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蛙心自主神经元上外来运动神经支配的竞争性消除。

Competitive elimination of foreign motor innervation on autonomic neurones in the frog heart.

作者信息

Proctor W, Roper S

出版信息

J Physiol. 1982 May;326:189-200. doi: 10.1113/jphysiol.1982.sp014185.

Abstract
  1. Somatic motoneurones are capable of forming functional synapses when redirected to vagotomized autonomic neurones in the frog heart. We tested if regenerating vagus nerves could reinnervate ganglion cells in the presence of foreign hypoglossal innervation and, furthermore, whether hypoglossal innervation persisted when vagal axons regenerated to the heart. 2. Simulating the redirected hypoglossus nerve produced a parasympathetic-like cardiac inhibition in the absence of vagal regeneration. However, when the vagus nerve was allowed to regenerate to the heart, vagal cardio-inhibition was restored and hypoglossal inhibition disappeared. 3. Intracellular recordings showed that 71% of the cardiac ganglion cells were innervated by hypoglossal axons before vagal regeneration, but that this value fell to less than 9% over a period of 40 weeks during vagal regeneration. 4. If the vagus nerve was prevented from regenerating to the heart, hypoglossal innervation did not decline, indicating that elimination of the foreign motor innervation was dependent upon vagal reinnervation. 5. Although hypoglossal terminals formed synapses only on the axons of parasympathetic ganglion cells, regenerating vagal fibres re-established synaptic contact both on axons as well as on neuronal perikarya. 6. The data indicate that in the frog parasympathetic cardiac ganglion, extensive synaptic remodelling can take place during reinnervation and that previously established, inappropriate inputs can be functionally eliminated by regeneration of the native nerve supply.
摘要
  1. 当躯体运动神经元被重新导向青蛙心脏中已切断迷走神经的自主神经元时,它们能够形成功能性突触。我们测试了在存在外来舌下神经支配的情况下,再生的迷走神经是否能重新支配神经节细胞,此外,当迷走神经轴突再生至心脏时,舌下神经支配是否持续存在。2. 在没有迷走神经再生的情况下,模拟重新导向的舌下神经会产生类似副交感神经的心脏抑制。然而,当迷走神经被允许再生至心脏时,迷走神经对心脏的抑制作用恢复,舌下神经的抑制作用消失。3. 细胞内记录显示,在迷走神经再生之前,71%的心脏神经节细胞由舌下神经轴突支配,但在迷走神经再生的40周内,这一比例降至不到9%。4. 如果阻止迷走神经再生至心脏,舌下神经的支配不会下降,这表明消除外来运动神经支配依赖于迷走神经再支配。5. 尽管舌下神经终末仅在副交感神经节细胞的轴突上形成突触,但再生的迷走神经纤维在轴突以及神经元胞体上重新建立了突触联系。6. 数据表明,在青蛙副交感神经心脏神经节中,再支配过程中可发生广泛的突触重塑,并且先前建立的不适当输入可通过原生神经供应的再生在功能上被消除。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/54f4/1251467/a1950d7e1ee6/jphysiol00680-0211-a.jpg

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