shape habitats. I currently focus on physical processes such as solid/fluid mechanics and mass/energy transport in soils and monitor how these processes play a role in promoting/hindering biological activity from soil fauna and flora, such as earthworms and plant roots. I use imaging techniques such as X-ray computed tomography (XCT) or neutron radiography in order to monitor insitu activity and use this information to generate image based models that can be used to better understand processes that are otherwise difficult to measure. My work has been able to link earthworm biomechanical limitations and hydro-mechanical properties to global distributions, multiphase liquid distributions in the soil porspace to predict the impacts of local cytotoxic regions for microbial activity generated by fertiliser pelets, and generally inform plant water and nutrient acquisition through fluid flow and mass transport.
I'm currently developing techinques to understand quantify local insitu biomechanical stresses associated with root growth using coupled XCT and X-ray diffraction (XRD) measurements coupled with image based models. I aim to enable these techniques to be extended for broader biomechanical applications.
I'm formally trained in applied mathematics and mechanical engineering and focussed on soft robotics during my Msc designed for biomedical applications. I make use of biomemetic devices to emulate biophysical activity, but I focus on developing mathematical models based on first principles.
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Prizes
You can update this section in . Select 鈥+Add content鈥 and then 鈥楶rize鈥. using the 鈥楶rizes鈥 section.
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