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雄性招潮蟹的神经不对称性。

Neural asymmetry in male fiddler crabs.

作者信息

Young R E, Govind C K

出版信息

Brain Res. 1983 Dec 5;280(2):251-62. doi: 10.1016/0006-8993(83)90055-0.

Abstract

In adult male fiddler crabs, Uca pugnax, there is a marked enlargement of the 1st thoracic ganglion and its nerve root on the side of the major cheliped compared to the side of the minor cheliped. Retrograde uptake of cobalt via the cut ends of the motoneurons revealed a significant hypertrophy of their somata and dendritic fields on the major side of the ganglion compared to the minor side in the male fiddler crabs. (In female fiddler crabs which have two minor chelipeds the motoneurons were similar in size on both sides of the ganglion.) Since the number and distribution of motoneuron somata was relatively constant in the two halves of each ganglion, homologies for individual or groups of neurons could be recognized. The number of axon profiles in a cross-sectional montage of the entire nerve root of the major side in a male fiddler crab was several times greater than that of the minor side in random samples which were appropriately scaled in area. In samples of equal areas the axonal density was similar on the major and minor sides, as was also the range of axon diameters; both signify no difference in size of axons between the contralateral nerve roots. Consequently enlargement of the nerve root on the major side is due to a relative increase in the number of axons. This increase is in sensory fibers since the number of motor fibers are bilaterally constant. Thus neural asymmetry in male fiddler crabs involves hypertrophy of the motoneurons and hyperplasia of the sensory neurons associated with the enlarged condition of the major cheliped.

摘要

在成年雄性招潮蟹(学名:Uca pugnax)中,与小螯足一侧相比,大螯足一侧的第一胸神经节及其神经根明显增大。通过运动神经元的断端逆行摄取钴,结果显示,与雄性招潮蟹神经节小螯足一侧相比,大螯足一侧的运动神经元胞体及其树突野显著肥大。(在具有两只小螯足的雌性招潮蟹中,神经节两侧的运动神经元大小相似。)由于每个神经节两半部分运动神经元胞体的数量和分布相对恒定,因此可以识别单个或成组神经元的同源性。在适当按面积缩放的随机样本中,雄性招潮蟹大螯足一侧整个神经根横截面拼贴中的轴突轮廓数量,是小螯足一侧的数倍。在面积相等的样本中,大、小螯足两侧的轴突密度相似,轴突直径范围也相似;这两者均表明对侧神经根之间的轴突大小没有差异。因此,大螯足一侧神经根的增大是由于轴突数量的相对增加。这种增加发生在感觉纤维中,因为运动纤维的数量在两侧是恒定的。因此,雄性招潮蟹的神经不对称涉及运动神经元的肥大以及与大螯足增大状态相关的感觉神经元的增生。

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