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类似于正常运动单位活动的电刺激:对去神经支配的大鼠快、慢肌的影响。

Electrical stimulation resembling normal motor-unit activity: effects on denervated fast and slow rat muscles.

作者信息

Eken T, Gundersen K

机构信息

Institute of Neurophysiology, University of Oslo, Norway.

出版信息

J Physiol. 1988 Aug;402:651-69. doi: 10.1113/jphysiol.1988.sp017227.

Abstract
  1. The slow-twitch soleus muscle and the fast-twitch extensor digitorum longus muscle (EDL) were denervated and stimulated directly with implanted electrodes for 33-82 days. Four different stimulation patterns were used in order to mimic important characteristics of the natural motor-unit activity in these muscles. In addition, to compare the effects of direct stimulation to other experimental models, some EDLs were stimulated through the nerve or cross-innervated by soleus axons. 2. After 33-82 days of stimulation the contractile properties were measured under isometric and isotonic conditions. 3. 'Native' stimulation patterns could maintain normal contractile speed in both EDL and soleus. In the EDL, normal isotonic shortening velocity was maintained only by a stimulation pattern consisting of very brief trains with an initial short interspike interval (doublet), and not by the other 'native' high-frequency patterns. 4. The contractile properties of both EDL and soleus muscles receiving a 'foreign' stimulation pattern were transformed in the direction of the muscle normally receiving that type of activity. The transformations were not complete, and soleus and EDL muscles stimulated with the same stimulation pattern remained different. This suggests that adult muscle fibres in rat EDL and soleus are irreversibly differentiated into different fibre types earlier in development. 5. The three high-frequency stimulation patterns used differed in their ability to change or maintain various contractile properties in the soleus and the EDL. The results indicate that the following qualities of a stimulation pattern might be of importance for the control of contractile properties: instantaneous frequency, total amount of stimulation, train length, interval between trains and presence of an initial doublet. 6. With the exception of the EDL shortening velocity, changes in contractile speed induced by a 'foreign' stimulation pattern were quantitatively similar to the effects of cross-innervation both in the EDL and the soleus. We thus suggest that the change in activity pattern is the mechanism behind most of the changes induced by cross-innervation.
摘要
  1. 将慢肌比目鱼肌和快肌趾长伸肌(EDL)去神经支配,并用植入电极直接刺激33 - 82天。使用了四种不同的刺激模式,以模拟这些肌肉中自然运动单位活动的重要特征。此外,为了比较直接刺激与其他实验模型的效果,一些EDL通过神经进行刺激或由比目鱼肌轴突交叉支配。2. 刺激33 - 82天后,在等长和等张条件下测量收缩特性。3. “天然”刺激模式可维持EDL和比目鱼肌的正常收缩速度。在EDL中,只有由初始短峰间期(双脉冲)的非常短的串组成的刺激模式才能维持正常的等张缩短速度,而其他“天然”高频模式则不能。4. 接受“外来”刺激模式的EDL和比目鱼肌的收缩特性朝着正常接受该类型活动的肌肉方向转变。这种转变并不完全,用相同刺激模式刺激的比目鱼肌和EDL肌肉仍然不同。这表明大鼠EDL和比目鱼肌中的成年肌纤维在发育早期不可逆地分化为不同的纤维类型。5. 所使用的三种高频刺激模式在改变或维持比目鱼肌和EDL的各种收缩特性方面能力不同。结果表明,刺激模式的以下特性可能对收缩特性的控制很重要:瞬时频率、刺激总量、串长度、串之间的间隔以及初始双脉冲的存在。6. 除了EDL缩短速度外,“外来”刺激模式引起的收缩速度变化在数量上与EDL和比目鱼肌中交叉支配的效果相似。因此,我们认为活动模式的改变是交叉支配引起的大多数变化背后的机制。

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