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电刺激的频率和强度对去神经大鼠肌肉收缩特性的重要性。

The importance of frequency and amount of electrical stimulation for contractile properties of denervated rat muscles.

作者信息

Gundersen K, Eken T

机构信息

Department of Physiology, University of Oslo, Norway.

出版信息

Acta Physiol Scand. 1992 May;145(1):49-57. doi: 10.1111/j.1748-1716.1992.tb09335.x.

Abstract

Soleus (SOL) and extensor digitorum longus (EDL) muscles were denervated and directly stimulated for 23-69 days through implanted electrodes employing three different patterns. The stimulation was delivered in impulse trains where the pulse frequency differed (20, 75, and 150 Hz), while the train duration (0.3 s) and train repetition rate (1 min-1) were identical. Consequently, the number of pulses varied such that higher frequency was combined with a higher amount of stimulation. In both SOL and EDL the high-frequency pattern resulted in shorter twitch time-to-peak, greater post-tetanic potentiation, and greater tetanic force than the low frequency. Isotonic shortening velocity was increased to the same extent by all the patterns in SOL whereas in EDL fast intrinsic shortening velocity was maintained by the low-frequency pattern while it was decreased by the high-frequency pattern. We attribute this unexpected effect on the EDL to the larger number of pulses in the high-frequency pattern. By combining the present findings with previous data on directly stimulated rat muscles we conclude: in SOL the twitch duration is influenced by both the frequency and the amount of impulse activity, higher frequencies and smaller amounts leading to faster twitches. The EDL twitch duration is similarly dependent on the amount of activity, but the role of frequency is more unclear. In both SOL and EDL the isotonic shortening velocity is reduced by increasing amounts of activity and there is no evidence that impulse frequency plays a role. In EDL force output is strongly influenced by the impulse frequency, low frequencies resulting in low force outputs irrespective of the amount of activity.

摘要

比目鱼肌(SOL)和趾长伸肌(EDL)被去神经支配,并通过植入电极采用三种不同模式直接刺激23 - 69天。刺激以脉冲串的形式进行,其中脉冲频率不同(20、75和150赫兹),而串持续时间(0.3秒)和串重复率(1次/分钟)相同。因此,脉冲数量有所不同,使得较高频率与较高的刺激量相结合。在SOL和EDL中,高频模式均导致比低频模式下更短的收缩峰值时间、更大的强直后增强以及更大的强直力。在SOL中,所有模式均使等张缩短速度增加到相同程度,而在EDL中,低频模式维持快速固有缩短速度,高频模式则使其降低。我们将对EDL的这种意外效应归因于高频模式中更多的脉冲数量。通过将本研究结果与先前关于直接刺激大鼠肌肉的数据相结合,我们得出结论:在SOL中,收缩持续时间受冲动活动的频率和量的影响,较高频率和较小量会导致更快的收缩。EDL的收缩持续时间同样依赖于活动量,但频率的作用更不明确。在SOL和EDL中,等张缩短速度均随着活动量的增加而降低,且没有证据表明冲动频率起作用。在EDL中,力输出受冲动频率的强烈影响,低频导致低力输出,而与活动量无关。

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