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单根骨骼肌纤维和纤维束中的肌节长度离散度。

Sarcomere length dispersion in single skeletal muscle fibers and fiber bundles.

作者信息

Paolini P J, Sabbadini R, Roos K P, Baskin R J

出版信息

Biophys J. 1976 Aug;16(8):919-30. doi: 10.1016/S0006-3495(76)85742-6.

Abstract

Light diffraction patterns produced by single skeletal muscle fibers and small fiber bundles of Rana pipiens semitendinosus have been examined at rest and during tetanic contraction. The muscle diffraction patterns were recorded with a vidicon camera interfaced to a minicomputer. Digitized video output was analyzed on-line to determine mean sarcomere length, line intensity, and the distribution of sarcomere lengths. The occurrence of first-order line intensity and peak amplitude maxima at approximately 3.0 mum is interpreted in terms of simple scattering theory. Measurements made along the length of a singel fiber reveal small variations in calculated mean sarcomere length (SD about 1.2%) and its percent dispersion (2.1% +/- 0.8%). Dispersion in small multifiber preparations increases approximately linearly with fiber number (about 0.2% per fiber) to a maximum of 8-10% in large bundles. Dispersion measurements based upon diffraction line analysis are comparable to SDs calculated from length distribution histograms obtained by light micrography of the fiber. First-order line intensity decreases by about 40% during tetanus; larger multifibered bundles exhibit substantial increases in sarcomere dispersion during contraction, but single fibers show no appreciable dispersion change. These results suggest the occurrence of asynchronous static or dynamic axial disordering of thick filaments, with a persistence in long range order of sarcomere spacing during contraction in single fibers.

摘要

已对牛蛙半腱肌的单根骨骼肌纤维和小纤维束在静息和强直收缩期间产生的光衍射图案进行了研究。肌肉衍射图案用与小型计算机相连的光导摄像管摄像机记录。对数字化视频输出进行在线分析,以确定平均肌节长度、线条强度和肌节长度分布。根据简单散射理论解释了在约3.0μm处出现的一级线条强度和峰值幅度最大值。沿单根纤维长度进行的测量显示,计算出的平均肌节长度存在微小变化(标准差约为1.2%)及其百分比离散度(2.1%±0.8%)。在小的多纤维制剂中,离散度随纤维数量大致呈线性增加(每根纤维约0.2%),在大束中最大可达8 - 10%。基于衍射线分析的离散度测量结果与通过纤维光学显微镜获得的长度分布直方图计算出的标准差相当。在破伤风期间,一级线条强度降低约40%;较大的多纤维束在收缩期间肌节离散度显著增加,但单根纤维未显示出明显的离散度变化。这些结果表明,粗肌丝存在异步静态或动态轴向无序排列,单根纤维在收缩期间肌节间距的长程有序性持续存在。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/04f8/1334917/cec7241462ff/biophysj00301-0073-a.jpg

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