首页> 外文期刊>Journal of Morphology >The sensory epithelium of the tentacles and the rhinophore of Nautilus pompilius L. (cephalopoda, nautiloidea).
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The sensory epithelium of the tentacles and the rhinophore of Nautilus pompilius L. (cephalopoda, nautiloidea).

机译:触角的感官上皮和鹦鹉螺的鹦鹉螺(头足纲,鹦鹉螺)。

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摘要

Nine intraepithelial ciliated cell types that are presumed to be sensory cells were identified in the epithelium of the pre- and postocular tentacles, the digital tentacles, and the rhinophore of the juvenile tetrabranchiate cephalopod Nautilus pompilius L. The morphological diversity and specialization in distribution of the different ciliated cell types analyzed by SEM methods suggest that these cells include receptors of several sensory functions. Ciliated cell types in different organs that show similar surface features were combined in named groups. The most striking cell, type I, is characterized by a tuft of long and numerous cilia. The highest density of this cell type occurs in ciliary fields in the epithelium of the lamellae of the pre- and postocular tentacles, in the olfactory pits of the rhinophores, and in the lamellae of four pairs of lateral digital tentacles, but not in the epithelium of the medial digital tentacles. The similar morphological data, together with behavioral observations on feeding habits, suggest that this cell type may serve in long-distance chemosensory function. The other ciliated cell types are solitary cells with specific spatial distributions in the various organs. Cell types with tufts of relatively short, stiff cilia (types III, IV, VIII), which are distributed in the lateral and aboral areas of the tentacles and at the base of the tentacle-like process of the rhinophore, are considered to be employed in mechanosensory transduction, while the solitary cells with bristle-like cilia at the margin of the ciliary fields (type II) and at the base of the rhinophore (type IX) may be involved in chemoreception. Histological investigation of the epithelium and the nerve structures of the different organs shows the proportion and distribution of the sensory pathways. Two different types of digital tentacles can be distinguished according to their putative functions: lateral slender digital tentacles in four pairs, of which the lowermost are the so-called long digital tentacles, participate in distance chemoreception, and the medial digital tentacles, whose terminal axial nerve cord may represent a specialized neuromechanosensory structure, appear to have contact chemoreceptive abilities. Copyright 2002 Wiley-Liss, Inc.
机译:在眼前和眼后触手,数字触手以及幼年四支臂状头足纲鹦鹉螺鹦鹉螺的犀牛的上皮中鉴定出九种被认为是感觉细胞的上皮内纤毛细胞类型。形态多样性和分布的专门化通过SEM方法分析的不同纤毛细胞类型表明,这些细胞包括几种感觉功能的受体。将具有相似表面特征的不同器官中的纤毛细胞类型组合在命名组中。最醒目的细胞是I型,其特征是一簇簇长而纤长的纤毛。这种细胞类型的最高密度发生在眼前和眼后触角片状上皮,鼻红细胞的嗅觉窝以及四对侧向数字触角的片状睫状体中,而不是在上皮中。内侧的数字触角。相似的形态学数据以及对进食习惯的行为观察表明,这种细胞类型可能在远距离化学感应功能中发挥作用。其他纤毛细胞类型是在各个器官中具有特定空间分布的单细胞。认为使用的是簇状的,相对短而坚硬的纤毛的细胞类型(III,IV,VIII型),它们分布在触角的侧面和底部区域以及犀牛触手状突起的底部。在机械感官转导中,在睫状区边缘(II型)和在鼻炎的根部(IX型)具有刷毛状纤毛的孤立细胞可能参与化学感受。对不同器官的上皮和神经结构的组织学研究显示了感觉途径的比例和分布。可以根据其推定功能区分两种不同类型的数字触手:四对外侧细长的数字触手,其中最下方的是参与距离化学感受的所谓长数字触手,而末端数字轴向触手的内侧数字触手神经索可能代表特殊的神经机械感觉结构,似乎具有接触化学感受能力。版权所有2002 Wiley-Liss,Inc.

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