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蜘蛛关节感受器及相关突触的精细结构。

Fine structure of a spider joint receptor and associated synapses.

作者信息

Foelix R F, Choms A

出版信息

Eur J Cell Biol. 1979 Jun;19(2):149-59.

PMID:467460
Abstract

The fine structure of a joint receptor (R10) in a spider leg (Zygiella x-notata) was examined with light and electron microscopy. The R10 receptor consists of a compact ganglion which is situated near the dorsal joint membrane of the femur/patella joint. Each of the ten sensory cells comprising the ganglion sends one branching dendrite into the hypodermis underlying the joint membrane. All dendritic branches together form a sheet-like meshwork 50 microns wide and 1 microns thick, which is traversed obliquely by hypodermis cells. When the joint is stretched shearing forces are apparently transmitted to the receptive dendritic branches via microtubular bundles inside the hypodermis cells. The soma and dendrites of the sensory cells receive numerous synaptic input from presumably efferent fibres. The fine structure of these synapses is described and compared with other peripheral and central spider synapses. All R10 synapses contain small synaptic vesicles (32 nm diameter), whereas motor endplates possess large vesicles (38 nm). Central synapses have two significantly different vesicle populations which are either of the small or large variety. Since synapses with small vesicles are supposedly inhibitory, receptor cells in spiders might be under efferent control. Such a system is unknown in insects or crustaceans, but may be typical for arachnids.

摘要

利用光学显微镜和电子显微镜对蜘蛛(十字园蛛)腿部的一种关节感受器(R10)的精细结构进行了研究。R10感受器由一个紧密的神经节组成,该神经节位于股骨/髌骨关节的背侧关节膜附近。组成神经节的十个感觉细胞中的每一个都向关节膜下方的皮下组织发出一个分支树突。所有的树突分支共同形成一个宽50微米、厚1微米的片状网络,皮下组织细胞斜穿过该网络。当关节伸展时,剪切力显然通过皮下组织细胞内的微管束传递到感受性树突分支。感觉细胞的胞体和树突接受来自推测为传出纤维的大量突触输入。描述了这些突触的精细结构,并与其他外周和中枢蜘蛛突触进行了比较。所有R10突触都含有小突触小泡(直径32纳米),而运动终板则含有大突触小泡(直径38纳米)。中枢突触有两种明显不同的突触小泡群体,即小的或大的类型。由于含有小突触小泡的突触据推测是抑制性的,蜘蛛中的感受器细胞可能受传出控制。这样的系统在昆虫或甲壳类动物中是未知的,但可能是蛛形纲动物的典型特征。

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