各种平滑肌的空间布局。

Q3 Medicine
Giorgio Gabella
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引用次数: 0

摘要

在身体所有器官中发现的平滑肌的特征机械活动是高度可变的,主要取决于肌肉细胞和基质的空间排列:质量、方向、关系、联系、约束,它们以各种形式部署。这些结构特征在这里检查其机械相关性,在一些哺乳动物物种的内脏和血管的肌肉的光学和电子显微镜视图。平滑肌是不可压缩的,因此保持恒定的体积。它们没有可用的空间,一个部件的任何移动都需要另一个部件的位移。它们大多数没有末端或附着点,在肠、血管和泌尿生殖道等中空器官中,它们通常形成封闭的结构,如环或袋状容器。在这些情况下,腔的大小变化是通过同心向内扩大和肌肉收缩来非常有效地实现的。胶原蛋白的纵向排列阻断了收缩时小血管的伸长,进一步提高了管腔缩小的效率。在其他肌肉中,层与层之间的联系和基质的特殊排列允许管状器官的缩短和伸长。平滑肌的力学有许多特征(有些是独特的,有些与静水肌相同,有些与其他肌肉不同),组织学数据有助于我们理解这些特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spatial lay-out of various smooth muscles.

The characteristic mechanical activities of the smooth muscles found in all organs of the body are highly variable and depend mainly on the spatial arrangement of the muscle cells and the stroma: mass, orientation, relationships, links, constraints, which are deployed in various configurations. These structural features are examined here for their mechanical relevance, in light and electron microscopic views of several muscles of viscera and blood vessels, in a selection of mammalian species. Smooth muscles are incompressible and therefore maintain constant volume. They do not have available space and any movement of a part requires displacement of another part. Most of them have no terminations or points of attachment, and in hollow organs such as intestines, blood vessels and uro-genital tract they usually form structures closed onto themselves, such as rings or bag-like containers In these situations, changes in the size of the lumen is achieved very efficiently by a concentric inward enlargement that accompanies muscle contraction. The longitudinal arrangement of collagen blocks an elongation of small blood vessels upon contraction, further enhancing the efficiency of lumen reduction. In other muscles, links between layers and special arrangements of the stroma allow both shortening and elongation of a tubular organ to occur. The mechanics of smooth muscles has many characteristic features (some unique, some shared with those of hydrostats, some at variance with other muscles) and histological data are a contribution to our understanding of these properties.

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来源期刊
Journal of Smooth Muscle Research
Journal of Smooth Muscle Research Biochemistry, Genetics and Molecular Biology-Physiology
CiteScore
2.30
自引率
0.00%
发文量
7
审稿时长
10 weeks
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