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A PROGRAMMABLE DISCHARGE CIRCUITRY WITH CURRENT LIMITING CAPABILITY FOR A RETINAL PROSTHESIS

机译:一种可编程放电电路,具有电流限制性的视网膜假体的限制能力

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摘要

Biphasic stimulation is the most commonly used electrical pattern in FES (Functional Electrical Stimulation). In such cases, a charge balanced waveform is essential to prevent any charge accumulation in the biological tissue. In a retinal prosthesis, a charge cancellation circuitry is used to discharge the stimulation sites on the retina periodically to ensure tissue safety. But discharging a node that has high voltage (due to charge accumulation) will induce large currents that might lead to unintended stimulation of the retina. This paper presents a new discharge circuitry which can act as a simple resistive discharge path for smaller voltages and a current limiter for higher voltages. In stimulation circuits which use a dual voltage scheme (positive and negative), the circuit limits the current at both polarities. The discharge profile is programmable digitally. In addition, a method to characterize inter-pixel leakage in a retinal prosthesis using this circuit is proposed.
机译:双相刺激是FES中最常用的电气图案(功能电刺激)。在这种情况下,电荷平衡波形对于防止生物组织中的任何电荷积累是必不可少的。在视网膜假体中,使用电荷消除电路定期将视网膜上的刺激位点放电以确保组织安全性。但是放电具有高电压(由于电荷累积)的节点将引起大电流,这可能导致视网膜的意外刺激。本文提出了一种新的放电电路,其可以用作用于更小电压的简单电阻放电路径和用于更高电压的电流限制器。在使用双电压方案(正负)的刺激电路中,电路限制了两个极性的电流。放电配置文件是编程的数字化。另外,提出了一种使用该电路在视网膜假体中表征像素间泄漏的方法。

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