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@article{178846,
author = {Ms. S. Pavithra and Akash Devin B and Venkatachalam K},
title = {Electromagnetic Damping Based Hand Tremor Stabilizer},
journal = {International Journal of Innovative Research in Technology},
year = {2025},
volume = {11},
number = {12},
pages = {4660-4665},
issn = {2349-6002},
url = {https://ijirt.org/article?manuscript=178846},
abstract = {The Electromagnetic Damping-Based Hand Tremor Stabilizer is a wearable glove to help people enduring from hand tremors caused by neurological conditions such as Parkinson's infection and basic tremor. This inventive gadget utilizes a combination of electromagnetic damping innovation, electromyography (EMG) sensors, and inertial sensors including accelerometers and gyroscopes to screen and stabilize hand developments in genuine time. The EMG sensors distinguish muscle action, whereas the inertial sensors track speeding up, turn, and position to survey tremor designs. This sensor information is prepared to powerfully control an electromagnetic damping framework that produces restricting attractive strengths to check automatic tremors without confining normal hand movement. Not at all like mechanical arrangements, this non-invasive, quiet, and versatile glove guarantees client consolation and opportunity of development. It is lightweight, adaptable, fueled by a rechargeable battery, and planned for all-day wear, making it appropriate for changing levels of tremor seriousness. By reestablishing solidness and control, the glove empowers clients to recapture autonomy and unquestionably perform day by day errands such as composing, eating, and dealing with objects.},
keywords = {Electromagnetic Damping, Wearable Glove, Parkinson’s Disease, Essential Tremor, Emg Sensors, Inertial Sensors, Real-Time Stabilization.},
month = {May},
}
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