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豚鼠直肠纵行平滑肌的生物物理特性

Biophysical properties of the longitudinal smooth muscle of the guinea-pig rectum.

作者信息

Kuriyama H, Mekata F

出版信息

J Physiol. 1971 Feb;212(3):667-83. doi: 10.1113/jphysiol.1971.sp009349.

Abstract
  1. The membrane properties of the longitudinal muscle layer of the guinea-pig rectum were studied in hypertonic solution (twice the normal Krebs by addition of sucrose) by the micro-electrode technique. To produce the electrotonic potential and spike, stimulating partitions were used.2. Hypertonic solution hyperpolarized the membrane and increased the membrane resistance. However, no change in the space constant was observed before and after treatment with hypertonic solution.3. The appearance and amplitude of the spike became regular after treatment with hypertonic solution and appearance of the overshoot was consistent.4. The characteristic constants and the conduction velocity were measured in hypertonic solution.(i) The space constant of the membrane was 0.81 mm, the time constant of the electrotonic potential was 83.7 msec and the time constant of the foot of the propagated spike was 8.8 msec.(ii) The conduction velocity of the excitation measured by insertions of the two micro-electrodes was 4.4 cm/sec.(iii) The chronaxie of the membrane was 71.3 msec.5. The results obtained from the present experiments were discussed in relation to the cable theory, and it was concluded that the passive properties of the membrane of the rectal smooth muscle could be explained by the cable equations.6. The specificities of the electrical properties of rectal smooth muscle were compared with muscle from other regions of the alimentary canal.
摘要
  1. 采用微电极技术,在高渗溶液(通过添加蔗糖使浓度为正常 Krebs 溶液的两倍)中研究豚鼠直肠纵肌层的膜特性。使用刺激隔板来产生电紧张电位和锋电位。

  2. 高渗溶液使膜超极化并增加膜电阻。然而,在用高渗溶液处理前后,未观察到空间常数的变化。

  3. 用高渗溶液处理后,锋电位的外观和幅度变得规则,且超射的出现一致。

  4. 在高渗溶液中测量特征常数和传导速度。

(i)膜的空间常数为 0.81 毫米,电紧张电位的时间常数为 83.7 毫秒,传播锋电位足部的时间常数为 8.8 毫秒。

(ii)通过插入两个微电极测量的兴奋传导速度为 4.4 厘米/秒。

(iii)膜的时值为 71.3 毫秒。

  1. 结合电缆理论对本实验结果进行了讨论,得出直肠平滑肌膜的被动特性可用电缆方程解释的结论。

  2. 将直肠平滑肌电特性的特异性与消化道其他区域的肌肉进行了比较。

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