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Synaptic and functional linkages between spinal premotor interneurons and hand-muscle activity during precision grip

机译:精确抓握过程中脊髓运动前神经元和手部肌肉活动之间的突触和功能联系

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摘要

Grasping is a highly complex movement that requires the coordination of a number of hand joints and muscles. Previous studies showed that spinal premotor interneurons (PreM-INs) in the primate cervical spinal cord have divergent synaptic effects on hand motoneurons and that they might contribute to hand-muscle synergies. However, the extent to which these PreM-IN synaptic connections functionally contribute to modulating hand-muscle activity is not clear. In this paper, we explored the contribution of spinal PreM-INs to hand-muscle activation by quantifying the synaptic linkage (SL) and functional linkage (FL) of the PreM-INs with hand-muscle activities. The activity of 23 PreM-INs was recorded from the cervical spinal cord (C6–T1), with EMG signals measured simultaneously from hand and arm muscles in two macaque monkeys performing a precision grip task. Spike-triggered averages (STAs) of rectified EMGs were compiled for 456 neuron–muscle pairs; 63 pairs showed significant post-spike effects (PSEs; i.e., SL). Conversely, 231 of 456 pairs showed significant cross-correlations between the IN firing rate and rectified EMG (i.e., FL). Importantly, a greater proportion of the neuron–muscle pairs with SL showed FL (43/63 pairs, 68%) compared with the pairs without SL (203/393, 52%), and the presence of SL was significantly associated with that of FL. However, a significant number of pairs had SL without FL (SL∩!FL, n = 20) or FL without SL (!SL∩FL, n = 203), and the proportions of these incongruities exceeded the number expected by chance. These results suggested that spinal PreM-INs function to significantly modulate hand-muscle activity during precision grip, but the contribution of other neural structures is also needed to recruit an adequate combination of hand-muscle motoneurons.
机译:抓握是一种非常复杂的运动,需要协调许多手部关节和肌肉。先前的研究表明,灵长类颈椎脊髓中的脊髓运动前神经元(PreM-INs)对手运动神经元具有不同的突触作用,并且它们可能有助于手肌协同作用。但是,尚不清楚这些PreM-IN突触连接在功能上对调节手部肌肉活动做出贡献的程度。在本文中,我们通过定量具有手肌活动的PreM-IN的突触键(SL)和功能键(FL),探索了脊髓PreM-IN对手肌激活的贡献。从颈脊髓(C6-T1)记录了23种PreM-IN的活性,同时从两只猕猴的手和手臂肌肉同时测量了EMG信号,以执行精确的抓握任务。校正后的EMG的尖峰触发平均值(STA)被汇总为456个神经元-肌肉对。 63对鞋钉显示出明显的峰值后效应(PSE;即SL)。相反,在456对中,有231对显示出IN点火速率与整流后的EMG(即FL)之间的显着互相关。重要的是,与没有SL的神经元-肌肉对(203 / 393,52%)相比,具有SL的神经元-肌肉对的比例更大(43/63对,占68%),并且SL的存在与SL的存在显着相关。佛罗里达州但是,相当多的对具有不带FL的SL(SL∩!FL,n = 20)或不带SL的FL(!SL∩FL,n = 203),并且这些不一致的比例超过了偶然预期的数量。这些结果表明,脊髓PreM-INs在精确抓握过程中可显着调节手肌活动,但还需要其他神经结构的贡献来招募手肌运动神经元的适当组合。

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