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特发性震颤患者的运动神经元池的自主和震颤性输入,涉及到拮抗肌的协同/拮抗作用。

Voluntary and tremorogenic inputs to motor neuron pools of agonist/antagonist muscles in essential tremor patients.

机构信息

Department of Bioengineering, Imperial College London, London, United Kingdom.

Division of Signal Processing and Biomedical Engineering, Department of Electrical Engineering, Chalmers University of Technology, Gothenburg, Sweden.

出版信息

J Neurophysiol. 2019 Nov 1;122(5):2043-2053. doi: 10.1152/jn.00407.2019. Epub 2019 Sep 11.

Abstract

Pathological tremor is an oscillation of body parts at 3-10 Hz, determined by the output of spinal motor neurons (MNs), which receive synaptic inputs from supraspinal centers and muscle afferents. The behavior of spinal MNs during tremor is not well understood, especially in relation to the activation of the multiple muscles involved. Recent studies on patients with essential tremor have shown that antagonist MN pools receive shared input at the tremor frequency. In this study, we investigated the synaptic inputs related to tremor and voluntary movement, and their coordination across antagonist muscles. We analyzed the spike trains of motor units (MUs) identified from high-density surface electromyography from the forearm extensor and flexor muscles in 15 patients with essential tremor during postural tremor. The shared synaptic input was quantified by coherence and phase difference analysis of the spike trains. All pairs of spike trains in each muscle showed coherence peaks at the voluntary drive frequency (1-3 Hz, 0.2 ± 0.2, mean ± SD) and tremor frequency (3-10 Hz, 0.6 ± 0.3) and were synchronized with small phase differences (3.3 ± 25.2° and 3.9 ± 22.0° for the voluntary drive and tremor frequencies, respectively). The coherence between MN spike trains of antagonist muscle groups at the tremor frequency was significantly smaller than intramuscular coherence. We predominantly observed in-phase activation of MUs between agonist/antagonist muscles at the voluntary frequency band (0.6 ± 48.8°) and out-of-phase activation at the tremor frequency band (126.9 ± 75.6°). Thus MNs innervating agonist/antagonist muscles concurrently receive synaptic inputs with different phase shifts in the voluntary and tremor frequency bands. Although the mechanical characteristics of tremor have been widely studied, the activation of the affected muscles is still poorly understood. We analyzed the behavior of motor units of pairs of antagonistic wrist muscle groups in patients with essential tremor and studied their activity at voluntary movement- and tremor-related frequencies. We found that the phase relation between inputs to antagonistic muscles is different at the voluntary and tremor frequency bands.

摘要

病理性震颤是身体部位以 3-10 Hz 进行的摆动,由脊髓运动神经元(MN)的输出决定,MN 接收来自皮质下中枢和肌肉传入的突触输入。在震颤过程中,脊髓 MN 的行为尚不清楚,特别是在涉及多个参与肌肉的激活方面。最近对特发性震颤患者的研究表明,拮抗 MN 池在震颤频率下接收共享输入。在这项研究中,我们研究了与震颤和自主运动相关的突触输入,以及它们在拮抗肌之间的协调。我们分析了 15 名特发性震颤患者前臂伸肌和屈肌高密度表面肌电图识别的运动单位(MU)的尖峰序列,在姿势震颤期间进行。通过尖峰序列的相干性和相位差分析来量化共享突触输入。每个肌肉中的所有成对尖峰序列在自主驱动频率(1-3 Hz,0.2±0.2,平均值±标准差)和震颤频率(3-10 Hz,0.6±0.3)处显示相干峰,并具有较小的相位差(分别为 3.3±25.2°和 3.9±22.0°)进行同步。在震颤频率下,拮抗肌群组的 MN 尖峰序列之间的相干性明显小于肌内相干性。我们主要在自主频率带(0.6±48.8°)观察到兴奋/拮抗肌之间 MU 的同相激活,而在震颤频率带(126.9±75.6°)观察到异相激活。因此,支配兴奋/拮抗肌的 MN 同时接收在自主和震颤频率带中具有不同相移的突触输入。尽管震颤的机械特性已被广泛研究,但受影响肌肉的激活仍知之甚少。我们分析了特发性震颤患者对手腕拮抗肌群对的运动单位的行为,并研究了它们在自主运动和震颤相关频率下的活动。我们发现,在自主和震颤频率带中,拮抗肌肉的输入之间的相位关系不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2793/6998026/b90f8df8fb7b/z9k0101952460001.jpg

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