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胚胎操作后鸡前肢的节段性神经支配。

Segmental innervation of the chick forelimb following embryonic manipulation.

作者信息

Bennett M R, Lindeman R, Pettigrew A G

出版信息

J Embryol Exp Morphol. 1979 Dec;54:141-54.

PMID:528861
Abstract

A number of studies have shown that the segmental innervation of some muscles in the developing limb undergoes some modification during the earliest stages of ontogeny. These observations can be interpreted in support of the hypothesis that the motor axons and muscles are matched during this period of development. As a further test of this suggestion we have made a quantitative examination of the motor innervation of the chick forelimb under conditions of controlled abnormal development. Embryos were surgically manipulated at stages before the motor axons invade the limb. The operations were controlled such that forelimbs were induced with segments deleted or reduplicated or simply that a segment of the spinal cord had been deleted. In preparations with abnormal limbs the motor innervation of the muscles present was the same as for those muscles in the normal limb. Where a spinal segment had been deleted the limbs developed normally and their innervation was completed by the remaining brachial segments. These results suggest that any particular matching property of a developing muscle does not develop as a consequence of its position in the limb relative to those segments of the limb proximal to it. Furthermore, that some muscles which are normally innervated by two spinal segments can be completely innervated by one of those spinal segments, in the absence of the other, suggests that any matching between growing axons and developing muscle cells is hierarchical rather than strictly all-or-nothing.

摘要

多项研究表明,发育中的肢体中某些肌肉的节段性神经支配在个体发育的最早阶段会发生一些改变。这些观察结果可以被解释为支持这样一种假说,即在这个发育阶段运动轴突和肌肉是相互匹配的。作为对这一观点的进一步检验,我们在可控的异常发育条件下对鸡前肢的运动神经支配进行了定量研究。在运动轴突侵入肢体之前的阶段对胚胎进行手术操作。操作是可控的,使得前肢被诱导出现节段缺失、重复,或者仅仅是一段脊髓被切除。在肢体异常的标本中,现存肌肉的运动神经支配与正常肢体中的那些肌肉相同。在脊髓节段被切除的情况下,肢体正常发育,其神经支配由剩余的臂节完成。这些结果表明,发育中肌肉的任何特定匹配特性并非因其在肢体中相对于其近端肢体节段的位置而形成。此外,一些通常由两个脊髓节段支配的肌肉在缺少另一个节段时可以完全由其中一个脊髓节段支配,这表明生长中的轴突与发育中的肌肉细胞之间的任何匹配是分层的,而不是严格的全或无。

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