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The vestibular system does not modulate fusimotor drive to muscle spindles in contracting leg muscles of seated subjects

机译:前庭系统不会调节就座患者收缩腿部肌肉时对纺锤体的融合运动驱动

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We previously showed that sinusoidal galvanic vestibular stimulation (GVS) does not modulate the firing of spontaneously active muscle spindles in relaxed human leg muscles. However, given that there is little, if any, fusimotor drive to relaxed human muscles, we tested the hypothesis that vestibular modulation of muscle spindles becomes apparent during volitional contractions at levels that engage the fusimotor system. Unitary recordings were made from 28 muscle spindle afferents via tungsten microelectrodes inserted percutaneously into the common peroneal nerve of seated awake human subjects. Twenty-one of the spindle afferents were spontaneously active at rest and each increased its firing rate during a weak static contraction; seven were silent at rest and were recruited during the contraction. Sinusoidal bipolar binaural galvanic vestibular stimulation (±2 mA, 100 cycles) was applied to the mastoid processes at 0.8 Hz. This continuous stimulation produced a sustained illusion of "rocking in a boat" or "swinging in a hammock" but no entrainment of EMG. Despite these robust vestibular illusions, none of the fusimotor-driven muscle spindles exhibited phase-locked modulation of firing during sinusoidal GVS. We conclude that this dynamic vestibular input was not sufficient to modulate the firing of fusimotor neurones recruited during a voluntary steady-state contraction, arguing against a significant role of the vestibular system in adjusting the sensitivity of muscle spindles via fusimotor neurones.
机译:我们以前的研究表明,正弦电流前庭刺激(GVS)不会调节人的松弛腿部肌肉中自发活动的神经纺锤的放电。但是,考虑到很少有(如果有的话)融合运动驱动人的肌肉放松,我们测试了这样一种假说,即在进行融合运动系统的水平的自愿性收缩期间,肌肉纺锤的前庭调节变得明显。通过经由钨微电极经皮插入到坐着的清醒的人类受试者的腓总神经中的28个肌肉纺锤传入来进行单一记录。 21个纺锤状传入神经在休息时自发活动,并且在弱静态收缩过程中均提高了放电速度。七个在休息时保持沉默,并在收缩期间被招募。将正弦双极双耳双电前庭刺激(±2 mA,100个周期)以0.8 Hz的频率应用于乳突。这种持续的刺激产生了“在船上摇摆”或“在吊床上摇摆”的持续幻觉,但没有夹带EMG。尽管有这些强大的前庭幻觉,但在正弦曲线GVS期间,没有一个由融合运动驱动的肌肉纺锤体表现出对发射的锁相调制。我们得出的结论是,这种动态前庭输入不足以调节在自愿稳态收缩过程中募集的融合运动神经元的放电,这与前庭系统在通过融合运动神经元调节肌肉纺锤体敏感性方面的重要作用相抵触。

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