Technical Name Synchronized Sample-and-Hold Stimulation Artifact Removal Technique for Intelligent DBS SoC to Achieve Precise Treatment of Parkinson's Disease
Project Operator National Yang Ming Chiao Tung University
Project Host 柯明道
Summary
Addressing the sensing blind spots caused by stimulation artifacts in conventional closed-loop deep brain stimulation (DBS), our team integrates semiconductor with clinical medicine to develop an intelligent DBS system-on-chip (iDBS SoC) embedded with "Synchronized Sample-and-Hold Artifact Blanking (SSAB)" technology (US patent No. US12,616,829B2). iDBS utilizes the Parkinson's disease β oscillations as a biomarker to achieve precise treatment and real-time automated feedback stimulation.
Scientific Breakthrough
This technology develops an autonomous, self-modulating intelligent deep brain stimulation system-on-chip (iDBS SoC). Powered by "Synchronized Sample-and-Hold Artifact Blanking (SSAB)" technology, it achieves microsecond-level synchronized artifact removal by precisely sampling, holding, and blanking at the circuit level. iDBS isolates artifacts before they reach the sensing front-end and overcoming a million-fold voltage disparity, achieving a simultaneous stimulation and sensing design.
Industrial Applicability
The intelligent deep brain stimulation system-on-chip (iDBS SoC) breaks through the limitations of conventional DBS, which cannot perform simultaneous sensing and stimulation. Featuring our US-patented "Synchronized Sample-and-Hold Artifact Blanking (SSAB)" technology, it effectively resolves sensing blind spots. The iDBS system integrates sensing, computation, and stimulation into a single chip for autonomous operation, achieving low power consumption and precise treatment.
  • Contact
  • Yi-Hui Wu