Amandeep Singh
University of Houston, IIT Hyderabad, Indian Institute of Technology Hyderabad, Panjab University, D.A.V.College
About
I am a Postdoctoral Fellow at the University of Houston, Texas, with a PhD in Biomedical Optics and over eight years of experience in optical imaging and tissue biomechanics. I did my Ph.D. from Department of Biomedical Engineering at Indian Institute of Technology, Hyderabad, India. My research focuses on biomedical optics and elastography, developing and applying optical elastography methods for quantitative characterization of tissue biomechanics and advancing non-invasive imaging technologies for clinical applications. My expertise spans optical elastography, design and implementation of advanced imaging systems, computational algorithm development, and translational biomedical research. I am particularly interested in integrating computational and experimental approaches to address complex biological questions, enhance the accuracy and reliability of biomechanical measurements, and develop innovative strategies for non-invasive tissue characterization with potential clinical impact.
Employment
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University of Houston Postdoctoral Fellow2023 - Present
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IIT Hyderabad Doctoral student2018 - 2023
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IIT Hyderabad Junior Research Fellow2017 - 2018
Education
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Indian Institute of Technology Hyderabad Doctor of Philosophy2018 - 2023
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Panjab University Master of Science2014 - 2016
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D.A.V.College Bachelor of Science2011 - 2014
Projects & Funding
Projects & funding information is unavailable.
Publications (25)
- Dual Optical Elastography Techniques Reveal the Regulation of Corneal Stiffness by Collagen <scp>XIV</scp> Save
- Corneal Stiffness Correlates with Axial Length in Non-Human Primates Using Optical Coherence Elastography Save
- Detecting corneal stiffness remodeling in glaucoma with optical coherence elastography Save
- Brillouin microscopy and optical coherence elastography reveal the role of collagen XIV in corneal stiffness Save
- Corneal stiffness measurements in non-human primates with experimental glaucoma using optical coherence elastography Save
- Quantitative comparison between optical coherence elastography, ultrasound-based shear wave elastography, and Brillouin imaging Save
- Corneal Biomechanics in Experimental Models of Glaucoma and Myopia Save
- Surface Wave Measurements on Tissue-Mimicking Phantoms Using Holographic Imaging Save
- Assessing the stiffness of intact bone marrow with noncontact optical coherence elastography Save
- Assessing the biomechanical properties of murine mouse embryo inside the yolk sac using multifocal acoustic radiation force-based reverberant optical coherence elastography Save