OPTICAL MOLECULAR TOMOGRAPHY FOR REGENERATIVE MEDICINE
Soker Shay
Virginia Polytechnic Inst And St Univcity: Blacksburg country: United States (us)
Grant 5R01HL098912-03 from National Heart, Lung, And Blood Institute
Keywords: Address; Affect; Algorithms; Anastomosis - action; Animals; Area; Arthritis; base; Bathing; Biological; Biological Assay; Biological Process; Biomedical Engineering; Biomedical Research; Biopsy; Bioreactors; Bladder; Blood flow; Blood Vessels; Burn injury; Cardiovascular Diseases; Carotid Arteries; Cell Differentiation process; Cell Line; cell motility; Cell physiology; cell type; Cells; Chronic Disease; Cicatrix; Clinical; clinical application; clinical practice; Complex; Degenerative Disorder; design; Development; Diabetes Mellitus; Endothelial Cells; Engineering; Fluorescence; Fluorescent Probes; Gene Expression; Goals; Growth; Heart; Histology; Human; human disease; Hybrids; Image; Imagery; Imaging Device; Implant; implantation; improved; In Vitro; in vivo; Inflammation; innovation; interest; Kidney; Kidney Failure; Knowledge; Label; Laboratories; Lasers; Life; Light; Liver; Liver Failure; Measurement; Medical; Medicine; Messenger RNA; Methods; migration; minimally invasive; Modeling; Molecular; molecular imaging; Monitor; Morphologic artifacts; mouse model; Natural immunosuppression; Natural regeneration; nerve supply; nervous system disorder; Nervous system structure; Noise; optic imaging; Optical Coherence Tomography; optical fiber; Optical Tomography; Optics; Organ; Organ Transplantation; Organism; Osteoporosis; Pathology; Patients; Performance; Phase; Photons; Physiological; Physiology; Play; Population Dynamics; preimplantation; Prevention; Process; Proteins; prototype; public health relevance; reconstruction; Regenerative Medicine; repaired; Reporter; research study; Resolution; response; Risk; Role; scaffold; Sheep; simulation; Skeleton; Smooth Muscle Myocytes; Spinal cord injury; Staging; stroke; Surface; System; Systems Biology; Techniques; Technology; Testing; Three-dimensional analysis; Three-Dimensional Image; Time; Tissue Engineering; tissue phantom; tissue regeneration; Tissues; tomography; Transplantation; Trauma; Tubular formation; United States National Institutes of Health; Vascular System; Vascularization
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Project start date: 2010-03-01
Project end date: 2013-11-30
Budget start date: 1-DEC-2011
Budget end date: 30-NOV-2012
5R01HL098912-03 (2012): $643622
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