Title :
A Fully Self-Contained Logarithmic Closed-Loop Deep Brain Stimulation SoC With Wireless Telemetry and Wireless Power Management
Author :
Hyo-Gyuem Rhew ; Jaehun Jeong ; Fredenburg, Jeffrey A. ; Dodani, Sunjay ; Patil, Parag G. ; Flynn, Michael P.
Author_Institution :
Broadcom, Central Eng., Irvine, CA, USA
Abstract :
Although closed-loop deep brain stimulation (DBS) promises treatment of many neurological disorders, an implantable system-on-chip (SoC) implementing an effective closed-loop DBS algorithm has not been demonstrated. This work introduces a logarithmic, closed-loop DBS system that detects and processes low-frequency brain field signals to control and adapt stimulation currents. The system records and processes neural signals with four low-noise neural amplifier (LNA) channels, a multiplexed logarithmic ADC, and two high-pass and two low-pass digital logarithmic filters. Logarithmic processing saves power and achieves high dynamic range. A logarithmic domain digital signal processor (DSP) and PI-controller controls eight current stimulator channels and enables closed-loop stimulation. An RF transceiver, a clock generator, and a power harvester are also included in the system to achieve a complete implantable SoC. The 4 mm2 180 nm CMOS prototype consumes a total of 468 μW for recording and processing neural signals, for stimulation, and for two-way wireless communication.
Keywords :
PI control; bioelectric potentials; biomedical telemetry; closed loop systems; high-pass filters; lab-on-a-chip; low-pass filters; medical disorders; medical signal detection; medical signal processing; neurophysiology; patient treatment; telemedicine; CMOS prototype; PI-controller; RF transceiver; clock generator; closed-loop deep brain stimulation algorithm; high-pass digital logarithmic filters; implantable system-on-chip; logarithmic domain digital signal processor; low-frequency brain field signal detection; low-frequency brain field signal processing; low-noise neural amplifier channels; low-pass digital logarithmic filters; multiplexed logarithmic ADC; neurological disorder treatment; power 468 muW; power harvester; size 180 nm; two-way wireless communication; wireless power management; wireless telemetry; Clocks; Digital signal processing; Gain; Pipelines; Satellite broadcasting; System-on-chip; Wireless communication; Closed-loop deep brain stimulation (DBS); PI controller; local field potential (LFP); log-domain DSP; logarithmic ADC;
Journal_Title :
Solid-State Circuits, IEEE Journal of
DOI :
10.1109/JSSC.2014.2346779