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Competitive and non-competitive re-innervation of mammalian sympathetic neurones by native and foreign fibres.

机译:天然和外来纤维对哺乳动物交感神经元的竞争性和非竞争性重新支配。

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摘要

The ability of native (sympathetic preganglionic) and foreign (vagal) nerve fibres to re-innervate neurones of the guinea-pig superior cervical ganglion, either alone or in competition with each other, has been studied by means of intracellular recording and electron microscopy. 1. Native fibres make synaptic contacts with nearly all ganglion cells within one month of cervical trunk section; within 6 months the degree of innervation, judged by measurement of excitatory post-synaptic potential (e.p.s.p.) amplitude and electron microscopical synapse counts, approaches normal. However, even after 15 months innervation was weaker than in normal control ganglia. 2. Vagal fibres are less successful during re-innervation. Although a similar number of foreign fibres grown into denervated ganglia and make contact with nearly all ganglion cells within a month, after 6-12 months e.p.s.p. amplitudes in response to foreign nerve stimulation remain relatively small, and counts of synapses are only about 60% as great as in ganglia re-innervated with the native nerve. 3. When both native and foreign fibres are allowed to re-innervate ganglion cells simultaneously, about half the neurones in the ganglion receive synapses from both sources after 1 month. The proportion of dually invervated cells remains roughly constant for at least 14 months. Neither set of preganglionic fibres dominates or displaces the other, although neurones generally are re-innervated more effectively by native than foreign fibres, as is true during non-competitive re-innervation. 4. Thus during re-innervation of mammalian sympathetic neurones native fibres are preferred to foreign ones only in the sense that roughly the same number of native fibres form many more synapses on ganglion cells than do vagal axons. A foreign synapse, once formed, is as stable as a native one, and shows no tendency to be replaced by native terminals. These findings are discussed in relation to other evidence which has suggested specificity and selectivity during re-innervation of mammalian autonomic neurones.
机译:通过细胞内记录和电子显微镜研究了天然的(交感神经节前神经)和外来的(迷走神经)神经纤维单独或相互竞争对豚鼠上颈神经节神经元的神经支配能力。 1.天然纤维在颈干切片的一个月内与几乎所有神经节细胞发生突触接触;在6个月内,通过测量兴奋性突触后电位(e.p.s.p.)和电子显微镜突触计数来判断神经支配程度接近正常。但是,即使在15个月后,神经支配也比正常对照神经节弱。 2.迷走神经纤维在重新神经支配过程中不太成功。尽管类似数量的异物纤维会在一个月内长成神经支配的神经节并与几乎所有神经节细胞接触,但在6-12个月后e.p.s.p.响应外来神经刺激的振幅仍然相对较小,突触的数量仅约是用原生神经神经支配的神经节的60%。 3.当允许天然纤维和异物纤维同时重新神经节细胞时,神经节中约一半的神经元在1个月后从两种来源获得突触。双重受精细胞的比例在至少14个月内大致保持恒定。尽管通常神经元比外来纤维更能有效地对神经元进行神经支配,但这两种神经节前纤维都不能支配或取代另一神经节纤维,正如在非竞争性神经支配期间那样。 4.因此,在哺乳动物交感神经元的重新神经支配过程中,仅在与神经迷走神经轴突形成神经突细胞相比,大约相同数量的天然纤维在神经节细胞上形成更多突触的意义上,天然纤维才比外来纤维优先。外来突触一旦形成,就与天然突触一样稳定,并且没有被天然末端替代的趋势。这些发现是与其他证据一起讨论的,这些证据表明哺乳动物自主神经元重新神经支配期间的特异性和选择性。

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