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再支配金鱼眼外肌上异体和合适连接的维持功能。

Maintained function of foreign and appropriate junctions on reinnervated goldfish extraocular muscles.

作者信息

Scott S A

出版信息

J Physiol. 1977 Jun;268(1):87-109. doi: 10.1113/jphysiol.1977.sp011848.

Abstract
  1. The ability of a multiply innervated muscle to become dually innervated, that is to accept a functional innervation from both its original and a foreign nerve, was investigated using the superior oblique muscle (s.o. muscle) of the goldfish.2. Dual innervation of s.o. muscles was achieved by allowing the original nerve (cranial NIV) to regenerate to its s.o. muscle which had been previously denervated and cross-innervated by a foreign nerve (cranial NIII), or by allowing the original and the foreign nerve to regenerate simultaneously to a denervated muscle.3. Behavioural observations suggested that in some fish reinnervation of the s.o. muscle by its original nerve repressed the function of a previously established foreign innervation. However, physiological tests which involved the stimulation of both foreign and appropriate nerves, and the recording of mechanical and electrical activity of the s.o. muscle, demonstrated that there was no functional displacement of foreign innervation on these muscles, even on individual dually innervated fibres.4. Dual innervation of the s.o. muscle persisted, apparently unchanged, for as long as the observations were continued (up to 7 months). The s.o. muscle contains two populations of fibres, fast and slow, and both types became and remained dually innervated.5. When both NIII and NIV were allowed to regenerate simultaneously to a denervated s.o. muscle there was no obvious selectivity in the final pattern of innervation. On the average both nerves elicited approximately equal tension from s.o. muscles, and evoked excitatory junctional potentials (e.j.p.s) of similar mean quantal contents.6. ;Myotypic respecification' was shown not to be responsible for the discrepancy between the behavioural results which sugested that repression of foreign innervation had occurred, and the physiological results which demonstrated that this was not the case. Anatomical and physiological findings indicated that the discrepancy was attributable to eye rotation produced by regenerated inferior oblique muscle fibres which contracted simultaneously with the cross-innervated s.o. muscle. The net result was an eye movement in which the activity of the s.o. muscle was masked.7. It is concluded that repression of established foreign neuromuscular connexions following reinnervation by the embryologically correct nerve does not occur on goldfish extraocular muscles. The s.o. muscle can become non-selectively innervated by both foreign and appropriate axons, and remains so, at least for several months.
摘要
  1. 利用金鱼的上斜肌研究了多重神经支配的肌肉变成双重神经支配的能力,即接受来自其原始神经和外来神经的功能性神经支配。

  2. 通过让原始神经(动眼神经Ⅳ)再生至其先前已去神经支配并由外来神经(动眼神经Ⅲ)交叉神经支配的上斜肌,或让原始神经和外来神经同时再生至去神经支配的肌肉,实现上斜肌的双重神经支配。

  3. 行为观察表明,在一些鱼中,上斜肌由其原始神经重新神经支配会抑制先前已建立的外来神经支配的功能。然而,涉及刺激外来神经和相应神经以及记录上斜肌的机械和电活动的生理测试表明,即使在单个双重神经支配的纤维上,外来神经支配在这些肌肉上也没有功能移位。

  4. 只要观察持续进行(长达7个月),上斜肌的双重神经支配就会持续存在,显然没有变化。上斜肌包含两种纤维类型,快肌纤维和慢肌纤维,两种类型都变成并保持双重神经支配。

  5. 当动眼神经Ⅲ和动眼神经Ⅳ同时再生至去神经支配的上斜肌时,最终的神经支配模式没有明显的选择性。平均而言,两条神经从斜肌中引发的张力大致相等,并诱发平均量子含量相似的兴奋性接头电位(e.j.p.s)。

  6. “肌型重新指定”并非行为结果(表明发生了外来神经支配的抑制)与生理结果(表明并非如此)之间差异的原因。解剖学和生理学发现表明,这种差异归因于再生的下斜肌纤维与交叉神经支配的上斜肌同时收缩所产生的眼球旋转。最终结果是眼球运动,其中上斜肌的活动被掩盖。

  7. 得出的结论是,金鱼眼外肌在由胚胎学上正确的神经重新神经支配后,不会发生已建立的外来神经肌肉连接的抑制。上斜肌可以被外来轴突和相应轴突非选择性地神经支配,并且至少在几个月内保持这种状态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6fc4/1283654/3b96eeffcf4b/jphysiol00808-0124-a.jpg

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