Mayank Kohli
Also known as: M. Kohli, Kohli M.
National Yang Ming Chiao Tung University, Jamia Millia Islamia, Maharishi Markandeshwar University, Mullana
About
My research has been focused around sensing technologies, beginning with foundational work in sensor fabrication and sensing materials.
Building on these foundations, my doctoral research shifted from component-level sensing toward translational biomedical sensing systems, focusing on two applications of magnetic sensing. The first was wearable intraoral pressure sensing for orthodontic applications. The second was electromagnetic targeting for orthopedic applications, aimed at improving surgical reliability while maintaining procedural practicality. This work included magnetic thin-film deposition and the use of flexible magnetic materials on orthopedic bone nails.
My core competence lies in sensor design and development, sensing materials, thin-film and flexible-material-based device development, nano-porous structures, magnetic and pressure sensing, measurement-system development, sensor integration, and practical evaluation under application-specific constraints.
Looking ahead, I am particularly interested in sensing technologies/devices, surgical navigation systems, multimodal sensing, sensor-fusion strategies, Embedded AI, wearable biomedical systems, and TinyML for healthcare applications.
Employment
Employment history is unavailable.
Education
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National Yang Ming Chiao Tung University PhD2018 - 2024
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Jamia Millia Islamia Master in Nanotechnology2015 - 2017
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Maharishi Markandeshwar University, Mullana Bachelor in Technology2009 - 2013
Projects & Funding
Projects & funding information is unavailable.
Publications (9)
- Utilizing Flexible Magnetic-Alloy Sheet With Rolling-to-Attaching Method to Fabricate a Smart Nail for Electromagnetic Screw-Hole Targeting in Intramedullary Interlocking-Nail Surgery Save
- Design of smart magnetic thin-sheet structure based wireless sensors-array arrangement for intraoral-pressure sensing approach Save
- A Novel Magnetic High-Permeable Thin-Film Electroplated-On-Nail Approach for Electromagnetic Targeting in Intramedullary Interlocking-Nail Surgery Save
- A Variable-Reluctance Based Wireless Sensing Module for Intraoral Pressure Measurement Save
- An Electroplated Magnetic NiFe Film Based Electromagnetic Targeting for Interlocking-Nail Broken-Bone Surgery Save
- Wearable Wireless Magnetic-Reluctance-Based Pressure Sensing Module for Intraoral Pressure Monitoring Save
- Electromagnetic Targeting Method Utilizing Microscale Magnetic Thin-Film Electroplated Interlocking-Nail During Long-Bone Nail-Surgery Save
- Wireless Passive Magnetic Sensing Module for Intraoral-Pressure Monitoring Save
- Nano Porous Anodic Alumina based Capacitive Sensor for Measuring Trace Moisture Save