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猫后肢屈肌和伸肌在不同速度和坡度下运动时的肌电图活动。

Electromyographic activity of cat hindlimb flexors and extensors during locomotion at varying speeds and inclines.

作者信息

Pierotti D J, Roy R R, Gregor R J, Edgerton V R

机构信息

Neuromuscular Research Lab, University of California, Los Angeles 90024-1568.

出版信息

Brain Res. 1989 Feb 27;481(1):57-66. doi: 10.1016/0006-8993(89)90485-x.

Abstract

Electromyographic activity (EMG) was used to determine how hindlimb muscle activation patterns are modified as speed and incline of locomotion are varied in treadmill-trained cats. EMG was recorded using chronically implanted i.m. electrodes from the soleus, medial gastrocnemius, gluteus medius, and tibialis anterior muscles of adult cats during treadmill locomotion at a range of speeds and inclines. The patterns of changes in EMG activity at varying speeds and inclines were similar in all cats. Across speeds, the integrated EMG per step decreased for the soleus but remained constant for the other muscles. The integrated EMG per step was elevated in all muscles at higher inclines. Generally, with increased speed or incline the mean EMG per step was elevated in the medial gastrocnemius, gluteus medius, and tibialis anterior, the largest increase seen in the medial gastrocnemius. Soleus mean EMG per step remained unchanged with increased speed, but showed an absolute increase at the higher inclines. The integrated EMG per minute was always highest for the soleus followed by the medial gastrocnemius, and always lowest for the tibialis anterior. At the faster speeds, the 'on-time' increased in the tibialis anterior and decreased in the other muscles. These data suggest that the number of motor units activated and/or their firing frequencies increased in the medial gastrocnemius and the gluteus medius during locomotion at faster speeds or larger inclines, while relatively little change occurred in the soleus and tibialis anterior. These data also suggest that while there is considerable modulation of the level and duration of excitation of the extensor motor pools there is relatively little modulation of the flexor motor pools to adjust for both the speed and the incline of locomotion.

摘要

肌电图活动(EMG)被用于确定在跑步机训练的猫中,随着运动速度和坡度的变化,后肢肌肉激活模式是如何改变的。在成年猫以一系列速度和坡度在跑步机上运动时,使用长期植入的肌内电极记录比目鱼肌、内侧腓肠肌、臀中肌和胫骨前肌的EMG。所有猫在不同速度和坡度下EMG活动的变化模式相似。在不同速度下,比目鱼肌每步的积分EMG下降,而其他肌肉保持不变。在更高的坡度下,所有肌肉每步的积分EMG都升高。一般来说,随着速度或坡度增加,内侧腓肠肌、臀中肌和胫骨前肌每步的平均EMG升高,内侧腓肠肌升高幅度最大。比目鱼肌每步的平均EMG随着速度增加保持不变,但在更高的坡度下出现绝对增加。每分钟的积分EMG总是比目鱼肌最高,其次是内侧腓肠肌,胫骨前肌总是最低。在更快的速度下,胫骨前肌的“开启时间”增加,其他肌肉则减少。这些数据表明,在更快速度或更大坡度的运动过程中,内侧腓肠肌和臀中肌激活的运动单位数量和/或其放电频率增加,而比目鱼肌和胫骨前肌变化相对较小。这些数据还表明,虽然伸肌运动池的兴奋水平和持续时间有相当大的调节,但屈肌运动池为适应运动速度和坡度的调节相对较小。

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