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青蛙缝匠肌肌节长度与等长单收缩特性之间的关系。

The relations between sarcomere length and characteristics of isometric twitch contractions of frog sartorius muscle.

作者信息

Close R I

出版信息

J Physiol. 1972 Feb;220(3):745-62. doi: 10.1113/jphysiol.1972.sp009733.

Abstract
  1. Relations between sarcomere length, tension and time course of isometric twitches at 20 degrees C were determined for thirty-two sartorius muscles from Rana temporaria.2. The maximum isometric twitch tension per unit cross-sectional area of muscle ranged from 0.56 to 2.2 kg/cm(2) at 20 degrees C and initial sarcomere length about 2.1 mu. This variation was not correlated with the corresponding measure of tetanic tension.3. The maximum isometric twitch tension per unit cross-sectional area of muscle at 2.1 mu sarcomere length was directly correlated with twitch contraction time and inversely correlated with the cross-sectional area of the muscle.4. The isometric twitch contraction was potentiated with increase in initial sarcomere length from about 2.1 to about 2.8 mu at 20 degrees C, and the degree of potentiation was inversely correlated with the maximum isometric twitch tension per unit cross-sectional area of muscle at 2.1 mu sarcomere length.5. The sarcomere length: twitch tension relation is labile and may be altered by changes in temperature and the after-effects of repetitive stimulation.6. Variation in twitch contractions at different sarcomere lengths are discussed in connexion with excitation-contraction coupling and the degree of activation of muscle fibres during twitch contractions at 20 degrees C.
摘要
  1. 测定了20℃时来自林蛙的32条缝匠肌的肌节长度、张力与等长收缩时程之间的关系。

  2. 在20℃且初始肌节长度约为2.1μm时,肌肉单位横截面积的最大等长收缩张力范围为0.56至2.2kg/cm²。这种变化与强直张力的相应测量值无关。

  3. 在肌节长度为2.1μm时,肌肉单位横截面积的最大等长收缩张力与收缩时间呈正相关,与肌肉横截面积呈负相关。

  4. 在20℃时,当初始肌节长度从约2.1μm增加到约2.8μm时,等长收缩增强,增强程度与肌节长度为2.1μm时肌肉单位横截面积的最大等长收缩张力呈负相关。

  5. 肌节长度与收缩张力的关系不稳定,可能会因温度变化和重复刺激的后效应而改变。

  6. 结合兴奋-收缩偶联以及20℃时收缩过程中肌纤维的激活程度,讨论了不同肌节长度下收缩的变化情况。

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本文引用的文献

1
The nature of the isometric twitch.等长收缩的性质。
J Physiol. 1921 Nov 18;55(5-6):389-411. doi: 10.1113/jphysiol.1921.sp001984.
3
Tensile force in total striated muscle, isolated fibre and sarcolemma.全横纹肌、分离肌纤维和肌膜中的张力。
Acta Physiol Scand. 1950 Dec;21(4):380-401. doi: 10.1111/j.1748-1716.1950.tb00744.x.
4
The mechanical properties of relaxing muscle.舒张肌肉的力学特性。
J Physiol. 1960 Jun;152(1):30-47. doi: 10.1113/jphysiol.1960.sp006467.
6
FILAMENT LENGTHS IN STRIATED MUSCLE.横纹肌中的细丝长度
J Cell Biol. 1963 Nov;19(2):369-90. doi: 10.1083/jcb.19.2.369.
9
An analysis of the mechanical components in frog's striated muscle.青蛙横纹肌中机械成分的分析。
J Physiol. 1958 Oct 31;143(3):515-40. doi: 10.1113/jphysiol.1958.sp006075.
10
The dynamics of muscular contraction.肌肉收缩的动力学
J Physiol. 1958 Aug 29;143(1):104-13. doi: 10.1113/jphysiol.1958.sp006047.

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