Suppr超能文献

不同组织化学定义类型的人类骨骼肌纤维中的Z带和M带外观

Z- and M-band appearance in different histochemically defined types of human skeletal muscle fibers.

作者信息

Sjöström M, Kidman S, Larsén K H, Angquist K A

出版信息

J Histochem Cytochem. 1982 Jan;30(1):1-11. doi: 10.1177/30.1.7054271.

Abstract

In order to define ultrastructural features, which alone or in combination with other features could be used to identify different types of fibers in human skeletal muscle, frozen biopsy specimens of m. tibialis anterior were serially sectioned. The thawed sections were prepared either for enzyme histochemistry or for electron microscopy. The same fiber was then identified in all serial sections and its ultrastructure examined under the electron microscope. A total of 75 fibers were included in this investigation. Specimens were also conventionally prepared for electron microscopy. Special interest was devoted to the appearance of the sarcomeric Z- and M-bands. In the same fiber, all myofibrils showed the same Z- as well as M-band structure. On the other hand, it was evident that these structures varied from one type of fiber to another in the same muscle and that their appearance were covariant to a great extent. Low level resolution of Type 1 fibers usually showed broad Z- and M-bands with five strong M-bridge lines. In Type 2A fibers intermediate Z-bands were observed. In the middle portion of the M-bands, three strong M-bridge lines were distinct while the two outer lines were relatively weak. Finally, Type 2B fibers usually appeared with narrow Z-bands. The three M-bridge lines in the middle were strong while the two outer ones were very weak, if seen at all. Discriminant analysis showed that about 70% of the fibers should have been correctly allocated on the basis of the Z-band width alone. When two independent observers classified the fibers on the basis of M-band appearance, more than 95% of the fibers were correctly classified. Thus, both the Z- and M-bands, alone or in combination, can be used as fiber type discriminators. However, the M-band structure proved to be more reliable than the Z-band width, and should therefore be used as the fiber type indicator when only one of these parameters is considered.

摘要

为了确定超微结构特征,这些特征单独或与其他特征结合可用于识别人类骨骼肌中的不同类型纤维,对胫骨前肌的冷冻活检标本进行了连续切片。解冻后的切片用于酶组织化学或电子显微镜检查。然后在所有连续切片中识别同一根纤维,并在电子显微镜下检查其超微结构。本研究共纳入75根纤维。标本也按常规方法制备用于电子显微镜检查。特别关注肌节Z带和M带的外观。在同一根纤维中,所有肌原纤维显示出相同的Z带和M带结构。另一方面,很明显这些结构在同一块肌肉的不同类型纤维之间存在差异,并且它们的外观在很大程度上是协变的。1型纤维的低分辨率通常显示宽的Z带和M带以及五条强的M桥线。在2A型纤维中观察到中间Z带。在M带的中间部分,三条强的M桥线明显,而两条外侧的线相对较弱。最后,2B型纤维通常显示窄的Z带。中间的三条M桥线很强,而两条外侧的线如果能看到的话则非常弱。判别分析表明,仅根据Z带宽度,约70%的纤维应能被正确分类。当两名独立观察者根据M带外观对纤维进行分类时,超过95%的纤维被正确分类。因此,Z带和M带单独或结合使用都可作为纤维类型鉴别指标。然而,M带结构被证明比Z带宽度更可靠,因此当只考虑这些参数中的一个时,应将其用作纤维类型指标。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验