Suppr超能文献

巨型轴突与邓氏真桨水母(栉水母纲:球栉水母目)的逃避游泳行为

Giant Axons and Escape Swimming in Euplokamis dunlapae (Ctenophora: Cydippida).

作者信息

Mackie G O, Mills C E, Singla C L

出版信息

Biol Bull. 1992 Apr;182(2):248-256. doi: 10.2307/1542118.

Abstract

Euplokamis dunlapae responds to anterior stimulation by reversing the beat direction of its comb plate cilia and swimming rapidly backwards. It responds to posterior stimulation by swimming forwards at an accelerated rate. Video playback and laser monitoring were used to analyze changes in the pattern of ciliary beating, while electrical activity was recorded extracellularly. Escape responses occur with latencies of less than 150 ms and involve greatly increased ciliary beat frequencies. Giant axons run longitudinally along each of the eight comb rows, as shown by optical and electron microscopy. They form chains of overlapping neurons, with diameters of about 12 μm in life, and conducting at over 50 cm · s-1 as recorded with an extracellular electrode placed directly over the chain. The giant neurons are synaptically linked with smaller neurites of the general ectodermal nerve plexus, with each other, and with the ciliated cells of the comb plates. They appear to constitute a single system mediating rapid conduction of signals in either direction, but a full analysis was not attempted for lack of sufficient material. Electro-physiological examination of two other ctenophores (Pleurobrachia and Beroe) gives no indication of rapid conduction pathways, and these forms probably lack giant axons.

摘要

邓氏真枝螅通过反转栉板纤毛的摆动方向并快速向后游动来响应前部刺激。它通过加速向前游动来响应后部刺激。利用视频回放和激光监测来分析纤毛摆动模式的变化,同时在细胞外记录电活动。逃避反应的潜伏期小于150毫秒,且涉及纤毛摆动频率大幅增加。如光学显微镜和电子显微镜所示,巨大轴突沿着八条栉板行中的每一行纵向延伸。它们形成重叠神经元链,活体中直径约为12微米,用直接置于链上的细胞外电极记录时,传导速度超过50厘米·秒-1。这些巨大神经元与一般外胚层神经丛的较小神经突、彼此以及栉板的纤毛细胞形成突触连接。它们似乎构成了一个单一系统,介导信号在两个方向上的快速传导,但由于缺乏足够的材料,未进行全面分析。对另外两种栉水母(侧腕水母和波吕斐摩斯水母)的电生理检查未发现快速传导途径的迹象,这些种类可能没有巨大轴突。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验