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Diffraction rings obtained from a suspension of skeletal myofibrils by laser light illumination. Study of internal structure of sarcomeres.

机译:从骨骼肌原纤维悬浮液通过激光照射获得的衍射环。研究肉瘤的内部结构。

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摘要

Diffraction rings corresponding to the first, second, and third order were obtained by laser light illumination from a suspension of rabbit glycerinated psoas myofibrils (diameter, 1-2 microns; average length of the straight region, 44 microns; average sarcomere length, 2.2-2.6 microns) of which the optical thickness was appropriately chosen. Dispersed myofibrils were nearly randomly oriented in two dimensions, so that the effects of muscle volume were minimized; these effects usually interfere significantly with a quantitative analysis of laser optical diffraction in the fiber system. The diameters of diffraction rings represented the average sarcomere length. By using this system, we confirmed the ability of the unit cell (sarcomere) structure model to explain the intensity change of diffraction lines accompanying the dissociation from both ends of thick filaments in a high salt solution. The length of an A-band estimated from the relative intensity of diffraction rings and that directly measured on phase-contrast micrographs coincided well with each other. Also, we found that myofibrils with a long sarcomere length shorten to a slack length accompanying the decrease in overlap between thick and thin filaments produced by the dissociation of thick filaments.
机译:通过激光照射从兔子甘油化腰大肌肌原纤维(直径1-2微米;笔直区域的平均长度为44微米;平均肌节长度为2.2-)的悬浮液中获得了对应于第一,第二和第三阶的衍射环。 2.6微米)的光学厚度是适当选择的。分散的肌原纤维在二维上几乎是随机定向的,从而使肌肉体积的影响最小化。这些影响通常会严重干扰光纤系统中激光光学衍射的定量分析。衍射环的直径代表平均肌节长度。通过使用该系统,我们确认了晶胞(肌节)结构模型解释伴随高盐溶液中粗丝的两端解离的衍射线强度变化的能力。由衍射环的相对强度估算出的A波段长度与在相差显微照片上直接测得的A波段长度非常吻合。同样,我们发现肌节长长的肌原纤维缩短至松弛长度,伴随着由粗丝解离产生的粗丝与细丝之间的重叠减少。

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