首页> 美国卫生研究院文献>The Journal of Physiology >Specific innervation of guinea-pig superior cervical ganglion cells by preganglionic fibres arising from different levels of the spinal cord.
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Specific innervation of guinea-pig superior cervical ganglion cells by preganglionic fibres arising from different levels of the spinal cord.

机译:豚鼠上颈神经节细胞被不同水平的脊髓引起的神经节前纤维特异性神经支配。

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摘要

1. The synaptic contribution of preganglionic nerve fibres arising from the last cervical (C8) and the first seven thoracic spinal cord segments (T1-T7) to neurones of the guinea-pig superior cervical ganglion has been studied by means of intracellular recording during ventral root stimulation in vitro. 2. The majority of neurones received innervation from the middle segments (T2 and T3) of the length of spinal cord from which preganglionic fibres derive; an intermediate number of ganglion cells were innervated by fibres from the segments adjacent to these (T1, T4, and T5), and relatively few neurones by fibres from the most rostral and caudal segments supplying innervation to the ganglion (C8, T6 and T7). 3. Each neurone received preganglionic terminals from multiple thoracic segments (range 1-7, mean = 4-0). The estimated minimum number of preganglionic fibres contacting each neurone was 10, on average. 4. As a rule, the spinal segments innervating a neurone were contiguous. Thus we rarely encountered neurones innervated by segments located both rostrally and caudally to a segment which failed to provide innervation. 5. Neurones tended to be innervated predominantly by axons arising from a single spinal segment, with adjacent segments contributing a synaptic influence that diminished as a function of their distance from the dominant segment. All segments provided dominant innervation to at least some neurones. 6. Stimulating the ventral roots of C8-T7 in vivo showed that the axons arising from each segment produced a characteristic pattern of peripheral effects. Thus different populations of neurones in the superior cervical ganglion of the guinea-pig are innervated by preganglionic axons from different levels of the spinal cord, as originally suggested by Langley (1892) for the cat, dog, and rabbit. 7. On the basis of our in vitro studies we conclude that underlying the specificity of innervation of neurones of the superior cervical ganglion that can be inferred from in vivo experiments is a tendency for individual neurones to be innervated in a systematically graded fashion by a contiguous subset of the eight spinal segments which provide innervation to the ganglion.
机译:1.已通过腹侧腹腔内的细胞内记录研究了由最后一个颈椎(C8)和前七个胸段脊髓(T1-T7)产生的神经节前神经纤维对豚鼠上颈神经节神经元的突触贡献。体外刺激根。 2.大多数神经元从神经节前纤维衍生自脊髓长度的中间部分(T2和T3)接受神经支配。中间数量的神经节细胞由邻近节段(T1,T4和T5)的纤维支配,而神经元较少,而大多数神经节和尾节纤维通过神经节支配神经节(C8,T6和T7) 。 3.每个神经元都从多个胸节接收神经节前末梢(范围1-7,平均值= 4-0)。与每个神经元接触的神经节前纤维的估计最小数量平均为10。 4.通常,支配神经元的脊柱节段是连续的。因此,我们很少遇到神经元被位于尾端和尾端的节段支配到未能提供神经支配的节段。 5.神经元倾向于主要由单个脊柱节段产生的轴突支配,相邻节段的突触影响根据其距优势节段的距离而减小。所有节段提供了至少一些神经元的支配神经。 6.在体内刺激C8-T7的腹侧根表明,从每个节段产生的轴突产生了外周效应的特征性模式。因此,豚鼠上颈神经节中神经元的不同种群被来自不同水平脊髓的神经节前轴突支配,正如兰利(Langley,1892)最初对猫,狗和兔子所建议的那样。 7.根据我们的体外研究,我们得出结论,可以从体内实验中推断出上颈神经节神经元神经支配的基本潜能,是单个神经元被连续连续地系统化地支配的趋势。提供神经支配的八个脊椎节段的子集。

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