一种用于诱发神经电位感应的双补偿回路电荷平衡刺激器

IF 2.2 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
Longbin Zhu;Wenjie Wang;Risheng Su;Zhijun Zhou;Keping Wang
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引用次数: 0

摘要

神经功能电刺激(NFES)为产生预期的刺激效果提供了良好的控制和高度的可重构量。为了评估刺激的效果,诱发电位可以被感知。然而,在实际应用中,不平衡电荷积累会导致电极-组织传感界面的残留电荷和有毒电化学反应,从而导致电极腐蚀和组织损伤。本文提出了一种用于NFES的双补偿回路(TCL)电荷平衡(CB)拓扑结构。TCL-CB由两个补偿回路组成,包括一个正补偿回路(PCL)和一个负补偿回路(NCL)。PCL和NCL分别在威尔逊电流镜(WSC)的输出处连续检测和补偿累积的负电荷和正电荷。该电路以集成电路(IC)实现为目标,采用0.18 μm互补金属氧化物半导体(CMOS)技术设计和制造。采用TCL-CB的WSC的功耗约为79.2 μW,芯片面积为0.047 mm2 (0.265 μm × 0.18 μm)。得益于TCL-CB, WSC输出处的电荷失配降低到1%以下。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Charge Balanced Stimulators With a Twin Compensation Loop for Evoked Neural Potential Sensing
Neurological functional electrical stimulation (NFES) provides a well-controlled and high degree of reconfigurability amount for producing the desired stimulation effect. For evaluating the effect of stimulation, the evoked potentials can be sensed. However, in practice, the unbalanced charge accumulation leads to residual charges and toxic electrochemical reactions at the electrode-tissue sensing interface, which causes electrode corrosion and tissue damage. This letter presents a twin compensation loop (TCL) charge-balancing (CB) topology for the NFES. The TCL-CB consists of two compensation loops, including a positive compensation loop (PCL) and a negative compensation loop (NCL). The PCL and NCL continuously detect and compensate for the accumulated negative and positive charges at the output of the Wilson current mirror (WSC), respectively. The circuits are targeted at integrated circuit (IC) realization, designed and fabricated in a 0.18-μm complementary metal oxide semiconductor (CMOS) technology. The power consumption of the WSC with TCL-CB is circa 79.2 μW and occupies a die area of 0.047 mm2 (0.265 μm × 0.18 μm). Benefiting from TCL-CB, the charge mismatch at the output of WSC is reduced to less than 1%.
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来源期刊
IEEE Sensors Letters
IEEE Sensors Letters Engineering-Electrical and Electronic Engineering
CiteScore
3.50
自引率
7.10%
发文量
194
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