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通过高速显微电影摄影术研究青蛙肌肉纤维中激活的内向传播。

Inward spread of activation in frog muscle fibres investigated by means of high-speed microcinematography.

作者信息

Sugi H

出版信息

J Physiol. 1974 Oct;242(1):219-35. doi: 10.1113/jphysiol.1974.sp010703.

Abstract
  1. Single fast muscle fibres of the frog were locally activated by applying current pulses to a pipette whose tip was in contact with the fibre surface, and the resulting local contractions were recorded with a high-speed ciné-camera at 1000-3000 frames/sec.2. In some but not all of the fibres examined, a moderate membrane depolarization of 20-30 mV initiated a phasic type of local contraction, which showed a definite threshold and relaxed spontaneously while the depolarization still continued.3. The phasic contraction was sometimes followed by a smaller steady contraction, which lasted as long as the depolarization went on and was regarded to be indentical with the graded type of local contraction.4. With pipettes of 20-40 mum diameter, the phasic contraction was first initiated at the depolarized fibre surface, and spread to some extent inwards with a velocity of 0.7-2 cm/sec at 18-26 degrees C. The velocity of inward spread of contraction had a Q(10) of about 2.3.5. With larger pipettes of more than 50-60 mum diameter, the phasic response was first initiated at the inner part definitely distant from the fibre surface, and the extent of contraction was greater at this part than at the superficial part during the course of the response. Furthermore, with depolarizations of nearly the threshold value, the steady contraction following the phasic one was seen only at the inner part, suggesting the reversal of the gradient of depolarization along the T tubules.6. The phasic contraction spread inwards or transversely with a considerable decrement. The response spreading across the whole diameter of the fibre could be observed only in some cases.7. The phasic response was not always sensitive to tetrodotoxin or to the removal of external sodium ions.8. These results not only give information about the nature of the regenerative mechanism within the T system, but also suggest that the organization of the T tubule network is such that the electrotonic depolarization becomes maximum at the T tubules located distant from the fibre surface when a sufficiently large area of surface membrane is depolarized.
摘要
  1. 通过向尖端与蛙的单根快肌纤维表面接触的移液管施加电流脉冲,对其进行局部激活,并使用高速电影摄像机以每秒1000 - 3000帧的速度记录由此产生的局部收缩情况。

  2. 在部分(而非全部)所检查的纤维中,20 - 30毫伏的适度膜去极化引发了一种相位型局部收缩,该收缩表现出明确的阈值,并且在去极化仍持续时会自发松弛。

  3. 相位收缩有时会接着出现较小的持续性收缩,这种收缩会持续到去极化结束,被认为与分级型局部收缩相同。

  4. 使用直径为20 - 40微米的移液管时,相位收缩首先在去极化的纤维表面开始,并在18 - 26摄氏度下以0.7 - 2厘米/秒的速度向内一定程度地扩散。收缩向内扩散的速度的Q(10)约为2.3。

  5. 使用直径超过50 - 60微米的更大移液管时,相位反应首先在明显远离纤维表面的内部开始,并且在反应过程中该部分的收缩程度比表面部分更大。此外,在接近阈值的去极化情况下,相位收缩之后的持续性收缩仅在内部可见,这表明沿着T小管的去极化梯度发生了反转。

  6. 相位收缩向内或横向扩散时会有相当程度地衰减。只有在某些情况下才能观察到反应扩散穿过纤维的整个直径。

  7. 相位反应并非总是对河豚毒素或去除外部钠离子敏感。

  8. 这些结果不仅提供了关于T系统内再生机制性质的信息,还表明T小管网络的组织方式使得当足够大面积的表面膜去极化时,电紧张性去极化在远离纤维表面的T小管处达到最大值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61d1/1330609/ddf6b8b0699f/jphysiol00917-0265-a.jpg

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