首页> 外文期刊>Frontiers in Human Neuroscience >Reassessment of Non-Monosynaptic Excitation from the Motor Cortex to Motoneurons in Single Motor Units of the Human Biceps Brachii
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Reassessment of Non-Monosynaptic Excitation from the Motor Cortex to Motoneurons in Single Motor Units of the Human Biceps Brachii

机译:重新评估人肱二头肌单个运动单元中从运动皮层到动子质子的非单突触兴奋。

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Corticospinal excitation is mediated by polysynaptic pathways in several vertebrates, including dexterous monkeys. However, indirect non-monosynaptic excitation has not been clearly observed following transcranial electrical stimulation (TES) or cervicomedullary stimulation (CMS) in humans. The present study evaluated indirect motor pathways in normal human subjects by recording the activities of single motor units (MUs) in the biceps brachii (BB) muscle. The pyramidal tract was stimulated with weak TES, CMS, and transcranial magnetic stimulation (TMS) contralateral to the recording side. During tasks involving weak co-contraction of the BB and hand muscles, all stimulation methods activated MUs with short latencies. Peristimulus time histograms (PSTHs) showed that responses with similar durations were induced by TES (1.9 ± 1.4 ms) and CMS (2.0 ± 1.4 ms), and these responses often showed multiple peaks with the PSTH peak having a long duration (65.3% and 44.9%, respectively). Such long-duration excitatory responses with multiple peaks were rarely observed in the finger muscles following TES or in the BB following stimulation of the Ia fibers. The responses obtained with TES were compared in the same 14 BB MUs during the co-contraction and isolated BB contraction tasks. Eleven and three units, respectively, exhibited activation with multiple peaks during the two tasks. In order to determine the dispersion effects on the axon conduction velocities (CVs) and synaptic noise, a simulation study that was comparable to the TES experiments was performed with a biologically plausible neuromuscular model. When the model included the monosynaptic-pyramidal tract, multiple peaks were obtained in about 34.5% of the motoneurons (MNs). The experimental and simulation results indicated the existence of task-dependent disparate inputs from the pyramidal tract to the MNs of the upper limb. These results suggested that intercalated interneurons are present in the spinal cord and that these interneurons might be equivalent to those identified in animal experiments.
机译:皮质脊髓兴奋是由包括脊椎动物在内的若干脊椎动物的多突触途径介导的。但是,在人类经颅电刺激(TES)或子宫颈髓质刺激(CMS)后,还没有清楚地观察到间接的非单突触刺激。本研究通过记录肱二头肌(BB)肌肉中单个运动单位(MU)的活动,评估了正常人类受试者的间接运动途径。用较弱的TES,CMS和与记录侧对侧的经颅磁刺激(TMS)刺激锥体束。在涉及BB和手部肌肉微弱收缩的任务中,所有刺激方法都会以短时延激活MU。蠕动时间直方图(PSTH)表明,持续时间相似的响应是由TES(1.9±1.4 ms)和CMS(2.0±1.4 ms)引起的,这些响应通常显示多个峰值,而PSTH峰值具有较长的持续时间(65.3%和分别为44.9%)。在TES后的手指肌肉中或在刺激Ia纤维后的BB中,很少观察到这种具有多个峰的持续时间的兴奋性反应。在共收缩和孤立的BB收缩任务期间,在相同的14个BB MU中比较了用TES获得的反应。在两个任务期间,分别有11个和3个单元显示出具有多个峰值的激活。为了确定弥散对轴突传导速度(CVs)和突触噪声的影响,使用生物学上合理的神经肌肉模型进行了与TES实验相当的模拟研究。当模型包括单突触-锥体束时,在约34.5%的运动神经元(MNs)中获得多个峰。实验和模拟结果表明存在从锥体束到上肢MN的任务相关的不同输入。这些结果表明在脊髓中存在插入的中间神经元,并且这些中间神经元可能等同于动物实验中鉴定的那些。

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