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体力表现的限制在肌肉疲劳的握力运动中是由丘脑-岛叶活动介导的。

Limitation of physical performance in a muscle fatiguing handgrip exercise is mediated by thalamo-insular activity.

机构信息

Exercise Physiology, Institute of Human Movement Sciences, ETH Zurich, and Institute of Physiology, University of Zurich, Zurich, Switzerland.

出版信息

Hum Brain Mapp. 2011 Dec;32(12):2151-60. doi: 10.1002/hbm.21177. Epub 2010 Dec 10.

Abstract

In this study, we investigated central/supraspinal processes mediating cessation of a muscle fatiguing exercise. Fifteen male subjects performed 39 intermittent, isometric handgrip contractions (13 s on, 5-6 s off) with the dominant right hand while brain activation was assessed by means of functional magnetic resonance imaging (fMRI). An adaptive, partly stochastic protocol was designed such that in approximately 50% of the contraction trials the required force could not be held until the end of the trial (task failure trial). Trials performed in compliance with the force requirements (succeeded trial) were compared with task failure trials concerning neural activity during a small time window before task failure occurred. The data revealed significantly increased activation contralaterally in both the mid/anterior insular cortex and the thalamus during the investigated time window in the case of subsequent task failure. In accordance with other studies investigating sensations that alert the organism to urgent homeostatic imbalance such as air hunger, hunger for food, and pain, we assume that an increased thalamo-insular activation in the context of a fatigue-induced handgrip exercise could reflect increased homeostatic disturbance in the exercising muscle and may be of essential importance by mediating task failure to maintain the integrity of the organism.

摘要

在这项研究中,我们调查了介导肌肉疲劳运动停止的中枢/脊髓上过程。15 名男性受试者使用惯用右手进行 39 次间歇性等长握力收缩(13 秒 ON,5-6 秒 OFF),同时通过功能磁共振成像(fMRI)评估大脑激活。设计了一种自适应的、部分随机的方案,使得在大约 50%的收缩试验中,无法在试验结束时(任务失败试验)保持所需的力。将与力要求相符的试验(成功试验)与任务失败试验进行比较,比较了在任务失败发生前的一个小时间窗口内的神经活动。数据显示,在随后的任务失败情况下,对侧的中/前岛叶皮层和丘脑的活动明显增加。与其他研究一样,这些研究调查了那些能提醒机体注意紧急的体内平衡失调的感觉,如空气饥饿、食物饥饿和疼痛,我们假设,在疲劳引起的握力运动中,丘脑-岛叶激活的增加可能反映了运动肌肉中内稳态的干扰增加,并且通过介导任务失败来维持机体的完整性,这可能是至关重要的。

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