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A Tripolar Current-Steering Stimulator ASIC for Field Shaping in Deep Brain Stimulation

机译:用于大脑深部刺激场整形的三极电流控制刺激器ASIC

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A significant problem with clinical deep brain stimulation (DBS) is the high variability of its efficacy and the frequency of side effects, related to the spreading of current beyond the anatomical target area. This is the result of the lack of control that current DBS systems offer on the shaping of the electric potential distribution around the electrode. This paper presents a stimulator ASIC with a tripolar current-steering output stage, aiming at achieving more selectivity and field shaping than current DBS systems. The ASIC was fabricated in a 0.35-$mu$ m CMOS technology occupying a core area of 0.71 mm $^{2}$. It consists of three current sourcing/sinking channels. It is capable of generating square and exponential-decay biphasic current pulses with five different time constants up to 28 ms and delivering up to 1.85 mA of cathodic current, in steps of 4 $mu$A, from a 12 V power supply. Field shaping was validated by mapping the potential distribution when injecting current pulses through a multicontact DBS electrode in saline.
机译:临床深部脑刺激(DBS)的一个重要问题是其功效和副作用发生频率的高变异性,与电流在解剖学目标区域之外的扩散有关。这是由于目前的DBS系统缺乏对电极周围电势分布的整形控制的结果。本文提出了一种具有三极电流控制输出级的激励器ASIC,旨在实现比当前DBS系统更高的选择性和场整形。 ASIC是用0.35-μm的CMOS技术制造的,其核心面积为0.71mm。它包括三个当前的采购/接收渠道。它能够生成具有五个不同时间常数的平方和指数衰减双相电流脉冲,最长可达28 ms,并能从12 V电源以4μA的步长提供高达1.85 mA的阴极电流。通过在盐水中通过多触点DBS电极注入电流脉冲时,通过绘制电位分布来验证场整形。

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