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人小指展肌的等长收缩。

Isometric contraction of the abductor digiti minimi muscle in man.

作者信息

Burke D, Skuse N F, Lethlean A K

出版信息

J Neurol Neurosurg Psychiatry. 1974 Jul;37(7):825-34. doi: 10.1136/jnnp.37.7.825.

DOI:10.1136/jnnp.37.7.825
PMID:4852602
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC494790/
Abstract

Isometric contraction of the abductor digiti minimi muscle (ADM) has been studied in six normal subjects. Twitch contraction times of ADM ranged from 60 to 68 ms and twitch torque ranged from 2·33 to 6·24 × 10(-3) Nm. In three subjects torque declined by an average of 31% after tetanization at 50 Hz for 30 seconds but there was no similar diminution in the evoked muscle action potential suggesting that the fatigue arose from intrinsic muscular mechanisms. A marked decline in tetanic torque occurred with continued tetanization in two subjects for a total of five minutes, but this change was accompanied by a decrease in the muscle action potential. In six subjects threshold stimulation to the ulnar nerve at the wrist and to various sites over the motor point of ADM allowed 55 threshold twitch contractions to be identified after averaging. A unimodal range of contraction times ranging from 40-100 ms was found and this was confirmed by additional experiments in two subjects in whom 30 threshold twitch contractions were identified using a needle electrode to stimulate various sites in the motor point. Tetanization at 50 Hz was performed using threshold stimulus levels. Nine threshold tetanic contractions were evoked in two subjects. In eight tetanic torque progressively fatigued to between 14 and 20% within 60-90 seconds, but, in one tetanic contraction, torque proved relatively fatigue resistant. These results suggest that there is a homogeneous group of motor units in ADM (with respect to contraction time) and that this group contains what are probable fast twitch fatigue sensitive and fatigue resistant motor units. No evidence of a distinct group of slow twitch units was found.

摘要

对6名正常受试者的小指展肌(ADM)进行了等长收缩研究。ADM的单收缩时间为60至68毫秒,单收缩扭矩为2.33至6.24×10⁻³牛米。在3名受试者中,以50赫兹进行30秒的强直收缩后,扭矩平均下降了31%,但诱发的肌肉动作电位没有类似的降低,这表明疲劳源于内在的肌肉机制。在2名受试者中持续进行5分钟的强直收缩后,强直扭矩出现了明显下降,但这种变化伴随着肌肉动作电位的降低。在6名受试者中,对腕部尺神经和ADM运动点上的不同部位进行阈刺激,平均后可识别出55次阈下单收缩。发现收缩时间的单峰范围为40 - 100毫秒,在另外2名受试者中进行的额外实验证实了这一点,在这些实验中,使用针电极刺激运动点的不同部位识别出了30次阈下单收缩。使用阈刺激水平在50赫兹下进行强直收缩。在2名受试者中诱发了9次阈下强直收缩。在8次强直收缩中,扭矩在60 - 90秒内逐渐疲劳至14%至20%之间,但在1次强直收缩中,扭矩显示出相对抗疲劳性。这些结果表明,ADM中存在一组同质的运动单位(就收缩时间而言),并且该组包含可能是快肌疲劳敏感型和抗疲劳型的运动单位。未发现明显的慢肌单位组的证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61bb/494790/98d3ab5c6bbe/jnnpsyc00193-0062-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61bb/494790/98d3ab5c6bbe/jnnpsyc00193-0062-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61bb/494790/98d3ab5c6bbe/jnnpsyc00193-0062-a.jpg

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