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通过辣根过氧化物酶逆行轴突运输确定的七鳃鳗脊髓神经元投射。

Projections of lamprey spinal neurons determined by the retrograde axonal transport of horseradish peroxidase.

作者信息

Tang D, Selzer M E

出版信息

J Comp Neurol. 1979 Dec 15;188(4):629-45. doi: 10.1002/cne.901880408.

Abstract

The spinal cords of larval sea lampreys (Petromyzon marinus) and adult river lampreys (Ichthyomyzon unicuspis) were injected with horseradish peroxidase through a transection 1 cm caudal to the last gill. Some animals also had a spinal hemisection 1 cm caudal to the injection. After recovery periods of 1 to 52 days, the spinal cords were treated with diaminobenzidene and hydrogen peroxide, and the projections of various cell types determined in wholemount slides. From these observations the following conclusions were drawn. Most dorsal cells (primary sensory cells) are bipolar with a long rostral projection and a short caudal projection of no more than 5-10 mm. Both processes travel in the ipsilateral dorsal column. Their peripheral processes enter the dorsal roots as branches of their central axons. Some dorsal cells send processes out three or more dorsal roots both rostral and caudal to the cell body. Myotomal motoneurons have characteristic locations in the medial gray column and send prominent transversely oriented dendrites into the lateral columns. A few motoneurons are unusually large. In addition to giant interneurons the majority of smaller rostrally projecting interneurons also have decussating axons. A recently described cell type, the oblique bipolar cell, appears to have an exclusively crossed rostral projection. Although most edge cells project rostrally, as many as 20% may have a caudal projection or both rostral and caudal projections. Edge cells project equally to the ipsilateral and contralateral spinal hemicord, but their processes do not extend more than about 18 mm in sea lamprey larvae and 37 mm in adult river lampreys. Lateral cells project exclusively to the ipsilateral caudal hemicord. A few cells which resemble lateral cells in location and in possessing large lateral dendrites, project rostrally. However, these have atypical morphologic features which probably distinguish them from true lateral cells. Thus far, regardless of cell type, all decussating axons seem to pass ventral to the central canal, while decussating medial dendrites pass dorsally.

摘要

通过在最后一个鳃后方1厘米处进行横切,将辣根过氧化物酶注入幼体海七鳃鳗(Petromyzon marinus)和成体河七鳃鳗(Ichthyomyzon unicuspis)的脊髓。一些动物在注射部位后方1厘米处还进行了脊髓半横切。在1至52天的恢复期后,用二氨基联苯胺和过氧化氢处理脊髓,并在整装切片中确定各种细胞类型的投射。从这些观察中得出了以下结论。大多数背侧细胞(初级感觉细胞)是双极的,具有长的吻侧投射和不超过5 - 10毫米的短尾侧投射。两个突起都在同侧背柱中走行。它们的外周突起作为其中央轴突的分支进入背根。一些背侧细胞在细胞体的吻侧和尾侧将突起发送到三个或更多背根中。肌节运动神经元在内侧灰质柱中有特征性位置,并将突出的横向树突发送到外侧柱中。一些运动神经元异常大。除了巨型中间神经元外,大多数向吻侧投射的较小中间神经元也有交叉的轴突。最近描述的一种细胞类型,即斜双极细胞,似乎只有交叉的吻侧投射。尽管大多数边缘细胞向吻侧投射,但多达20%的细胞可能有尾侧投射或同时有吻侧和尾侧投射。边缘细胞向同侧和对侧脊髓半侧等比例投射,但其突起在海七鳃鳗幼体中延伸不超过约18毫米,在成体河七鳃鳗中延伸不超过37毫米。外侧细胞仅向同侧尾侧半脊髓投射。一些在位置上类似于外侧细胞且具有大的外侧树突的细胞向吻侧投射。然而,这些细胞具有非典型的形态特征,这可能使它们与真正的外侧细胞区分开来。到目前为止,无论细胞类型如何,所有交叉的轴突似乎都在中央管的腹侧通过,而交叉的内侧树突则在背侧通过。

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