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啮齿动物上丘浅层和中间层不同的局部回路特性。

Distinct local circuit properties of the superficial and intermediate layers of the rodent superior colliculus.

作者信息

Phongphanphanee Penphimon, Marino Robert A, Kaneda Katsuyuki, Yanagawa Yuchio, Munoz Douglas P, Isa Tadashi

机构信息

Department of Developmental Physiology, National Institute of Physiological Sciences, Myodaiji, Okazaki, 444-8585, Japan.

出版信息

Eur J Neurosci. 2014 Jul;40(2):2329-43. doi: 10.1111/ejn.12579. Epub 2014 Apr 8.

Abstract

The superior colliculus (SC) is critical in localizing salient visual stimuli and making decisions on the location of the next saccade. Lateral interactions across the spatial map of the SC are hypothesized to help mediate these processes. Here, we investigate lateral interactions within the SC by applying whole-cell recordings in horizontal slices of mouse SC, which maintained the local structure of the superficial (SCs) visual layer, which is hypothesized to participate in localizing salient stimuli, and the intermediate (SCi) layer, which is supposed to participate in saccade decision-making. When effects of either electrical or chemical (uncaging of free glutamate) stimuli were applied to multiple sites with various distances from the recorded cell, a pattern of center excitation-surround inhibition was found to be prominent in SCs. When the interactions of synaptic effects induced by simultaneous stimulation of two sites were tested, non-linear facilitatory or inhibitory interactions were observed. In contrast, in the SCi, stimulation induced mainly excitation, which masked underlying inhibition. The excitatory synaptic effects of stimulation applied at remote sites were summed in a near linear manner. The result suggested that SCs lateral interactions appear suitable for localizing salient stimuli, while the lateral interactions within SCi are more suitable for faithfully accumulating subthreshold signals for saccadic decision-making. Implementation of this laminar-specific organization makes the SC a unique structure for serially processing signals for saliency localization and saccadic decision-making.

摘要

上丘(SC)对于定位显著视觉刺激并决定下一次扫视的位置至关重要。据推测,上丘空间图谱中的横向相互作用有助于介导这些过程。在这里,我们通过在小鼠上丘水平切片中进行全细胞记录来研究上丘内的横向相互作用,该切片保留了浅层(SCs)视觉层的局部结构,据推测该层参与显著刺激的定位,以及中间(SCi)层,该层被认为参与扫视决策。当将电刺激或化学刺激(游离谷氨酸的光解)施加到距记录细胞不同距离的多个部位时,发现中心兴奋 - 周边抑制模式在SCs中很突出。当测试同时刺激两个部位诱导的突触效应的相互作用时,观察到非线性促进或抑制相互作用。相比之下,在SCi中,刺激主要诱导兴奋,这掩盖了潜在的抑制作用。在远处部位施加刺激的兴奋性突触效应以近乎线性的方式相加。结果表明,SCs的横向相互作用似乎适合于定位显著刺激,而SCi内的横向相互作用更适合于忠实地积累用于扫视决策的阈下信号。这种层特异性组织的实现使上丘成为一个独特的结构,用于串行处理显著性定位和扫视决策的信号。

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