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小鼠慢肌和快肌中神经肌肉接头的拓扑学比较。

Topographic comparison of neuromuscular junctions in mouse slow and fast twitch muscles.

作者信息

Fahim M A, Holley J A, Robbins N

出版信息

Neuroscience. 1984 Sep;13(1):227-35. doi: 10.1016/0306-4522(84)90273-2.

DOI:10.1016/0306-4522(84)90273-2
PMID:6092993
Abstract

The neuromuscular junctions of mammalian slow and fast twitch muscles are activated differently in vivo and show corresponding physiological differences in vitro, but the structural basis or consequences of these differences are relatively unexplored. Therefore, neuromuscular junctions of mouse fast (extensor digitorum longus) and slow (soleus) twitch muscles were compared by use of new scanning and light microscopy techniques. In both muscles, the endplate appeared as an elliptical area raised to a variable extent above the surrounding sarcolemma and containing the primary clefts. In most soleus endplates, this raised surface area was considerably higher and wider and about three times larger than in extensor digitorum longus. In addition, the primary cleft area was about two-fold greater in soleus than in extensor digitorum longus, even though cleft length was the same. The primary clefts formed either an elliptical shape along the outer margin of the endplate with inward-directed branches or a group of relatively rectilinear dendritic branches orthogonally oriented to one another. The latter type was most frequent in soleus and the elliptical type in extensor digitorum longus. Corresponding patterns of nerve terminal arborizations were seen by light microscopy. Although nerve terminal areas were the same in fast and slow muscles, in the former, numerous diverticulae significantly increased the length of the nerve terminal outline. The possible physiological significance of the different synaptic structure of slow and fast muscle is discussed.

摘要

哺乳动物慢肌和快肌的神经肌肉接头在体内的激活方式不同,在体外也表现出相应的生理差异,但这些差异的结构基础或后果尚未得到充分探索。因此,利用新的扫描和光学显微镜技术对小鼠快肌(趾长伸肌)和慢肌(比目鱼肌)的神经肌肉接头进行了比较。在这两种肌肉中,终板均表现为椭圆形区域,在周围肌膜上方有不同程度的隆起,并含有初级裂隙。在大多数比目鱼肌终板中,这种隆起的表面积明显更高、更宽,比趾长伸肌大约大三倍。此外,比目鱼肌的初级裂隙面积比趾长伸肌大约大一倍,尽管裂隙长度相同。初级裂隙沿着终板的外缘形成椭圆形,带有向内的分支,或者形成一组相互正交的相对直线状的树突状分支。后一种类型在比目鱼肌中最为常见,而椭圆形类型在趾长伸肌中最为常见。光学显微镜下观察到了相应的神经末梢分支模式。虽然快肌和慢肌的神经末梢面积相同,但在快肌中,大量的憩室显著增加了神经末梢轮廓的长度。本文讨论了快慢肌不同突触结构可能的生理意义。

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