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在具有递增扭矩输出的缩短和延长动作过程中的皮质脊髓兴奋性。

Corticospinal excitability during shortening and lengthening actions with incremental torque output.

作者信息

Škarabot Jakob, Tallent Jamie, Goodall Stuart, Durbaba Rade, Howatson Glyn

机构信息

Faculty of Health and Life Sciences, Northumbria University, Newcastle upon Tyne, United Kingdom.

School of Sport Health and Applied Science, St Mary's University, Twickenham, United Kingdom.

出版信息

Exp Physiol. 2018 Dec;103(12):1586-1592. doi: 10.1113/EP087347. Epub 2018 Oct 16.

Abstract

NEW FINDINGS

What is the central question of this study? The relationship between motor unit recruitment and firing rate has been related to the size of the corticospinal output with variations in the nervous system gain during isometric contractions. However, corticospinal behaviour with incremental torque output might differ during anisometric contractions owing to differences in neural control of anisometric contraction types. What is the main finding and its importance? Corticospinal excitability during lengthening contractions was smaller compared with shortening but increased with incremental torque output in a similar manner between contraction types. The relationship between motor unit recruitment and firing rates is probably the main determinant of the size of an evoked response with variations in system gain.

ABSTRACT

The modulation of motor evoked potentials (MEPs), an index of corticospinal excitability, has been shown to increase during isometric contractions with incremental torque output in accordance with the contribution between motor unit recruitment and firing rate of the muscle to increases in required torque output. However, the motor unit strategy of the muscle might not be the only factor influencing this behaviour, because differences in pre- and postsynaptic control have been reported between lengthening and shortening or isometric contractions. In 30 healthy adults, MEPs were elicited in tibialis anterior during shortening and lengthening contractions at 15, 25, 50 and 80% of contraction-type-specific maximal voluntary contraction torque. Background EMG activity increased progressively with greater torque output (P < 0.001) but was similar between contraction types (P = 0.162). When normalized to the maximal muscle response, MEPs were greater during shortening compared with lengthening contractions (P = 0.004) and increased stepwise with increased contraction intensities (P = 0.001). These data show an increase in corticospinal excitability with torque output from lower to higher contraction intensities, suggesting a greater contribution of motor unit recruitment to increased nervous system gain in the tibialis anterior. Despite differences in corticospinal control of shortening and lengthening contractions, the data suggest that the corticospinal responses to increases in torque output are not dependent on contraction type, because corticospinal excitability increased to a similar extent during shortening and lengthening actions. Thus, it is likely that the relationship between motor unit recruitment and firing rate of the muscle is the main determinant of corticospinal output with variations in nervous system gain.

摘要

新发现

本研究的核心问题是什么?运动单位募集与放电频率之间的关系与等长收缩期间神经系统增益变化时皮质脊髓输出的大小有关。然而,由于不同类型的非等长收缩的神经控制存在差异,在非等长收缩期间,随着扭矩输出增加,皮质脊髓行为可能有所不同。主要发现及其重要性是什么?与缩短收缩相比,延长收缩期间的皮质脊髓兴奋性较小,但在不同收缩类型之间,随着扭矩输出增加,其以相似的方式增加。运动单位募集与放电频率之间的关系可能是随着系统增益变化诱发反应大小的主要决定因素。

摘要

运动诱发电位(MEP)是皮质脊髓兴奋性的指标,研究表明,在等长收缩期间,随着扭矩输出增加,运动诱发电位会根据运动单位募集与肌肉放电频率对所需扭矩输出增加的贡献而增加。然而,肌肉的运动单位策略可能不是影响这种行为的唯一因素,因为据报道,在延长和缩短或等长收缩之间,突触前和突触后控制存在差异。在30名健康成年人中,在比目鱼肌进行缩短和延长收缩时,分别以收缩类型特异性最大自主收缩扭矩的15%、25%、50%和80%诱发运动诱发电位。背景肌电图活动随着扭矩输出增加而逐渐增加(P<0.001),但在不同收缩类型之间相似(P=0.162)。当与最大肌肉反应进行归一化时,缩短收缩期间的运动诱发电位大于延长收缩期间(P=0.004),并且随着收缩强度增加而逐步增加(P=0.001)。这些数据表明,随着收缩强度从低到高,皮质脊髓兴奋性随着扭矩输出增加,这表明运动单位募集对增加比目鱼肌神经系统增益的贡献更大。尽管缩短和延长收缩的皮质脊髓控制存在差异,但数据表明,皮质脊髓对扭矩输出增加的反应不依赖于收缩类型,因为在缩短和延长动作期间,皮质脊髓兴奋性增加的程度相似。因此,肌肉运动单位募集与放电频率之间的关系可能是随着神经系统增益变化皮质脊髓输出的主要决定因素。

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