Saransh Sharma
Papers
3
Total Citations
21
H-Index
3
About
Saransh Sharma is pioneering the next frontier of precision medicine through groundbreaking work in magnetic-field-based localization and miniaturized medical devices. His research focuses on enabling real-time, high-accuracy 3D tracking of surgical tools and implants inside the human body—a critical capability for advanced orthopedic surgeries, targeted drug delivery, and wireless health monitoring. Sharma’s most cited paper (9 citations) introduces a surgical alignment system achieving an unprecedented 100-micrometer resolution using magnetic-field gradient localization, a substantial leap in reducing patient morbidity through minimally invasive procedures. His follow-up work (8 citations) extends this framework to general in vivo device localization, addressing fundamental challenges in wireless surgical navigation. Notably, Sharma also co-developed a monolithic 3D magnetic sensor in 65nm CMOS that operates at under 10 μTrms noise while consuming only 14.8 μW—a key enabler for implantable, low-power medical systems. By merging electromagnetic physics with integrated circuit design and surgical robotics, Sharma is laying the hardware foundation for a new generation of smart, navigated medical instruments that promise to make high-precision surgery safer, more accurate, and less invasive.
Research Focus
Key Achievements
Top Papers
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