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Research Interests
Bio-sensing; Clinical Biophotonics; Musculoskeletal and sports medicine; Near-infrared spectroscopy; Neuroprotection; Translational research
Dr. Shadgan’s primary research is focused on using biophotonics techniques to study processes occurring inside tissues, including their supplies of blood and oxygen, in a clinical setting. The core of his current research program includes developing a new method for continuous monitoring of spinal cord hemodynamics and oxygenation in people with acute spinal cord injury (SCI). In collaboration with ICORD PI Dr. Brian Kwon, Dr. Shadgan has developed an implantable NIRS sensor small enough to be placed over the spinal cord for non-invasive monitoring of spinal cord tissue oxygenation and hemodynamics. He is also developing an optical sensor to assess and monitor blood flow to grafts, as well as their viability in reconstructive surgery and organ transplantation.
A miniaturized multi-wavelength NIRS sensor developed by Dr. Shadgan for continuous monitoring of tissue oxygenation and hemodynamics.
Among photonics techniques, Dr. Shadgan has expertise and a particular interest in development and application of near-infrared spectroscopy (NIRS) in clinical settings
Bio-sensing; Clinical Biophotonics; Musculoskeletal and sports medicine; Near-infrared spectroscopy; Neuroprotection; Translational research
Dr. Shadgan’s primary research is focused on using biophotonics techniques to study processes occurring inside tissues, including their supplies of blood and oxygen, in a clinical setting. The core of his current research program includes developing a new method for continuous monitoring of spinal cord hemodynamics and oxygenation in people with acute spinal cord injury (SCI). In collaboration with ICORD PI Dr. Brian Kwon, Dr. Shadgan has developed an implantable NIRS sensor small enough to be placed over the spinal cord for non-invasive monitoring of spinal cord tissue oxygenation and hemodynamics. He is also developing an optical sensor to assess and monitor blood flow to grafts, as well as their viability in reconstructive surgery and organ transplantation.
A miniaturized multi-wavelength NIRS sensor developed by Dr. Shadgan for continuous monitoring of tissue oxygenation and hemodynamics.
Among photonics techniques, Dr. Shadgan has expertise and a particular interest in development and application of near-infrared spectroscopy (NIRS) in clinical settings
研究兴趣
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Mehdi Nouri Zadeh, Aaron Mah, Justin Wyss, Jordan Johnson, Stefan Lazarevik, Arshdeep Khurana,Babak Shadgan
Biophotonics in Exercise Science, Sports Medicine, Health Monitoring Technologies, and Wearables V (2024)
Annals of Biomedical Engineeringpp.1-23, (2024)
crossref(2024)
Advanced Photonics in Urology 2024 (2024)
J. K. M. Wyss, A. L. Roya, D. Zhou, J. Y. S. Chow, B. Argun, H. Rajoria, M. Nogami, J. Zhao, A. Cowan,B. Shadgan,J. D. W. Madden
ELECTROACTIVE POLYMER ACTUATORS AND DEVICES, EAPAD XXV (2023)
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Sensorsno. 12 (2023): 5592-5592
Biophotonics in Exercise Science, Sports Medicine, Health Monitoring Technologies, and Wearables IV (2023)
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Biophotonics in Exercise Science, Sports Medicine, Health Monitoring Technologies, and Wearables IV (2023)
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