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Multi-modal Skin Imaging Technology Development
Combining optical techniques to synergistically elevate non-invasive sensitivity (optical biomarkers) and specificity (localization of embedded tissue properties) in a single imaging platform.
Depth Resolved Quantitative Imaging of Tissue Ultra-Structure
Extracting more subtle, detailed information from in vivo tissue scattering to investigate cellular and extracellular structures in wound healing and skin cancers.
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Advanced Tissue Simulating Optical Phantoms
A fundamental shift in early medical device development that replaces animal testing with physical proxies that are constructed specifically to mimic human tissue over a range of pathological states.
Biomedical Imaging and Spectroscopy; Clinical Instrument Translation (BISCIT)
We develop methods and instrumentation that advance spectroscopy, light transport modeling, and imaging of tissue; creating quantitative, non-invasive tools for the clinical detection, monitoring or treatment of skin diseases and injuries.
Clinical Translation of SFDI Instrumentation
The design and development of low-cost, handheld devices toward seamless integration in to clinical practice, reducing translational barriers novel technologies and methods