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日本丛林鸦(Corvus macrorhynchos)鼻腔和嗅球的组织学特性

Histological properties of the nasal cavity and olfactory bulb of the Japanese jungle crow Corvus macrorhynchos.

作者信息

Yokosuka Makoto, Hagiwara Akiko, Saito Toru R, Tsukahara Naoki, Aoyama Masato, Wakabayashi Yoshihiro, Sugita Shoei, Ichikawa Masumi

机构信息

Department of Comparative and Behavior Medicine, Faculty of Veterinary Medicine, Nippon Veterinary and Life Science University, Musashino, Tokyo 180-8602, Japan.

出版信息

Chem Senses. 2009 Sep;34(7):581-93. doi: 10.1093/chemse/bjp040. Epub 2009 Jul 20.

Abstract

The nasal cavity and olfactory bulb (OB) of the Japanese jungle crow (Corvus macrorhynchos) were studied using computed tomography (CT) and histochemical staining. The nasal septum divided the nasal cavity in half. The anterior and maxillary conchae were present on both sides of the nasal cavity, but the posterior concha was indistinct. A small OB was present on the ventral surface of the periphery of the cerebrum. The OB-brain ratio--the ratio of the size of the OB to that of the cerebral hemisphere--was 6.13. The olfactory nerve bundles projected independently to the OB, which appeared fused on gross examination. Histochemical analysis confirmed the fusion of all OB layers. Using a neural tracer, we found that the olfactory nerve bundles independently projected to the olfactory nerve layer (ONL) and glomerular layer (GL) of the left and right halves of the fused OB. Only 4 of 21 lectins bound to the ONL and GL. Thus, compared with mammals and other birds, the jungle crow may have a poorly developed olfactory system and an inferior sense of olfaction. However, it has been contended recently that the olfactory abilities of birds cannot be judged from anatomical findings alone. Our results indicate that the olfactory system of the jungle crow is an interesting research model to evaluate the development and functions of vertebrate olfactory systems.

摘要

利用计算机断层扫描(CT)和组织化学染色对日本丛林鸦(Corvus macrorhynchos)的鼻腔和嗅球(OB)进行了研究。鼻中隔将鼻腔分为两半。鼻腔两侧均有前鼻甲和上颌鼻甲,但后鼻甲不明显。在大脑外周腹侧表面有一个小的嗅球。嗅球-脑比例(即嗅球大小与大脑半球大小的比例)为6.13。嗅神经束独立投射到嗅球,在大体检查时看起来是融合的。组织化学分析证实了嗅球所有层的融合。使用神经示踪剂,我们发现嗅神经束独立投射到融合嗅球左右两半的嗅神经层(ONL)和肾小球层(GL)。21种凝集素中只有4种与ONL和GL结合。因此,与哺乳动物和其他鸟类相比,丛林鸦的嗅觉系统可能发育不良,嗅觉较差。然而,最近有人认为,不能仅从解剖学发现来判断鸟类的嗅觉能力。我们的结果表明,丛林鸦的嗅觉系统是评估脊椎动物嗅觉系统发育和功能的一个有趣的研究模型。

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