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Tissue response to a chronically implantable wireless intracortical visual prosthesis (Gennaris array)

机译:组织对长期植入无线性无线性视觉假体(Gennaris阵列)的反应

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摘要

Objective. Cortical vision prostheses aim to restore visual percepts to those who have lost sight by delivering electrical stimulation to the visual cortex. These devices need to be implanted intracranially using subdural or intracortical microelectrodes, and should preferably dispense with the need of transcranial wiring. The risks of cortical tissue injury from mechanical trauma, material biocompatibility, heat generation, electrical stimulation and long-term immune responses need to be evaluated. In this paper, we investigate the biological response to a wireless cortical vision prosthesis (Gennaris array), by characterizing the histological changes that occur following chronic electrical stimulation. Approach. Ten arrays (7 active, 3 passive) were implanted in three sheep using a pneumatic insertor. Each device consisted of a wireless receiver and Application Specific Integrated Circuit encased in a ceramic box, and could deliver electrical stimulation through one of 43 electrodes. Main results. Stimulation was delivered through seven of these devices for up to 3 months and each device was treated as independent for further analysis. Cumulatively, over 2700 h of stimulation were achieved without any observable adverse health effects. Histology showed that the devices and implantation procedure were well tolerated by the brain with a similar tissue response to the more common Utah arrays. However, voltage transients across the stimulating electrodes were not measured so exact charge injection could not be verified. Significance. This work represents one of the first long-term tests of a fully implantable cortical vision prosthesis. The results indicate that long-term stimulation through wireless arrays can be achieved without induction of widespread tissue damage.
机译:客观的。皮质视觉的假肢旨在通过对视觉皮层提供电气刺激来恢复对瞄准器的人来恢复视觉感知。这些装置需要使用骨折或鞘内微电极来植入颅内或颅内,并且优选地应占据经颅布线的需要。需要评估机械创伤,材料生物相容性,发热,电刺激和长期免疫应答的皮质组织损伤的风险。在本文中,我们通过表征慢性电刺激后发生的组织学变化来研究对无线皮质视觉假体(Gennaris阵列)的生物反应。方法。使用气动插入夹在三只绵羊中植入十个阵列(7个活性3个被动)。每个设备包括在陶瓷盒中包装的无线接收器和专用集成电路,并且可以通过43个电极中的一个提供电刺激。主要结果。刺激通过这些装置中的七个递送长达3个月,每种装置都被视为独立的进一步分析。累积地,在没有任何可观察的不良健康影响的情况下实现了超过2700小时的刺激。组织学表明,通过对更常见的犹他州阵列具有类似的组织响应,脑具有良好的脑耐受装置和植入程序。然而,未测量刺激电极的电压瞬变,因此无法验证精确的电荷注入。意义。这项工作代表了完全可植入的皮质视觉假体的第一个长期测试之一。结果表明,在不诱导广泛的组织损伤的情况下,可以实现通过无线阵列的长期刺激。

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  • 来源
    《Journal of neural engineering》 |2020年第4期|046001.1-046001.14|共14页
  • 作者单位

    Monash Vision Group Monash University Clayton Vic 3800 Australia Monash Institute of Medical Engineering Monash University Clayton Vic 3800 Australia Department of Electrical and Computer Systems Engineering Monash University Clayton Vic 3800 Australia Department of Surgery Monash University Clayton Vic 3800 Australia;

    Monash Vision Group Monash University Clayton Vic 3800 Australia Department of Electrical and Computer Systems Engineering Monash University Clayton Vic 3800 Australia Department of Physiology and Biomedicine Discovery Institute Monash University Clayton Vic 3800 Australia Australian Research Council Centre of Excellence for Integrative Brain Function Monash University Node Clayton VIC 3800 Australia;

    Monash Vision Group Monash University Clayton Vic 3800 Australia Department of Physiology and Biomedicine Discovery Institute Monash University Clayton Vic 3800 Australia;

    Monash Vision Group Monash University Clayton Vic 3800 Australia Department of Electrical and Computer Systems Engineering Monash University Clayton Vic 3800 Australia;

    Monash Vision Group Monash University Clayton Vic 3800 Australia Department of Electrical and Computer Systems Engineering Monash University Clayton Vic 3800 Australia Australian Research Council Centre of Excellence for Integrative Brain Function Monash University Node Clayton VIC 3800 Australia;

    Austin Hospital Pathology Heidelberg Vic 3084 Australia;

    Monash Vision Group Monash University Clayton Vic 3800 Australia Department of Physiology and Biomedicine Discovery Institute Monash University Clayton Vic 3800 Australia Australian Research Council Centre of Excellence for Integrative Brain Function Monash University Node Clayton VIC 3800 Australia;

    Monash Vision Group Monash University Clayton Vic 3800 Australia Department of Electrical and Computer Systems Engineering Monash University Clayton Vic 3800 Australia Australian Research Council Centre of Excellence for Integrative Brain Function Monash University Node Clayton VIC 3800 Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    vision prosthesis; cortical vision prosthesis; chronic electrical stimulation; brain machine interfaces; tissue response;

    机译:视力假肢;皮质视觉假肢;慢性电气刺激;脑机接口;组织反应;

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