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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Cortical and subcortical influences on the nucleus of the optic tract of the opossum.
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Cortical and subcortical influences on the nucleus of the optic tract of the opossum.

机译:皮层和皮层下层对负鼠视神经束核的影响。

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In the present work we propose a new phylogenetic hypothesis for the role played by cortical and subcortical afferents to the nucleus of the optical tract, the main visual relay station of the horizontal optokinetic reflex in mammals. The hypothesis is supported by anatomical and physiological data obtained in the South American opossum (Didelphis aurita) using the following experimental approaches: (i) single-unit recordings in the nucleus of the optic tract and simultaneous electrical stimulation of the contralateral nucleus of the optic tract; (ii) single-unit recordings in the nucleus of the optic tract and simultaneous electrical stimulation of the ipsilateral striate cortex; (iii) injection of cholera toxin subunit B into the striate cortex and subsequent immunohistochemical reaction to reveal the presence of the marker in the thalamus and mesencephalon; and (iv) single-unit recordings in the nucleus of the optic tract both before and after ablation of the ipsilateral visual cortex. The main results are: (i) there is a strong inhibitory reciprocal effect upon the nucleus of the optic tract following stimulation of its contralateral counterpart; (ii) electrophysiological and anatomical data imply that the visual cortex does not project directly to the nucleus of the optic tract. Rather, cortical terminals seem to target the nearby anterior and posterior pretectal nuclei and orthodromic latencies in the nucleus of the optic tract following stimulation of the visual cortex were twice as large as in the superior colicullus; and (iii) ablation of the entire visual cortex did not have any effect upon binocularity of cells in the nucleus of the optic tract. These results strengthen the model proposed here for the role of the interactions between the nuclei of the optic tract under optokinetic stimulation. The hypothesis in the present work is that the cortical influences upon the nucleus of the optical tract, in addition to the subcortical ones, appeared only recently in phylogenesis. In more primitive mammals, such as the opossum, subcortical interactions are thought to play a relatively important role. With the emergence of retinal specializations, such as the fovea, one might suppose that there followed the appearance of new ocular movements, such as the smooth pursuit and certain types of saccades, that came to join the pre-existent optokinetic reflex.
机译:在当前的工作中,我们提出了一个新的系统发育假说,以说明皮质和皮质下传入神经对视线核(哺乳动物水平视动反射的主要视觉中继​​站)的作用。该假设得到了南美负鼠(Didelphis aurita)使用以下实验方法获得的解剖学和生理学数据的支持:(i)视神经束核中的单个单位记录,以及对视神经对侧核的同时电刺激道(ii)视神经束核中的单单位记录,以及同侧条纹状皮层的同时电刺激; (iii)将霍乱毒素B亚单位注射到纹状体皮层中,随后进行免疫组织化学反应,以揭示丘脑和中脑中该标记物的存在; (iv)在消融同侧视觉皮层之前和之后,在视神经道核中的单单位记录。主要结果是:(i)刺激对侧对应物后,对视神经道核产生强烈的相互抑制作用; (ii)电生理和解剖学数据暗示视觉皮层并不直接投射到视神经核。相反,皮层末端似乎以附近的前和后直肠前核为目标,视觉皮层刺激后视神经道的正畸潜伏期是上层大肠菌层的两倍。 (iii)切除整个视觉皮层对视神经道细胞核的双目性没有任何影响。这些结果加强了在此提出的模型,用于模型在视动刺激下视神经核之间相互作用的作用。本研究的假设是,除了皮层下皮层外,皮层对视线核的影响仅在系统发育中才出现。在负鼠等更原始的哺乳动物中,皮质下相互作用被认为起着相对重要的作用。随着视网膜专科的出现,例如中央凹,人们可能会认为随之而来的是新的眼动运动的出现,例如平滑的追求和某些类型的扫视,这些运动都加入了已有的视动反射。

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