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猫眼球退缩运动神经元的定位与形态

Localization and morphology of cat retractor bulbi motoneurons.

作者信息

Spencer R F, Baker R, McCrea R A

出版信息

J Neurophysiol. 1980 Mar;43(3):754-70. doi: 10.1152/jn.1980.43.3.754.

Abstract
  1. Motoneurons innervating the cat retractor bulbi muscle have been identified by retrograde axonal transport of horseradish peroxidase (HRP). Following injections of the four slips of the retractor bulbi muscle, labeled motoneurons were found in the abducens nucleus overlapping the distribution of lateral rectus motoneurons and in the oculomotor nucleus partially overlapping the distribution of medial rectus motoneurons. Retractor bulbi motoneurons also were found in the accessory abducens nucleus situated ventral and lateral to the abducens nucleus. 2. Retractor bulbi motoneurons varied considerably in shape and size, but in all instances contained similar cytoplasmic organelles. Quantitative analyses of mean soma diameter indicated that the average size of retractor bulbi motoneurons was larger than the average size of lateral rectus and medial rectus motoneurons. 3. Retractor bulbi motoneurons in the accessory abducens nucleus were identified electrophysically and stained by intracellular injection of HRP. Neuronal reconstructions demonstrated a dorsomedial axonal trajectory directed toward the abducens nucleus and elongated dendritic fields oriented in a dorsomedial-ventrolateral axis. Another major dendritic extension was directed toward the magnocellular division of the spinal trigeminal nucleus, a major source of excitatory input to these motoneurons. 4. Quantitative analyses of synaptic density indicated that the somata of retractor bulbi motoneurons were contacted by significantly fewer synaptic endings than the somata of motoneurons in the abducens nucleus. Retractor bulbi motoneurons in the abducens nucleus exhibited variations in synaptic density that were similar to the densities on lateral rectus motoneurons. 5. Given the morphological differences in location, size, and somadendritic extent between motoneurons in the accessory abducens, abducens and oculomotor nuclei, it is suggested that such features reflect functional differences between the motoneurons with respect to fiber composition of the muscles they innervate, and subsequently to the role each muscle plays in eye movement. 6. Since the morphological features of retractor bulbi motoneurons in the accessory abducens nucleus are quite different from those in either the abducens or oculomotor nuclei, it appears that each motoneuronal population may perform unique oculomotor functions.
摘要
  1. 通过辣根过氧化物酶(HRP)逆行轴突运输,已鉴定出支配猫眼球退缩肌的运动神经元。在向眼球退缩肌的四条肌束注射后,在展神经核中发现了标记的运动神经元,其与外直肌运动神经元的分布重叠,在动眼神经核中也发现了标记的运动神经元,其部分与内直肌运动神经元的分布重叠。在展神经核腹侧和外侧的副展神经核中也发现了眼球退缩肌运动神经元。2. 眼球退缩肌运动神经元的形状和大小差异很大,但在所有情况下都含有相似的细胞质细胞器。对平均胞体直径的定量分析表明,眼球退缩肌运动神经元的平均大小大于外直肌和内直肌运动神经元的平均大小。3. 通过电生理学方法鉴定了副展神经核中的眼球退缩肌运动神经元,并通过细胞内注射HRP进行染色。神经元重建显示,轴突轨迹向背内侧指向展神经核,树突野拉长,沿背内侧 - 腹外侧轴排列。另一个主要的树突延伸指向脊髓三叉神经核的大细胞部,这是这些运动神经元兴奋性输入的主要来源。4. 对突触密度的定量分析表明,眼球退缩肌运动神经元的胞体与展神经核中运动神经元胞体相比,接触的突触末梢明显较少。展神经核中的眼球退缩肌运动神经元突触密度的变化与外直肌运动神经元的密度相似。5. 鉴于副展神经核、展神经核和动眼神经核中运动神经元在位置、大小和胞体 - 树突范围上的形态差异,表明这些特征反映了运动神经元在其所支配肌肉的纤维组成方面的功能差异,进而反映了每块肌肉在眼球运动中所起的作用。6. 由于副展神经核中眼球退缩肌运动神经元的形态特征与展神经核或动眼神经核中的明显不同,似乎每个运动神经元群体可能执行独特的眼球运动功能。

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