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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Nerve terminals of mucous gland electroreceptors in the platypus (Ornithorhynchus anatinus).
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Nerve terminals of mucous gland electroreceptors in the platypus (Ornithorhynchus anatinus).

机译:鸭嘴兽(Ornithorhynchus anatinus)的黏液腺电感受器的神经末梢。

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摘要

Platypus mucous gland electroreceptors differ from electroreceptors described for fish in that they lack an associated specialized sensory cell. Thus a bare nerve terminal is used to detect electrical stimuli, and also to generate local and action potentials. Previous studies have identified these terminals (an average of 16 per mucous gland), but had not shown whether the terminals have direct contact with the duct of the mucous gland. This poses the problem of how the electrical stimulus reaches the nerve terminals. This study demonstrates the portions of the nerve terminals responsible for electroreception, and shows how these portions use the surrounding epidermal tissue to overcome the combined problems of lacking a sensory cell and making physical contact with the conducting medium in the duct of the gland. A terminal axonal filament is described which accommodates for these problems, the terminal filament provides a low-resistance pathway for the electrical stimuli, and is embedded with its proximal and distal portions in high and low resistance epidermis, respectively. Lateral interactions occur between adjacent terminal filaments via a plexus that is directed circumferentially around the duct from the proximal portion of the terminal filament. These circumferential arbors form an interconnecting ring between all 16 terminal filaments, and may be used to lower the signal-to-noise ratio of the electroreceptor and thus enhance overall sensitivity.
机译:鸭嘴兽粘液腺感受器与鱼类描述的感受器不同,因为它们缺乏相关的专门感觉细胞。因此,裸露的神经末梢用于检测电刺激,并产生局部和动作电位。先前的研究已经确定了这些末端(每个粘液腺平均16个),但是尚未显示末端是否与粘液腺导管直接接触。这带来了电刺激如何到达神经末梢的问题。这项研究演示了负责电感受的神经末梢部分,并展示了这些部分如何利用周围的表皮组织来克服缺少感觉细胞和与腺管中的传导介质发生物理接触的综合问题。描述了一种适应这些问题的轴突终末丝,该终末轴丝为电刺激提供了低电阻路径,并以其近端和远端部分分别嵌入高电阻表皮和低电阻表皮中。相邻的末端细丝之间发生横向相互作用,该丛从末端细丝的近端部分围绕导管沿周向定向。这些圆周轴在所有16个端子细丝之间形成一个互连环,可以用来降低电感受器的信噪比,从而提高整体灵敏度。

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