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仓鼠上丘层间连接的功能影响。

Functional influence of interlaminar connections in the hamster's superior colliculus.

作者信息

Mooney R D, Huang X, Rhoades R W

机构信息

Department of Anatomy, Medical College of Ohio, Toledo 43699.

出版信息

J Neurosci. 1992 Jun;12(6):2417-32. doi: 10.1523/JNEUROSCI.12-06-02417.1992.

Abstract

The aim of this study was to determine the functional importance of intrinsic connections within the hamster's superior colliculus (SC) in the development of the visual responses of neurons in the deep layers of this nucleus. We used localized injections of lidocaine to block action potentials of fibers that passed through the superficial layers and injections of CoCl2 to block synaptic transmission in these layers. We also determined the morphology of a number of the deep layer cells recorded in these experiments by intracellular injection of HRP. Injection of lidocaine into the superficial layers completely abolished the visual- and/or optic chiasm-evoked responses of all 40 deep layer cells tested. Thus, fibers that either pass through or synapse in the superficial layers are necessary for the visual responses of deep layer neurons. Injections of CoCl2 restricted to the superficial layers significantly reduced the visual responsivity of 86% of 92 deep layer neurons tested and abolished the visual responses of 68% of these cells. Superficial layer injections of CoCl2 were equally effective in reducing the responses of neurons with dendrites that ascended into the superficial layers (all seven cells tested and recovered) and those of cells with dendrites restricted to the deep layers (six of seven cells tested and recovered). Injections of CoCl2 into the deep layers, in the region of the cell being recorded, significantly reduced the visual responses of 59% of 37 cells and abolished the visual responses of 40% of the neurons tested. Deep CoCl2 injections abolished the visual responses of three of four cells with dendrites restricted to the deep layers and only one of four cells with dendrites that ascended into the superficial layers. These results indicate that descending interlaminar axons from visually responsive superficial layer cells may be responsible for the visual responsivity of most neurons in the deep SC layers of hamster. Also, some deep layer neurons in this species may receive effective visual input through their dendrites that ascend into the superficial layers, where they are likely to be contacted by retinal axons or axon collaterals of superficial layer cells.

摘要

本研究的目的是确定仓鼠上丘(SC)内固有连接在该核深层神经元视觉反应发育中的功能重要性。我们使用局部注射利多卡因来阻断穿过浅层的纤维的动作电位,并注射氯化钴来阻断这些层中的突触传递。我们还通过细胞内注射辣根过氧化物酶(HRP)确定了这些实验中记录的一些深层细胞的形态。向浅层注射利多卡因完全消除了所有40个受试深层细胞的视觉和/或视交叉诱发反应。因此,穿过浅层或在浅层形成突触的纤维对于深层神经元的视觉反应是必需的。仅向浅层注射氯化钴显著降低了92个受试深层神经元中86%的视觉反应性,并消除了其中68%细胞的视觉反应。向浅层注射氯化钴在降低具有升入浅层的树突的神经元(所有7个受试细胞并恢复)和树突仅限于深层的细胞(7个受试细胞中的6个并恢复)的反应方面同样有效。在记录细胞的区域向深层注射氯化钴显著降低了37个细胞中59%的视觉反应,并消除了40%受试神经元的视觉反应。深层注射氯化钴消除了树突仅限于深层的4个细胞中的3个以及树突升入浅层的4个细胞中的1个的视觉反应。这些结果表明,来自视觉反应性浅层细胞的下行层间轴突可能是仓鼠上丘深层大多数神经元视觉反应性的原因。此外,该物种中的一些深层神经元可能通过其升入浅层的树突接受有效的视觉输入,在浅层它们可能与视网膜轴突或浅层细胞的轴突侧支接触。

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