MUMBAI, India, June 22 -- Intellectual Property India has published a patent application (202631068617 A) filed by Dr. Avijit Mallick on June 01, 2026, for Thermodynamically Stabilized Magneto-Hemodynamic With Non-Convex Flux Concentrators And Passive-Dynamic Rheological Elements.

Inventor includes Dr. Avijit Mallick.

The application for the patent was published on June 12, 2026, under issue no. 24/2026.

Abstract: The present invention relates to a thermodynamically regulated magneto therapeutic spectacle apparatus designed for periocular neurovascular stimulation and user comfort. The apparatus comprises a spectacle chassis incorporating one or more hermetically sealed treatment chambers strategically positioned adjacent to periocular stimulation zones. Each chamber contains one or more magnetic field generating elements encapsulated within a viscoelastic phase-change composition configured to undergo a controlled solid-to-liquid phase transition within a predetermined temperature range, thereby absorbing latent heat and mitigating thermal fluctuations experienced during use. The encapsulating composition may comprise a lipophilic phase-change base, lignocellulosic thixotropic viscosity modifiers, and phytochemical stabilization agents to enhance structural integrity, thermal performance, and long-term stability. The magnetic field generating elements may be provided in static, dynamic, or replaceable configurations and may possess various geometries configured to generate, concentrate, or modulate localized magnetic flux characteristics. ln certain embodiments, the magnetic elements are arranged in customizable hemodynamic pull-push arrays and may cooperate with ferromagnetic flux- return assemblies to optimize magnetic field distribution. The invention further provides manufacturing methods for producing the apparatus through encapsulation, suspension, coating, and hermetic sealing techniques. The disclosed apparatus offers a modular, customizable, thermally adaptive, and magnetically optimized wearable system suitable for delivering targeted periocular magnetic stimulation while enhancing comfort, durability, and operational stability.

Disclaimer: Curated by HT Syndication.