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电鱼(长颌鱼科)电感觉叶的体外研究:细胞与神经回路的形态学

Mormyrid electrosensory lobe in vitro: morphology of cells and circuits.

作者信息

Han V Z, Bell C C, Grant K, Sugawara Y

机构信息

Neurological Sciences Institute, Oregon Health Science University, Portland 97209, USA.

出版信息

J Comp Neurol. 1999 Feb 15;404(3):359-74. doi: 10.1002/(sici)1096-9861(19990215)404:3<359::aid-cne6>3.0.co;2-1.

Abstract

The electrosensory lobe (ELL) of mormyrid electric fish is a cerebellum-like brainstem structure that receives the primary afferent fibers from electroreceptors in the skin. The ELL and similar sensory structures in other fish receive extensive input from other central sources in addition to the peripheral input. The responses to some of these central inputs are adaptive and serve to minimize the effects of predictable sensory inputs. Understanding the interaction between peripheral and central inputs to the mormyrid ELL requires knowledge of its functional circuitry, and this paper examines this circuitry in the in vitro slice preparation and describes the axonal and dendritic morphology of major ELL cell types based on intracellular labeling with biocytin. The cells described include medium ganglion cells, large ganglion cells, large fusiform cells, thick-smooth dendrite cells, small fusiform cells, granule cells, and primary afferent fibers. The medium ganglion cells are Purkinje-like interneurons that terminate on the two types of efferent cells, i.e., large ganglion and large fusiform cells, as well as on each other. These medium ganglion cells fall into two morphologically distinct types based on the distributions of basal dendrites and axons. These distributions suggest hypotheses about the basic circuit of the ELL that have important functional consequences, such as enhancement of contrast between "on" elements that are excited by increased afferent activity and "off" elements that are inhibited.

摘要

长颌鱼科电鱼的电感受叶(ELL)是一种类似小脑的脑干结构,它接收来自皮肤电感受器的初级传入纤维。ELL以及其他鱼类中的类似感觉结构,除了外周输入外,还接收来自其他中枢源的大量输入。对其中一些中枢输入的反应具有适应性,有助于将可预测的感觉输入的影响降至最低。了解长颌鱼科ELL的外周和中枢输入之间的相互作用需要了解其功能电路,本文在体外脑片制备中研究了该电路,并基于生物素细胞内标记描述了主要ELL细胞类型的轴突和树突形态。所描述的细胞包括中型神经节细胞、大型神经节细胞、大型梭形细胞、粗平滑树突细胞、小型梭形细胞、颗粒细胞和初级传入纤维。中型神经节细胞是类似浦肯野细胞的中间神经元,它们终止于两种传出细胞类型,即大型神经节细胞和大型梭形细胞,以及彼此之间。基于基底树突和轴突的分布,这些中型神经节细胞可分为两种形态上不同的类型。这些分布提出了关于ELL基本电路的假设,这些假设具有重要的功能后果,例如增强由传入活动增加所兴奋的“开”元件与被抑制的“关”元件之间的对比度。

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