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单根去表皮兔腰大肌纤维内肌节结构域组织及其对激光衍射图案的影响。

Sarcomeric domain organization within single skinned rabbit psoas fibers and its effects on laser light diffraction patterns.

作者信息

Brenner B

出版信息

Biophys J. 1985 Dec;48(6):967-82. doi: 10.1016/S0006-3495(85)83860-1.

Abstract

Total intensity and fine structure of first-order laser light diffraction maxima from single skinned rabbit psoas fibers were studied. Total intensity of the diffraction maxima was measured as a function of the incidence angle (omega-scan). In the most homogeneous fibers, most of the intensity in the diffraction maxima is confined to a rather narrow range of incidence angles. Fibers with less homogeneous striation patterns, apparently composed of several regions of distinct sarcomere length and tilt of striation (domains), give rise to several narrow intensity peaks in their omega-scans. Left and right first-order diffraction lines produce omega-scans of almost identical shape, composed of one or more intensity peaks, with each pair of corresponding peaks separated by about the same angle. The data indicated that in single skinned rabbit psoas fibers, light diffraction is dominated by Bragg diffraction and that the peaks within omega-scans can be directly correlated with domains within the illuminated fiber segment. In the most homogeneous fiber segments the diameter of domains, estimated from the width of the corresponding maxima in the omega-scans, could almost be as large as the fiber diameter. On average, from the number of peaks in the omega-scans two to three domains with an average length of approximately 250-350 microns can be identified in a fiber cross-section. Therefore, on average only a small number of domains (8 per mm) are found within skinned rabbit psoas fiber segments. In contrast, the number of substructural lines within the diffraction maxima is large even for microscopically homogeneous fibers. Substructural lines appear to be present only when several domains are illuminated simultaneously. Separation and width of these substructural lines are approximately inversely proportional to the length of the illuminated region of the fiber. These data suggest that the substructural lines are due to interference between domains, illuminated simultaneously by a light source with a high degree of spatial coherence (laser). The relevance of these findings for measurements of sarcomere length by laser light diffraction is discussed.

摘要

研究了单根去皮肤兔腰大肌纤维一阶激光光衍射最大值的总强度和精细结构。测量了衍射最大值的总强度作为入射角(ω扫描)的函数。在最均匀的纤维中,衍射最大值的大部分强度局限于相当窄的入射角范围。条纹图案不太均匀的纤维,显然由几个不同肌节长度和条纹倾斜度的区域(结构域)组成,在其ω扫描中会产生几个窄强度峰。左右一阶衍射线产生的ω扫描形状几乎相同,由一个或多个强度峰组成,每对相应峰之间的间隔角度大致相同。数据表明,在单根去皮肤兔腰大肌纤维中,光衍射以布拉格衍射为主,并且ω扫描内的峰可直接与被照射纤维段内的结构域相关。在最均匀的纤维段中,根据ω扫描中相应最大值的宽度估计的结构域直径几乎可与纤维直径一样大。平均而言,从ω扫描中的峰数可以在纤维横截面上识别出两到三个平均长度约为250 - 350微米的结构域。因此,在去皮肤兔腰大肌纤维段内平均仅发现少量结构域(每毫米8个)。相比之下,即使对于微观上均匀的纤维,衍射最大值内的亚结构线数量也很多。亚结构线似乎仅在几个结构域同时被照射时才出现。这些亚结构线的间距和宽度大致与纤维被照射区域的长度成反比。这些数据表明,亚结构线是由于具有高度空间相干性的光源(激光)同时照射的结构域之间的干涉所致。讨论了这些发现与通过激光光衍射测量肌节长度的相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7aa4/1329430/c2516b10a58b/biophysj00185-0112-a.jpg

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