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Effect of Implant Duration, Anatomical Location and Electrode Orientation on Bandwidth Recorded with a Chronically Implanted Endovascular Stent-Electrode Array

机译:植入持续时间,解剖学位置和电极取向对慢性血管内支架电极阵列记录的带宽的影响

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Access to the brain to implant recording electrodes has conventionally required a craniotomy. To mitigate risks of open brain surgery, we previously developed a stent-electrode array that can be delivered to the cortex via cerebral vessels. Following implantation of a stent-electrode array (Stentrode) in a large animal model, we investigated the longevity of high-quality signals, by measuring bandwidth in animals implanted for up to six months; no signal degradation was observed. We also investigated whether bandwidth was influenced by implant location with respect to the superior sagittal sinus and branching cortical veins; it was not. Finally, we assessed whether electrode orientation had an impact on recording quality. There was no significant difference in bandwidths from electrodes facing different orientations. Interestingly, electrodes facing the skull (180°) were still able to record neural information with high fidelity. Consequently, a minimally invasive surgical approach combined with a stent-electrode array is a safe and efficacious technique to acquire neural signals over a chronic duration.
机译:进入大脑植入记录电极通常需要开颅术。为了减轻开放脑手术的风险,我们以前开发了一种支架电极阵列,可以通过大脑血管递送到皮质。在大型动物模型中植入支架电极阵列(Stentrode)之后,我们研究了高质量信号的寿命,通过植入长达六个月的动物的带宽;没有观察到信号劣化。我们还调查了带宽是否受植入物位置的影响,以及卓越的矢状窦和分支皮质静脉;不是。最后,我们评估了电极取向是否对记录质量产生影响。来自面向不同取向的电极的带宽没有显着差异。有趣的是,面向骷髅(180°)的电极仍然能够以高保真度记录神经信息。因此,与支架电极阵列结合的微创手术方法是在慢性持续时间内获得神经信号的安全和有效的技术。

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