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美洲黄盖鲽(Pseudopleuronectes americanus)大脑中嗅觉系统的不对称性。

Asymmetry of the olfactory system in the brain of the winter flounder, Pseudopleuronectes americanus.

作者信息

Prasada Rao P D, Finger T E

出版信息

J Comp Neurol. 1984 Jun 1;225(4):492-510. doi: 10.1002/cne.902250403.

Abstract

Adult flatfishes exhibit grossly asymmetric external morphology. Even the olfactory apparatus is asymmetric, being larger on the upward-facing side. We undertook the present study on the winter flounder, Pseudopleuronectes americanus, to examine whether the asymmetry of the peripheral olfactory system is maintained in its central organization. In winter flounder, the right olfactory organ, nerve, and bulb are larger than the contralateral counterparts. In addition, the right telencephalon is about 8% larger than the left. Horseradish peroxidase (HRP) and degeneration techniques were used to trace the central connections of the olfactory bulbs. Neurons afferent to the olfactory bulb occur bilaterally in the telencephalon and mesencephalic tegmentum. Afferent neurons are also present at the junction between the posterodorsal bulb and telencephalon, in the basal preoptic region, nucleus of the posterior tuber, locus coeruleus, raphe nucleus, and the contralateral bulb. Each olfactory bulb projects bilaterally to several restricted areas of the telencephalon, the posterodorsal neurons of the nucleus preopticus and the tuberal region, with ipsilateral connections being heavier in all areas. Corresponding to the differences in the peripheral olfactory apparatus, the central olfactory projections were also asymmetric. The right olfactory bulb projects to 2.6% of the ipsilateral telencephalon and 1.99% of the contralateral telencephalon. The left bulb projects to 1.8% of the ipsilateral and 0.6% of the contralateral telencephalic hemisphere. Thus the left telencephalon receives roughly equal olfactory input from the two sides, while the right telencephalon receives vastly more input from the right olfactory system. The asymmetry in the projections of the right and left bulbs may be due to differential postmetamorphic growth of the olfactory system on the two sides.

摘要

成年比目鱼呈现出明显不对称的外部形态。甚至嗅觉器官也是不对称的,朝上一侧的嗅觉器官更大。我们以美洲黄盖鲽(Pseudopleuronectes americanus)为研究对象进行了本研究,以检验外周嗅觉系统的不对称性在其中枢结构中是否得以维持。在美洲黄盖鲽中,右侧的嗅觉器官、神经和嗅球比相对应的左侧部分更大。此外,右侧端脑比左侧大约大8%。使用辣根过氧化物酶(HRP)和变性技术来追踪嗅球的中枢连接。传入嗅球的神经元双侧分布于端脑和中脑被盖。在背侧后嗅球与端脑的交界处、视前区基部、后结节核、蓝斑、中缝核以及对侧嗅球中也存在传入神经元。每个嗅球双侧投射至端脑的几个特定区域、视前核的背侧后神经元以及结节区,在所有区域中同侧连接更为密集。与外周嗅觉器官的差异相对应,中枢嗅觉投射也是不对称的。右侧嗅球投射至同侧端脑的2.6%以及对侧端脑的1.99%。左侧嗅球投射至同侧端脑的1.8%以及对侧端脑半球的0.6%。因此,左侧端脑从两侧接收大致相等的嗅觉输入,而右侧端脑从右侧嗅觉系统接收的输入要多得多。左右嗅球投射的不对称可能是由于两侧嗅觉系统在变态后生长的差异所致。

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