复杂平衡任务对人类比目鱼h反射和突触前抑制的影响。

K Kitano, M Tsuruike, C T Robertson, D M Kocejal
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引用次数: 0

摘要

在人类的各种任务中,脊髓对运动神经元兴奋性的调节已被广泛研究。先前的研究表明,平衡任务导致ia -运动神经元通信减少,这归因于突触前抑制(PI)水平的增加。此外,ia -运动神经元连通性的下降发生在肌肉活动升高之后。因此,假设运动学习对脊柱机制有抑制作用,尽管在运动任务中肌肉活动增加。本研究的目的是探讨复杂平衡任务对h反射的影响。对11名健康成人受试者进行复杂平衡任务前后20分钟的比目鱼h -反射测量。一种常见的h反射调节技术被应用于测量脊髓PI的变化:对异位Ia(腓总神经调节,CPN)进行电截击。受试者站在一个定制设计的平衡板上,进行一系列连续的足底和背屈。为了确保任务在受试者之间的执行相似,由频率为1hz的节拍器给出运动的听觉提示。设定非条件比目鱼h反射的初始振幅为H-max的50%,记录平衡任务前、中、后的非条件反射和条件反射(PI)。平衡任务后,非条件比目鱼h反射明显下降59%,PI增加50%。此外,在任务后的一段时间内(20分钟),非条件h反射恢复到接近基线水平,而PI条件h反射没有改变。结果表明,在平衡任务后立即出现的运动神经元兴奋性的初始抑制伴随着PI的增加,但任务后抑制h反射的恢复似乎与PI无关。
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Effects of a complex balance task on soleus H-reflex and presynaptic inhibition in humans.

Spinal modulation of motoneuron excitability has been extensively investigated during various tasks in humans. Previous studies have revealed that balance tasks induce a decrease in Ia-motoneuron communication which has been attributed to increased levels of presynaptic inhibition (PI). Moreover, this depression in Ia-motoneuron connectivity takes place subsequent to the elevation of muscle activity. Therefore, it is hypothesized that motor learning has inhibitory effects on the spinal mechanisms in spite of the increased muscle activity during a motor task. The purpose of this study was to explore the effects of a complex balance task on the H-reflex. Soleus H-reflexes were measured from 11 healthy adult subjects both before and after 20 minutes of a complex balance task. A commonly reported H-reflex conditioning technique was applied in order to measure changes in spinal PI: an electrical volley to the heteronymous Ia (common peroneal nerve conditioning, CPN). Subjects stood on a custom designed balance board and performed a continuous series of plantar and dorsiflexion. To ensure that the task was performed similarly between subjects, auditory cues for movement were given by a metronome with a frequency of 1 Hz. The initial amplitude of the unconditioned soleus H-reflex was set at 50% of H-max, and unconditioned and conditioned (PI) reflexes were recorded before, during, and after the balance task. The unconditioned soleus H-reflex was significantly decreased 59% after the balance task and PI was increased by 50%. Further, during a period of rest following the task (20 minutes) the unconditioned H-reflex returned to near baseline levels whereas the PI conditioned H-reflex was not altered The results suggest that the initial depression in motoneuron excitability immediately after the balance task is accompanied by an increase in PI, but also that the recovery of the depressed H-reflex after the task appears to be independent of PI.

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