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Design Choices for Next-Generation Neurotechnology Can Impact Motion Artifact in Electrophysiological and Fast-Scan Cyclic Voltammetry Measurements

机译:下一代神经技术的设计选择会影响电生理和快速扫描循环伏安法测量中的运动伪像

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摘要

Implantable devices to measure neurochemical or electrical activity from the brain are mainstays of neuroscience research and have become increasingly utilized as enabling components of clinical therapies. In order to increase the number of recording channels on these devices while minimizing the immune response, flexible electrodes under 10 µm in diameter have been proposed as ideal next-generation neural interfaces. However, the representation of motion artifact during neurochemical or electrophysiological recordings using ultra-small, flexible electrodes remains unexplored. In this short communication, we characterize motion artifact generated by the movement of 7 µm diameter carbon fiber electrodes during electrophysiological recordings and fast-scan cyclic voltammetry (FSCV) measurements of electroactive neurochemicals. Through in vitro and in vivo experiments, we demonstrate that artifact induced by motion can be problematic to distinguish from the characteristic signals associated with recorded action potentials or neurochemical measurements. These results underscore that new electrode materials and recording paradigms can alter the representation of common sources of artifact in vivo and therefore must be carefully characterized.
机译:用于测量大脑神经化学或电活动的可植入设备是神经科学研究的主要内容,并且已越来越多地用作临床治疗的支持性组件。为了增加这些设备上的记录通道数量,同时最大程度地降低免疫应答,已提出了直径小于10 µm的柔性电极作为理想的下一代神经接口。但是,在神经化学或电生理记录过程中使用超小型柔性电极进行运动伪影的表示仍未探索。在这段简短的交流中,我们将对直径7 µm的碳纤维电极在电生理记录和电活性神经化学物质的快速扫描循环伏安法(FSCV)测量期间的运动产生的运动伪影进行表征。通过体外和体内实验,我们证明了运动引起的伪像可能难以区分与已记录的动作电位或神经化学测量结果相关的特征信号。这些结果强调,新的电极材料和记录范例可以改变体内伪影的常见来源,因此必须仔细表征。

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