首页> 美国卫生研究院文献>Frontiers in Systems Neuroscience >Comparative Performance of Linear Multielectrode Probes and Single-Tip Electrodes for Intracortical Microstimulation and Single-Neuron Recording in Macaque Monkey
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Comparative Performance of Linear Multielectrode Probes and Single-Tip Electrodes for Intracortical Microstimulation and Single-Neuron Recording in Macaque Monkey

机译:猕猴皮层内微刺激和单神经元记录的线性多电极探针和单尖电极的比较性能。

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摘要

Intracortical microstimulation (ICMS) is one of the most widely employed techniques for providing causal evidence of the relationship between neuronal activity and specific motor, perceptual, or even cognitive functions. In recent years, several new types of linear multielectrode silicon probes have been developed, allowing researchers to sample neuronal activity at different depths along the same cortical site simultaneously and with high spatial precision. Nevertheless, silicon multielectrode probes have been rarely employed for ICMS studies and, more importantly, it is unknown whether and to what extent they can be used for combined recording and stimulation experiments. Here, we addressed these issues during both acute and chronic conditions. First, we compared the behavioral outcomes of ICMS delivered to the hand region of a monkey's motor cortex with multielectrode silicon probes, commercially available multisite stainless-steel probes and single-tip glass-coated tungsten microelectrodes. The results for all three of the probes were reliable and similar. Furthermore, we tested the impact of long-train ICMS delivered through chronically implanted silicon probes at different time intervals, from 1 to 198 days after ICMS sessions, showing that although the number of recorded neurons decreased over time, in line with previous studies, ICMS did not alter silicon probes' recording capabilities. These findings indicate that in ICMS experiments, the performance of linear multielectrode silicon probes is comparable to that of both single-tip and multielectrode stainless-steel probes, suggesting that the silicon probes can be successfully used for combined recording and stimulation studies in chronic conditions.
机译:皮层内微刺激(ICMS)是提供神经元活动与特定运动,知觉甚至认知功能之间关系的因果证据的最广泛使用的技术之一。近年来,已经开发了几种新型的线性多电极硅探针,这使研究人员可以沿同一皮质部位同时以高空间精度对不同深度的神经元活动进行采样。然而,硅多电极探针很少用于ICMS研究,更重要的是,未知它们是否以及在何种程度上可以用于组合记录和刺激实验。在这里,我们解决了急性和慢性条件下的这些问题。首先,我们比较了用多电极硅探针,市售的多站点不锈钢探针和单尖端玻璃涂层钨微电极将ICMS的行为结果传递到猴子运动皮层的手部区域的情况。所有三种探针的结果均可靠且相似。此外,我们测试了在ICMS疗程后1到198天不同时间间隔通过长期植入的硅探针递送的长期训练ICMS的影响,表明尽管记录的神经元数量随时间减少,但与以前的研究一致,ICMS并没有改变硅探针的记录能力。这些发现表明,在ICMS实验中,线性多电极硅探针的性能可与单尖端和多电极不锈钢探针相媲美,这表明硅探针可成功用于慢性条件下的组合记录和刺激研究。

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