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运用辣根过氧化物酶和电生理技术确定连接猫和猴脊髓膨大的长下行脊髓固有纤维的起源细胞。

Cells of origin of long descending propriospinal fibers connecting the spinal enlargements in cat and monkey determined by horseradish peroxidase and electrophysiological techniques.

作者信息

Skinner R D, Coulter J D, Adams R J, Remmel R S

出版信息

J Comp Neurol. 1979 Dec 1;188(3):443-54. doi: 10.1002/cne.901880307.

Abstract

The cells of origin of the long descending propriospinal tract (LDPT) in the cervical enlargement were studied in cat and monkey by using the retrograde transport of horseradish peroxidase (HRP). Their distribution was confirmed electrophysiologically in cat by recording their antidromic action potentials. In cats and monkeys unilateral injections of HRP were made into the gray matter of the lumbosacral enlargement, but there was some spread to the contralateral side. In cats labeled somas were found in greatest numbers in lamina VIII and medial lamina VII, bilaterally. Labeled cells also were found bilaterally in laminae I, IV--VI, and X, but few were in IV and VI. Those in lamina V were usually in the lateral part of the lamina near the reticulated region. The cross-sectional areas of 20 neurons from each of laminae I and V--VIII were measured. Cells in lamina I were smallest and the largest were in VII and VIII. In cats with the spinal cord hemisected between the injection site and the cervical enlargement containing the somas, the bilaterality of the LDPT neurons in laminae VII and VIII was confirmed anatomically and physiologically. Contralaterally projecting neurons in laminae VIII and medial VII constituted a majority of LDPT cells in those laminae. The LDPT neurons in the dorsal horn appeared to project mainly ipsilaterally, but the number of labeled dorsal horn cells in these preparations was small. The distribution of antidromically localized cells of the LDPT was found to be in good agreement with the anatomical results. Their conduction velocity was 59 +/- 22 m/s (mean +/- s.d., n = 245). Histograms of the conduction velocity by laminae are given. In monkey the distribution of labeled somas was similar to that in the cat, except that the concentration of labeled somas in the ventral horn was more medially and dorsally located. Labeled somas were found bilaterally in laminae I, IV--VIII, and X, but more appeared to be ipsilateral to the side of the injection, especially in the dorsal horn. The bilaterality of the LDPT in the monkey was not tested with hemisections of the spinal cord. Neurons of the LDPT are ideally situated for conveying sensory information from the forelimb for eliciting reflexes in the hindlimb, as has been observed after stimulating afferents in the forelimb, and for coordinating, in general, motor functions between the two pairs of limbs.

摘要

运用辣根过氧化物酶(HRP)逆行运输法,在猫和猴身上研究了颈膨大处长下行脊髓 propriospinal 束(LDPT)的起源细胞。通过记录其逆向动作电位,在猫身上从电生理角度证实了它们的分布。在猫和猴身上,将 HRP 单侧注入腰骶膨大的灰质,但有一些扩散到了对侧。在猫身上,标记的胞体在双侧的第 VIII 层和内侧第 VII 层数量最多。在双侧的第 I、IV - VI 和 X 层也发现了标记细胞,但第 IV 和 VI 层的很少。第 V 层的那些细胞通常位于靠近网状区域的该层外侧部分。测量了来自第 I 层以及第 V - VIII 层各 20 个神经元的横截面积。第 I 层的细胞最小,最大的在第 VII 和 VIII 层。在脊髓在注射部位和含有胞体的颈膨大之间被半横切的猫身上,从解剖学和生理学角度证实了第 VII 和 VIII 层中 LDPT 神经元的双侧性。第 VIII 层和内侧第 VII 层中对侧投射的神经元构成了这些层中 LDPT 细胞的大多数。背角中的 LDPT 神经元似乎主要向同侧投射,但这些标本中标记的背角细胞数量较少。发现 LDPT 逆向定位细胞的分布与解剖学结果高度一致。它们的传导速度为 59±22 m/s(平均值±标准差,n = 245)。给出了各层传导速度的直方图。在猴身上,标记胞体的分布与猫相似,只是腹角中标记胞体的集中位置更偏内侧和背侧。在双侧的第 I、IV - VIII 和 X 层发现了标记胞体,但更多的似乎在注射侧的同侧,尤其是在背角。未用脊髓半横切法在猴身上测试 LDPT 的双侧性。LDPT 的神经元处于理想位置,可用于从前肢传递感觉信息以在后肢引发反射,正如在前肢刺激传入神经后所观察到的那样,并且总体上用于协调两对肢体之间的运动功能。

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