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收缩肌纤维的光衍射强度降低。

Decrease in light diffraction intensity of contracting muscle fibres.

作者信息

Leung A F, Cheung M K

机构信息

Department of Physics, Chinese University of Hong Kong.

出版信息

Eur Biophys J. 1988;15(6):359-68. doi: 10.1007/BF00254723.

Abstract

Single fibres from the semitendinosus muscle of frog were illuminated normally with a He-Ne laser. The intensity transient and fine structure pattern of light diffracted from the fibre undergoing isometric twitches were measured. During fibre shortening, the intensity decreased rapidly and the fine structure pattern preserved its shape and moved swiftly away from the undiffracted laser beam. The fine structure patterns of the contracting and resting fibre were nearly identical. The ratio of intensities of the contracting and resting fibre of the same sarcomere length was determined as a function of the time elapsed after fibre stimulation. The time-resolved intensity ratio increased with sarcomere length and became unity when sarcomere length was between 3.5 micron and 3.7 micron. A diffraction theory based on the sarcomere unit was developed. It contained a parameter describing the strength of filament interaction. The comparison between the theory and data shows that the initial intensity drop during contraction is primarily due to filament interactions. At a later stage of contraction, sarcomere disorder becomes the major component causing the intensity to decrease. Diffraction models which use the Debye-Waller formalism to explain the intensity decrease are discussed. The sarcomere-unit diffraction model is applied to previously reported intensity measurements from active fibres.

摘要

用氦氖激光正常照射青蛙半腱肌的单根肌纤维。测量了等长收缩的肌纤维衍射光的强度瞬变和精细结构图案。在肌纤维缩短过程中,强度迅速下降,精细结构图案保持其形状并迅速远离未衍射的激光束。收缩和静息肌纤维的精细结构图案几乎相同。确定了相同肌节长度的收缩和静息肌纤维的强度比与纤维刺激后经过的时间的函数关系。时间分辨强度比随肌节长度增加,当肌节长度在3.5微米至3.7微米之间时变为1。基于肌节单元建立了衍射理论。它包含一个描述细丝相互作用强度的参数。理论与数据的比较表明,收缩过程中的初始强度下降主要是由于细丝相互作用。在收缩后期,肌节紊乱成为导致强度下降的主要因素。讨论了用德拜-瓦勒形式解释强度下降的衍射模型。将肌节单元衍射模型应用于先前报道的活性纤维强度测量。

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