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Time series analysis of neural facilitation of muscle activation recorded using chronically implanted microwire arrays

机译:使用慢性植入微线阵列记录肌肉激活神经促进的时间序列分析

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The role that neurons in the motor and premotor cortical regions have in facilitating muscle activation during reaching and grasping tasks can be detected through cross-correlative techniques such as spike triggered averaging (SpTA). The use of chronically implanted electrodes can provide information regarding the dynamics of this functional role over time. Using chronically implanted microwire arrays with electrode insertion lengths of 1.5 mm, 2 mm and 2.5 mm, recording from the motor and premotor regions, this study examines the effects that the initial depth of electrode implantation has on 1) the total number of units facilitating muscle activity over time; 2) the total number of units detected over time; and 3) the total number of units correlated with task-dependant parameters over time. To determine the facilitative role that recorded units play in activation of muscles during task performance, the EMGs recorded during movement from the center holding pad to the target are cross correlated with the recorded spike activity using SpTA. The results suggest that the initial depth of implantation has a significant effect on the total number of facilitating units detected, the total number of units detected, and total number of units correlated with target direction and target orientation in the specific reach to grasp task. Results also suggest that a significant increase in the number of units is detected at initial depths greater than 1.5 mm. In most cases, initial depths of 2 mm produce a significantly greater number of total units compared to initial depths of 2.5 mm.
机译:在达到和抓握任务期间,可以通过诸如尖刺触发的平均(SPTA)的偶联技术来检测到达到和抓握任务期间促进肌肉激活的神经元在达到肌肉激活中的作用。使用长期植入的电极可以提供关于这种功能作用的动态的信息。使用慢性电极插入长度为1.5毫米,2mm和2.5mm的电极插入长度,从电动机和热球区域记录,这项研究检查了电极植入初始深度为1)促进肌肉的单位总数的效果随着时间的推移活动; 2)随着时间的推移检测到的单位总数;和3)的单元的总数随时间取决于任务的参数相关。为了确定录制单位在任务性能期间在激活肌肉中发挥的促进作用,在从中心保持垫移动到目标期间记录的EMG与使用SPTA的记录的尖峰活动交叉相关。结果表明,初始植入深度对检测到的促进单元的总数具有显着影响,检测到的单位总数,以及与目标方向和目标方向相关的单位总数,并且在特定地伸展到掌握任务。结果还表明,在大于1.5mm的初始深度下检测单位数量的显着增加。在大多数情况下,与2.5毫米的初始深度相比,2mm的初始深度产生明显更大的总单元。

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