Dubose L, Schelhorn T B, Clamann H P
Department of Physiology and Biophysics, Medical College of Virginia, Richmond 23298.
Muscle Nerve. 1987 Oct;10(8):744-52. doi: 10.1002/mus.880100811.
Experiments were conducted to measure the extent of contractile changes during phasic activity of different motor units. Motor units of cat medial gastrocnemius were isolated and classified by their mechanical properties as fast and fatigable (FF), fast and fatigue resistant (FR), or slow (S). Single stimuli interpolated between stimulus trains of the fatigue test produced twitches whose shapes were measured at different times during this test. After 30 seconds of fatigue testing, twitch contraction times of 33% of FF units fell into the slow range, i.e., 5 of 17 units had become slower than the fastest slow units. Mean twitch contraction time of FF units increased by 11.8 msec, whereas that of S units decreased by 16.2 msec. We conclude that the mechanical properties of rested motor units change markedly with use and are a poor index for determining the contractile speed of active muscles.
进行了实验以测量不同运动单位在相位活动期间收缩变化的程度。分离出猫内侧腓肠肌的运动单位,并根据其机械特性将其分类为快速且易疲劳(FF)、快速且抗疲劳(FR)或慢速(S)。在疲劳测试的刺激序列之间插入单个刺激,产生的抽搐在该测试的不同时间测量其形状。经过30秒的疲劳测试后,33%的FF单位的抽搐收缩时间落入慢速范围,即17个单位中有5个变得比最快的慢速单位还要慢。FF单位的平均抽搐收缩时间增加了11.8毫秒,而S单位的平均抽搐收缩时间减少了16.2毫秒。我们得出结论,静息运动单位的机械特性会随着使用而显著变化,并且对于确定活跃肌肉的收缩速度而言是一个较差的指标。