MUMBAI, India, Aug. 12 -- Intellectual Property India has published a patent application (202641087482 A) filed by Saveetha Institute Of Medical And Technical Sciences on July 17, 2026, for Adaptive Neuro-Reflex Perturbation Belt For Dynamic Stability.
Inventors include Mr. Suraj A; Dr. S. Suji; and Dr Ramya Mohan.
The application for the patent was published on August 07, 2026, under issue no. 32/2026.
Abstract: ADAPTIVE NEURO-REFLEX PERTURBATION BELT FOR DYNAMIC STABILITY ABSTRACT A wearable ankle gadget titled the Adaptive Neuro-Reflex Perturbation Belt for Dynamic Stability is intended to improve proprioception, neuromuscular control, and reflex-based balance responses. In order to identify ankle instability and provide targeted vibration cues that activate neuro-reflex circuits, the system combines an inertial measuring unit (IMU): MPU6050, an adaptive microcontroller: ESP32, and haptic actuators: Coin vibrators. The device stimulates sensory pathways that trigger corrective muscular responses by providing real-time neuro-reflex perturbations when aberrant ankle motions or instability are identified. Due to their lack of flexibility and reliance on visual or monitored feedback, traditional balance training methods frequently cause longer neuromuscular recovery. This product, on the other hand, makes use of autonomous adaptive feedback, which allows the vibrations pattern and strength to automatically change in response to the user's reflex performance and stability scores. The belt is appropriate for both clinical rehabilitation and self-sufficient home usage, a wireless connection for data visualization, and physician monitoring. The device overcomes major shortcomings in current ankle therapy techniques by integrating wearable technology, neurosensory feedback, and adaptive rehabilitation concepts. For athletes, elderly individuals, and patients with ankle instability or balance issues, it provides an affordable, portable, and unique way to improve dynamic stability, lower the risk of reinjury, and speed functional recovery
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