简单脊椎动物光感受器系统的信号处理:硬骨鱼的松果体器官。

Physiologia Bohemoslovaca Pub Date : 1989-01-01
P Ekström, H Meissl
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引用次数: 0

摘要

本文采用多学科方法研究了松果体光感觉器官在环境光照变化下所诱发的神经信号的集成电路和传出通路。用辣根过氧化物酶(HRP)逆行填充的方法鉴定顶骨内传出神经元。除了几种类型的神经元外,还观察到通过松果体束向大脑发射轴突的感光细胞。通过免疫细胞化学方法确定了几种局部中间神经元(推测胆碱能、gaba能和含p物质)和可能的传入中枢神经(推测去甲肾上腺素能和多肽能)的存在。通过细胞内记录的方法研究了松果体感觉和神经细胞对光刺激的反应,从而揭示了神经信号处理的解剖学基础。成功记录后,细胞内注射HRP或Lucifer Yellow CH,用于随后的光镜或电镜检查。这些记录表明存在至少两种类型的感光细胞,它们显示出视网膜杆状细胞和视锥细胞的形态和生理特征。此外,还发现了一种(保留符号的)中间神经元。因此,光感觉松果体器官具有一个整合的神经回路,可能参与向大脑传递神经信号,和/或参与对针尖内功能的局部控制,例如吲哚胺合成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Signal processing in a simple vertebrate photoreceptor system: the teleost pineal organ.

The integrating circuitry and efferent pathways for neural signals evoked in the photosensory pineal organ by changes in ambient illumination have been investigated by a multidisciplinary approach. Intrapineal efferent neurons were identified by means of retrograde filling with horseradish peroxidase (HRP). In addition to several types of neurons, photoreceptor cells that emitted axons to the brain via the pineal tract were observed. The presence of several populations of local interneurons (putatively cholinergic, GABAergic and substance P-containing) and possible afferent (putatively noradrenergic and peptidergic) central innervations were established by means of immunocytochemistry. The anatomical substrate for processing of neural signals thus delineated, the responses of pineal sensory and neural elements to photic stimulation were investigated by means of intracellular recording. Successful recordings were followed by intracellular injection with HRP or Lucifer Yellow CH, for subsequent light or electron microscopical investigation. The recordings indicate the presence of at least two types of photoreceptor cells, that display morphological and physiological features of both retinal rods and cones. In addition, one type of (sign-conserving) interneuron was identified. The photosensory pineal organ thus possess an integrative neural circuitry that may be involved in the elaboration of neural signals to the brain, and/or in the local control of intrapineal functions, e.g. indoleamine synthesis.

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