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Fine structure in near-field and far-field laser diffraction patterns from skeletal muscle fibers.

机译:骨骼肌纤维在近场和远场激光衍射图中的精细结构。

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摘要

Regions of muscle fibers that are many sarcomeres in length and uniform with regard to striation spacing, curvature, and tilt have been observed by light microscopy. We have investigated the possibility that these sarcomere domains can explain the fine structure in optical diffraction patterns of skeletal muscle fibers. We studied near-field and far-field diffraction patterns with respect to fiber translation and to masking of the laser beam. The position of diffracted light in the near-field pattern depends on sarcomere length and position of the diffracting regions within the laser beam. When a muscle fiber was translated longitudinally through a fixed laser beam, the fine structural lines in the near-field diffraction pattern moved in the same direction and by the same amount as the fiber movement. Translation of the muscle fiber did not result in fine structure movement in the far-field pattern. As the laser beam was incrementally masked from one side, some fine structural lines in both the near-field and far-field diffraction patterns changed in intensity while others remained the same. Eventually, all the fine structural lines broadened and decreased in intensity. Often a fine structural line increased in intensity or a dark area in the diffraction pattern became brighter as the laser beam was restricted. From these results we conclude that the fine structure in the laser diffraction pattern is due to localized and relatively uniform regions of sarcomeres (domains) and to cross interference among light rays scattered by different domains.
机译:通过光学显微镜观察到,在横纹间隔,曲率和倾斜方面,长度为许多肉瘤且均匀的肌肉纤维区域。我们已经研究了这些肌节结构域可以解释骨骼肌纤维的光学衍射图中的精细结构的可能性。我们研究了关于光纤平移和激光束掩蔽的近场和远场衍射图样。近场图案中的衍射光的位置取决于肌节长度和激光束内的衍射区域的位置。当肌肉纤维通过固定的激光束纵向平移时,近场衍射图中的细结构线沿与纤维移动相同的方向和相同的量移动。肌肉纤维的平移并未导致远场模式中的精细结构运动。随着激光束从一侧逐渐被掩蔽,近场和远场衍射图中的一些细结构线强度发生了变化,而其他结构线则保持不变。最终,所有细微的结构线都在扩大和减弱。通常,由于激光束受到限制,细结构线的强度会增加,或者衍射图样中的暗区会变亮。从这些结果可以得出结论,激光衍射图中的精细结构是由于肉瘤(区域)的局部且相对均匀的区域,以及由于不同区域散射的光线之间的交叉干扰所致。

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