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响尾蛇中顶盖-圆核-端脑通路:红外感觉在前脑存在表征的证据。

A tecto-rotundo-telencephalic pathway in the rattlesnake: evidence for a forebrain representation of the infrared sense.

作者信息

Berson D M, Hartline P H

机构信息

Eye Research Institute of Retina Foundation, Boston, Massachusetts 02114.

出版信息

J Neurosci. 1988 Mar;8(3):1074-88. doi: 10.1523/JNEUROSCI.08-03-01074.1988.

Abstract

Rattlesnakes possess a sensory system specialized for the detection of infrared (IR) radiation. IR signals ascend as far as the optic tectum, where they generate a spatiotopic map. It is unknown if such signals reach the forebrain, but the existence of prominent tectothalamic pathways in other vertebrates makes this a distinct possibility. In nonmammalian forms, the major target of ascending tectal visual signals is nucleus rotundus, a thalamic nucleus that projects in turn to the subpallial telencephalon. We sought to determine whether a tecto-rotundo-telencephalic system exists in rattlesnakes and, if so, whether it carries IR as well as visual information. We have identified a thalamic nucleus in the rattlesnake Crotalus viridis that matches the n. rotundus of other reptiles in its topographic location, cytoarchitecture, and connections. Using anterograde and retrograde transport of HRP, we have demonstrated a strong ipsilateral and weaker contralateral tectorotundal projection. Tectorotundal cells lay primarily in the deeper tectal layers, which receive input from the IR system, but also in the superficial, visual layers. In n. rotundus, single units recorded extracellularly invariably responded to visual stimuli, but many were also sensitive to unimodal IR stimuli. IR and visual receptive fields were very large and often bilateral. Some rotundal units appeared sensitive to substrate vibration. Most habituated rapidly. Nucleus rotundus was found to project to a sector of the ipsilateral anterior dorsal ventricular ridge (ADVR) of the telencephalon. Single units in this region of the ADVR resembled those in rotundus, responding to visual, IR, and/or vibrational stimuli and possessing large, often bilateral receptive fields. These findings demonstrate the existence of a tecto-rotundo-telencephalic pathway in rattlesnakes and suggest that this system conveys IR as well as visual information to the forebrain. Ascending tectofugal pathways have been implicated in the discrimination of form. Thus, pattern recognition may have to be added to orientation as a proper function of the IR system of pit vipers.

摘要

响尾蛇拥有一个专门用于探测红外(IR)辐射的感觉系统。红外信号一直上升到视顶盖,在那里它们产生一个空间拓扑图。目前尚不清楚这样的信号是否能到达前脑,但其他脊椎动物中显著的顶盖丘脑通路的存在使得这种可能性很大。在非哺乳动物中,上升的顶盖视觉信号的主要目标是圆核,这是一个丘脑核,它又投射到皮质下的端脑。我们试图确定响尾蛇中是否存在顶盖 - 圆核 - 端脑系统,如果存在,它是否携带红外信息以及视觉信息。我们在响尾蛇绿曼巴(Crotalus viridis)中确定了一个丘脑核,其在地形位置、细胞结构和连接方面与其他爬行动物的圆核相匹配。利用辣根过氧化物酶(HRP)的顺行和逆行运输,我们证明了存在强烈的同侧和较弱的对侧顶盖 - 圆核投射。顶盖 - 圆核细胞主要位于顶盖较深的层中,这些层接收来自红外系统的输入,但也存在于浅层的视觉层中。在圆核中,细胞外记录的单个单元总是对视觉刺激有反应,但许多单元也对单峰红外刺激敏感。红外和视觉感受野非常大,而且通常是双侧的。一些圆核单元似乎对底物振动敏感。大多数单元迅速产生习惯化。发现圆核投射到端脑同侧前背侧室嵴(ADVR)的一个区域。ADVR这个区域的单个单元与圆核中的单元相似,对视觉、红外和/或振动刺激有反应,并且具有大的、通常是双侧的感受野。这些发现证明了响尾蛇中存在顶盖 - 圆核 - 端脑通路,并表明该系统将红外信息以及视觉信息传递到前脑。上升的离顶盖通路与形状辨别有关。因此,模式识别可能必须作为蝰蛇红外系统的一个适当功能,添加到定向功能中。

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