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肌节长度、张力及细胞外钠浓度对蛙肌纤维传导速度的影响。

Influence of sarcomere length, tonicity, and external sodium concentration on conduction velocity in frog muscle fibres.

作者信息

Oetliker H, Schümperli R A

出版信息

J Physiol. 1982 Nov;332:203-21. doi: 10.1113/jphysiol.1982.sp014410.

Abstract
  1. Using an optical technique, conduction velocity in isolated frog muscle fibres has been measured at different sarcomere lengths and in solutions of altered tonicity and Na content. 2. Conduction velocity (in m/s) in normal Ringer solution is found to be independent of sarcomere length in the range of 2-5 microns. 3. Fibre cross-section appears to become circular with stretch to sarcomere lengths exceeding 4 microns. The data on fibre diameter and length are in agreement with the assumption that constant fibre volume is maintained during passive length changes. 4. In Na-deficient solutions, conduction velocity is reduced, in agreement with predictions based on action potential parameters. 5. In solutions of half or twice the normal tonicity, the conduction velocity is proportional to the square root of the measured fibre diameter. After correcting the bias involved in estimating fibre cross-section from only one measurement of fibre diameter, the data suggest an increase in specific internal resistance (Ri) by about 8% in twice hypertonic solution and a decrease by about 5% in half normal tonicity. 6. Releasing and stretching a fibre in hypertonic solution has no effect on conduction velocity as long as the initial sarcomere length is not exceeded. Stretching the fibre beyond the sarcomere length at which it was transferred to hypertonic solution reversibly increases conduction velocity.
摘要
  1. 运用光学技术,已在不同肌节长度以及张力和钠含量改变的溶液中,测量了分离的青蛙肌肉纤维的传导速度。2. 发现在正常任氏溶液中,传导速度(米/秒)在2至5微米的肌节长度范围内与肌节长度无关。3. 当肌节长度超过4微米时,纤维横截面似乎随着拉伸而变为圆形。关于纤维直径和长度的数据与被动长度变化期间纤维体积保持恒定的假设一致。4. 在缺钠溶液中,传导速度降低,这与基于动作电位参数的预测一致。5. 在张力为正常一半或两倍的溶液中,传导速度与所测纤维直径的平方根成正比。在仅通过一次纤维直径测量来估计纤维横截面所涉及的偏差得到校正后,数据表明在两倍高渗溶液中比内阻(Ri)增加约8%,在张力为正常一半时降低约5%。6. 在高渗溶液中释放和拉伸纤维,只要不超过初始肌节长度,对传导速度就没有影响。将纤维拉伸超过其转移至高渗溶液时的肌节长度会使传导速度可逆地增加。

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