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首页> 外文期刊>Human physiology >Influence of Vibration on the Excitability of Spinal α-Motoneurons under Static Conditions and during Evoked Stepping in Humans
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Influence of Vibration on the Excitability of Spinal α-Motoneurons under Static Conditions and during Evoked Stepping in Humans

机译:振动对人体静态和诱发踏步过程中脊髓α-单质子神经兴奋性的影响

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摘要

The excitability of spinal a-motoneurons in healthy humans was investigated with vibrostimula-tion (20-60 Hz) applied to different groups of muscles both under stationary conditions and during vibration-evoked stepping movements with leg suspension. In 15 subjects, the H-reflex amplitude was compared under the conditions of vibration of the left leg quadriceps femoris (QFM) or biceps femoris (BFM) muscle, as well as under the conditions of vibration of the contralateral, motionless leg QFM muscle in three spatial positions of the body: upright, supine, and lying on the side with the left leg suspended. Under dynamic conditions, the H-reflex value was compared during evoked and voluntary steppings at eight intervals of the step cycle. In all body positions, the vibration of each ipsilateral leg muscle caused a significant H-reflex suppression, this suppression being more prominent under the air-stepping conditions. The vibration of the contralateral leg QFM had weak influence on the H-reflex amplitude. In seven subjects, the vibration of the ipsilateral and contralateral leg muscles generated stepping movements. During vibration-evoked air-stepping, the H-reflex had different amplitudes in different phases of the step cycle. At the same time, the differences between responses under voluntary and involuntary stepping conditions were revealed only in the step cycle phase corresponding to the stance phase. Thus, the different degrees of the H-reflex suppression by vibration in different spatial positions of the body seem to depend on the summary afferent inflows to the spinal cord interneurons involved in the regulation of locomotion and posture. Apparently, an increase in the spinal cord neuronal excitability, which is necessary for activating locomotor automatism under the leg unloading conditions, occurs during evoked air-stepping in the swing phase.
机译:通过在稳定条件下以及在腿悬吊引起的振动诱发的步进运动中将振动刺激(20-60 Hz)应用于不同组的肌肉,研究了健康人的脊髓α-运动神经元的兴奋性。在15位受试者中,比较了在左腿股四头肌(QFM)或股二头肌(BFM)的振动条件下以及对侧静止的QFM肌肉振动条件下的H反射幅度。身体的三个空间位置:直立,仰卧和侧卧,左腿悬吊。在动态条件下,以步进周期的八个间隔比较诱发和自愿步进期间的H反射值。在所有身体位置,每条同侧腿部肌肉的振动都会导致明显的H反射抑制,这种抑制在空气踩踏条件下更为明显。对侧腿QFM的振动对H反射幅度的影响很小。在七名受试者中,同侧和对侧腿部肌肉的振动产生了步进运动。在振动诱发的空气步进过程中,H反射在步进循环的不同阶段具有不同的振幅。同时,在自愿和非自愿踏步条件下的响应之间的差异仅在对应于姿态阶段的踏步周期阶段才显示出来。因此,在身体的不同空间位置通过振动抑制H反射的程度不同,似乎取决于涉及运动和姿势调节的脊髓中神经的传入总流入量。显然,在摆动阶段诱发的空气踩踏过程中,脊髓神经元兴奋性的增加是激活腿部卸载条件下运动自动性所必需的。

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  • 来源
    《Human physiology》 |2012年第2期|p.168-175|共8页
  • 作者

    I. A. Solopova; V. A. Selionov;

  • 作者单位

    Kharkevich Institute for Information Transmission Problems, Russian Academy of Sciences, Moscow, 127994 Russia;

    Kharkevich Institute for Information Transmission Problems, Russian Academy of Sciences, Moscow, 127994 Russia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    vibration; H-reflex; motoneuronal excitability; air-stepping;

    机译:振动;水平反射单神经元兴奋性;空中踏步;

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