MUMBAI, India, July 30 -- Intellectual Property India has published a patent application (202641082498 A) filed by Dayananda Sagar University on July 04, 2026, for System And Method For Dynamic Foot Morphology Assessment And Real-Time Volumetric Deformation Prediction Using Optical-Haptic Fusion.
Inventors include Manikandan Moovendran; M. Lakshmanan; Sriramkumar R; Jayavrinda V. Vadakkeparambil; Joshuva Arockia Dhanraj; A. Vegi Fernando; Mithaguru; Souramita Bhowmik; Ankita Thakkar Himmatlal; Ripunjay Mahendra Pratap Jaiswar; and Shivnandan Rai.
The application for the patent was published on July 24, 2026, under issue no. 30/2026.
Abstract: Title: System and Method for Dynamic Foot Morphology Assessment and Real-Time Volumetric Deformation Prediction using Optical-Haptic Fusion The present invention pertains to a kinetic foot-morphology analyzer (100) for real-time volumetric deformation prediction using integrated optical-haptic fusion. The system comprises an optical imaging module, a depth sensing module, a haptic pressure acquisition module, a motion sensing module, a sensor synchronization and preprocessing module (102), an optical-haptic fusion engine (104), an artificial intelligence analytics and predictive engine (105) and a volumetric reconstruction module (106). Optical images, depth information, plantar pressure measurements and motion data acquired during standing, walking, running and other kinetic activities are synchronized and fused to generate a unified spatial-temporal foot morphology model representing foot geometry, plantar loading behavior, motion dynamics and deformation characteristics. Artificial intelligence models analyze the fused data to predict volumetric deformation, tissue compression, displacement, strain, pressure redistribution, gait abnormalities and other biomechanical parameters. The system generates real-time three-dimensional deformation models and biomechanical analytics, enabling continuous and personalized assessment of dynamic foot behavior with improved accuracy compared with conventional static foot- analysis systems.
Disclaimer: Curated by HT Syndication.