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In-vivo operation of the Boston 15-channel wireless subretinal visual prosthesis

机译:波士顿15通道无线尺度视觉假体的体内操作

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This presentation concerns the engineering development of the Boston visual prosthesis for restoring useful vision to patients blind with degenerative retinal disease. A miniaturized, hermetically-encased, 15-channel wirelessly-operated retinal prosthetic was developed for implantation and pre-clinical studies in Yucatan mini-pig animal models. The prosthesis conforms to the eye and drives a microfabricated polyimide stimulating electrode array having sputtered iridium oxide electrodes. This array is implanted into the subretinal space using a specially-designed ab externo surgical technique; the bulk of the prosthesis is on the surface of the sclera. The implanted device includes a hermetic titanium case containing a 15-channel stimulator chip; secondary power/data receiving coils surround the cornea. Long-term in vitro pulse testing was also performed on the electrodes to ensure their stability over years of operation. Assemblies were first tested in vitro to verify wireless operation of the system in biological saline using a custom RF transmitter circuit and primary coils. Stimulation pulse strength, duration and frequency were programmed wirelessly using a computer with a custom graphical user interface. Operation of the retinal implant was verified in vivo in 3 minipigs for more than three months by measuring stimulus artifacts on the eye surface using contact lens electrodes.
机译:本演示文献涉及波士顿视觉假体的工程发展,用于恢复对具有退行性视网膜疾病的患者的有用视觉。开发了一种小型化的,密封的15渠道无线操作的视网膜假体,用于尤卡坦迷你猪动物模型的植入和临床前研究。假体符合眼睛,并驱动具有溅射的氧化铱电极的微制造聚酰亚胺刺激电极阵列。使用专门设计的AB外科技术将该阵列植入到子靶空间中;假体的大部分是巩膜的表面。植入装置包括含有15通道刺激器芯片的气密钛盒;辅助功率/数据接收线圈环绕角膜。在电极上还进行了长期体外脉冲测试,以确保它们多年的操作稳定性。首先在体外测试组件,以验证使用自定义RF发射器电路和初级线圈在生物盐水中的系统的无线操作。使用具有自定义图形用户界面的计算机无线编程刺激脉冲强度,持续时间和频率。通过使用隐形眼镜电极测量眼睛表面上的刺激伪像,在3微米中验证了视网膜植入物的操作。

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