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Three-dimensional Map of Lumbar Spinal Cord Motor Function for Intraspinal Microstimulation in Rats

机译:腰脊髓运动功能对大鼠脊髓内微刺激的三维图

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Intraspinal microstimulation is an effective method to rebuild motor function after spinal cord injury. However, in the implementation, available map of stimulation sites is lacking for reference. The location of electrode implantation can only be determined through multiple stimulation, causing secondary damage to the spinal cord. Therefore, in this paper, SD rats were chosen as the research subject, and the intraspinal microstimulation was used to perform three-dimensional scanning electrical stimulation on the lumbar spinal cord that controls the hindlimb motion. The site coordinates and corresponding threshold current that can induce motion of hip, knee and ankle joints were recorded. In order to reduce the individual variances and improve the universality and applicability of the map, the results of 6 groups were normalized, and three-dimensional map of spinal motor function were drawn in the same coordinate system. The overlap of the distribution area of the same motion in each group was defined as the core region. The threshold current of all sites were analyzed statistically to obtain the most appropriate range of current intensity required to induce hindlimb motion. Using appropriate current for intraspinal microstimulation in the core region can selectively induce desired hindlimb motion, greatly improving the accuracy and reliability of electrode implantation.
机译:脊髓内微刺激是脊髓损伤后重建运动功能的有效方法。然而,在实施中,缺乏可用的刺激部位图作为参考。只能通过多次刺激才能确定电极植入的位置,从而对脊髓造成继发性损伤。因此,本文选择SD大鼠作为研究对象,并通过椎管内微刺激对控制后肢运动的腰脊髓进行三维扫描电刺激。记录可诱发髋,膝和踝关节运动的部位坐标和相应的阈值电流。为了减少个体差异,提高图谱的通用性和适用性,对6组的结果进行了归一化,并在同一坐标系中绘制了脊柱运动功能的三维图。每组中相同运动的分布区域的重叠被定义为核心区域。对所有部位的阈值电流进行统计分析,以获得诱导后肢运动所需的最合适电流强度范围。在核心区域使用适当的电流进行脊柱内微刺激可以选择性地引起所需的后肢运动,从而大大提高了电极植入的准确性和可靠性。

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