Momose-Sato Y, Sato K, Kamino K
Department of Physiology, Tokyo Medical and Dental University School of Medicine, Japan.
Prog Neurobiol. 2001 Feb;63(2):151-97. doi: 10.1016/s0301-0082(00)00023-x.
The ontogenetic approach to physiological events is a useful strategy for understanding the functional organization/architecture of the vertebrate brainstem. However, conventional electrophysiological techniques are difficult or impossible to employ in the early embryonic central nervous system. Optical techniques using voltage-sensitive dyes have made it possible to monitor neural activities from multiple regions of living systems, and have proven to be a useful tool for analyzing the embryogenetic expression of brainstem neural function. This review describes recent progress in optical studies made on embryonic chick and rat brainstems. Several technical issues concerning optical recording from the embryonic brainstem preparations are discussed, and characteristics of the optical signals evoked by cranial nerve stimulation or occurring spontaneously are described. Special attention is paid to the chronological analyses of embryogenetic expression of brainstem function and to the spatial patterning of the functional organization/architecture of the brainstem nuclei. In addition, optical analyses of glutamate, GABA, and glycine receptor functions during embryogenesis are described in detail for the chick nucleus tractus solitarius. This review also discusses intrinsic optical signals associated with neuronal depolarization. Some emphases are also placed on the physiological properties of embryonic brainstem neurons, which may be of interest from the viewpoint of developmental neurobiology.
从个体发生学角度研究生理事件是理解脊椎动物脑干功能组织/结构的一种有用策略。然而,传统的电生理技术很难或无法应用于早期胚胎中枢神经系统。使用电压敏感染料的光学技术使得从活体系统的多个区域监测神经活动成为可能,并且已被证明是分析脑干神经功能胚胎发生表达的有用工具。这篇综述描述了对胚胎期鸡和大鼠脑干进行光学研究的最新进展。讨论了与从胚胎脑干标本进行光学记录相关的几个技术问题,并描述了由颅神经刺激诱发或自发出现的光学信号的特征。特别关注脑干功能胚胎发生表达的时间顺序分析以及脑干核团功能组织/结构的空间模式。此外,详细描述了鸡孤束核胚胎发育过程中谷氨酸、γ-氨基丁酸和甘氨酸受体功能的光学分析。这篇综述还讨论了与神经元去极化相关的内在光学信号。同时也着重介绍了胚胎脑干神经元的生理特性,从发育神经生物学的角度来看,这些特性可能会引起人们的兴趣。