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带有适合大鼠椎管内的专用集成电路的柔性有源电极阵列。

Flexible active electrode arrays with ASICs that fit inside the rat's spinal canal.

作者信息

Giagka Vasiliki, Demosthenous Andreas, Donaldson Nick

机构信息

Department of Medical Physics and Biomedical Engineering, University College London, London, WC1E 6BT, UK.

Department of Microelectronics, Delft University of Technology, Delft, 2628 CD, The Netherlands.

出版信息

Biomed Microdevices. 2015 Dec;17(6):106. doi: 10.1007/s10544-015-0011-5.

Abstract

Epidural spinal cord electrical stimulation (ESCS) has been used as a means to facilitate locomotor recovery in spinal cord injured humans. Electrode arrays, instead of conventional pairs of electrodes, are necessary to investigate the effect of ESCS at different sites. These usually require a large number of implanted wires, which could lead to infections. This paper presents the design, fabrication and evaluation of a novel flexible active array for ESCS in rats. Three small (1.7 mm(2)) and thin (100 μm) application specific integrated circuits (ASICs) are embedded in the polydimethylsiloxane-based implant. This arrangement limits the number of communication tracks to three, while ensuring maximum testing versatility by providing independent access to all 12 electrodes in any configuration. Laser-patterned platinum-iridium foil forms the implant's conductive tracks and electrodes. Double rivet bonds were employed for the dice microassembly. The active electrode array can deliver current pulses (up to 1 mA, 100 pulses per second) and supports interleaved stimulation with independent control of the stimulus parameters for each pulse. The stimulation timing and pulse duration are very versatile. The array was electrically characterized through impedance spectroscopy and voltage transient recordings. A prototype was tested for long term mechanical reliability when subjected to continuous bending. The results revealed no track or bond failure. To the best of the authors' knowledge, this is the first time that flexible active electrode arrays with embedded electronics suitable for implantation inside the rat's spinal canal have been proposed, developed and tested in vitro.

摘要

硬膜外脊髓电刺激(ESCS)已被用作促进脊髓损伤患者运动功能恢复的一种手段。为了研究ESCS在不同部位的作用,需要使用电极阵列而非传统的成对电极。这些电极阵列通常需要大量植入导线,这可能会导致感染。本文介绍了一种用于大鼠ESCS的新型柔性有源阵列的设计、制造和评估。三个小型(1.7平方毫米)且薄(100微米)的专用集成电路(ASIC)被嵌入基于聚二甲基硅氧烷的植入物中。这种布局将通信线路数量限制为三条,同时通过提供对任意配置下所有12个电极的独立访问,确保了最大的测试通用性。激光图案化的铂铱箔形成了植入物的导电线路和电极。采用双铆钉键合进行芯片微组装。有源电极阵列可输送电流脉冲(高达1毫安,每秒100个脉冲),并支持交错刺激,且能独立控制每个脉冲的刺激参数。刺激定时和脉冲持续时间具有很高的通用性。通过阻抗谱和电压瞬态记录对该阵列进行了电学特性表征。对一个原型进行了连续弯曲时的长期机械可靠性测试。结果显示没有线路或键合失效。据作者所知,这是首次提出、开发并在体外测试适合植入大鼠椎管内且带有嵌入式电子器件的柔性有源电极阵列。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc6d/4605989/fe2b3c8216bb/10544_2015_11_Fig1_HTML.jpg

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