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腰前庭脊髓轴突的颈部分支。

Cervical branching of lumbar vestibulospinal axons.

作者信息

Abzug C, Maeda M, Peterson B W, Wilson V J

出版信息

J Physiol. 1974 Dec;243(2):499-522. doi: 10.1113/jphysiol.1974.sp010764.

Abstract
  1. We have investigated the possibility that individual lateral vestibulospinal tract (LVST) axons branch so as to innervate more than one spinal cord level.2. LVST cells in Deiters' nucleus were activated antidromically by means of electrical stimulation applied through fine metal electrodes inserted into the spinal cord. Both by directly measuring the spread of effect of stimulus current, and from theoretical considerations (Appendix), we determined that in most cases an estimate of spread of effect of stimulus current was 10 mum/muA. From the magnitude of the threshold stimulus and from the location of the stimulus point we could often exclude the possibility that the stimulus was spreading to the LVST instead of activating local branches.3. Movable stimulating electrodes, or multi-electrode arrays placed in fixed position, were used to activate 115 LVST neurones antidromically by stimulation of local branches in the lower cervical or upper thoracic cord. Of these cells, 50% were also fired antidromically by stimulation of the LVST at levels ranging from L1 to L4 (L(c) cells). The remaining cells were not activated by the lumbar stimulus (C cells). An additional group of cells was only fired by the lumbar tract stimulus (L cells).4. The distribution of locations of L(c) cells within Deiters' nucleus more closely resembles that of L cells than that of C cells. In addition the median conduction velocity of L(c) cells is similar to that of L cells, but higher than that of C cells.5. Much of the information reaching the lower cervical level from neurones of the LVST is information that is also simultaneously being passed downward to the lumbar region. Such integration makes it possible for a single neurone to be used to co-ordinate widespread motor activity.6. A theory is presented in a separate section (Appendix) to account for the spread of effect of stimulus current upon a myelinated axon submerged in an isotropic medium. The threshold for stimulation of a node by a nearby monopolar electrode is predicted to be proportional to the electrode-node spacing. The constant of proportionality is given in a closed form that depends on the electrical properties of both the neurone and the surrounding medium. The predictions of the theory are shown to be in good accord with the experimental results.
摘要
  1. 我们研究了单个外侧前庭脊髓束(LVST)轴突是否会分支以支配多个脊髓节段的可能性。

  2. 通过插入脊髓的细金属电极施加电刺激,逆向激活Deiters核中的LVST细胞。通过直接测量刺激电流效应的扩散,并基于理论考量(附录),我们确定在大多数情况下,刺激电流效应的扩散估计为10μm/μA。根据阈值刺激的大小和刺激点的位置,我们常常可以排除刺激扩散到LVST而非激活局部分支的可能性。

  3. 使用可移动的刺激电极或固定位置的多电极阵列,通过刺激颈下或胸上脊髓的局部分支,逆向激活115个LVST神经元。在这些细胞中,50%也可通过刺激L1至L4水平的LVST而逆向放电(L(c)细胞)。其余细胞则不会被腰部刺激激活(C细胞)。另外一组细胞仅由腰部束刺激激发(L细胞)。

  4. L(c)细胞在Deiters核内的位置分布与L细胞的分布比与C细胞的分布更为相似。此外,L(c)细胞的中位传导速度与L细胞相似,但高于C细胞。

  5. 从LVST神经元到达颈下水平的许多信息,同时也在向下传递至腰部区域。这种整合使得单个神经元能够用于协调广泛的运动活动。

  6. 在单独的一节(附录)中提出了一种理论,以解释刺激电流对浸没在各向同性介质中的有髓轴突的效应扩散。预测附近单极电极刺激节点的阈值与电极 - 节点间距成正比。比例常数以封闭形式给出,它取决于神经元和周围介质的电学性质。该理论的预测结果与实验结果显示出良好的一致性。

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