Papers
4
Total Citations
21
H-Index
4
About
Aman Arora is a researcher whose work bridges soft robotics, wearable technology, and biomedical engineering, with a particular focus on developing innovative sensing and actuation systems for rehabilitation and surgical applications. His research has made meaningful contributions to the design of flexible and stretchable strain sensors, demonstrating that conductive fabric-based approaches offer practical, cost-effective alternatives to complex microfluid and nanoparticle fabrication methods — work that has garnered 7 citations since its 2020 publication. Arora has also advanced the field of soft robotic rehabilitation devices, developing a pneumatic finger glove capable of producing both flexion and extension motions to assist stroke patients in recovering grasping ability, accumulating 6 citations since 2017. His exploration of sensorized pneumatic artificial muscles further integrates stretchable conductive textiles into bio-robotic systems, reflecting a consistent drive toward highly compliant, body-compatible components. Notably, his early work on a shape memory alloy-driven soft manipulator for minimally invasive surgery highlights his versatility, combining smart materials with modular robotic design for clinical applications. Across his portfolio, Arora exemplifies an engineer-researcher committed to translating novel materials and mechanisms into tangible medical and wearable solutions.
Research Focus
Key Achievements
Top Papers
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- 4A novel SMA driven soft manipulator for minimally invasive surgery4 citations · 2017