Energy-Efficient Integrated Circuit Solutions Toward Miniaturized Closed-Loop Neural Interface Systems

Author:

Cho Jaeouk,Seong Geunchang,Chang Yonghee,Kim Chul

Abstract

Miniaturized implantable devices play a crucial role in neural interfaces by monitoring and modulating neural activities on the peripheral and central nervous systems. Research efforts toward a compact wireless closed-loop system stimulating the nerve automatically according to the user's condition have been maintained. These systems have several advantages over open-loop stimulation systems such as reduction in both power consumption and side effects of continuous stimulation. Furthermore, a compact and wireless device consuming low energy alleviates foreign body reactions and risk of frequent surgical operations. Unfortunately, however, the miniaturized closed-loop neural interface system induces several hardware design challenges such as neural activity recording with severe stimulation artifact, real-time stimulation artifact removal, and energy-efficient wireless power delivery. Here, we will review recent approaches toward the miniaturized closed-loop neural interface system with integrated circuit (IC) techniques.

Funder

National Research Foundation of Korea

Publisher

Frontiers Media SA

Subject

General Neuroscience

Reference156 articles.

1. 64-channel UWB wireless neural vector analyzer SOC with a closed-loop phase synchrony-triggered neurostimulator;Abdelhalim;IEEE J. Solid State Circ,2013

2. Recharging the battery of implantable biomedical devices by light;Algora;Artif. Organs,2009

3. A state-of-the-art survey on deep learning theory and architectures;Alom;Electronics,2019

4. Inflammatory response to implants;Anderson;ASAIO Trans,1988

5. A brief history of cardiac pacing;Aquilina;Images Paediatr Cardiol,2006

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