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首页> 外文期刊>Visual Neuroscience: An International Journal for Empirical and Theoretical Research >Nonlocal origin of response suppression from stimulation outside the classic receptive field in area 17 of the cat.
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Nonlocal origin of response suppression from stimulation outside the classic receptive field in area 17 of the cat.

机译:在猫的区域17中,经典抑制范围之外的刺激引起的抑制反应的非本地性起源。

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A stimulus located outside the classic receptive field (CRF) of a striate cortical neuron can markedly influence its behavior. To study this phenomenon, we recorded from two cortical sites, recorded and peripheral, with separate electrodes in cats anesthetized with Propofol and nitrous oxide. The receptive fields of each site were discrete (2-7.3 deg between centers). A control orientation tuning (OT) curve was measured for a single recorded cell with a drifting grating. The OT curve was then remeasured while stimulating simultaneously the cell's CRF as well as the peripheral site with a stimulus optimized for that location. For 22/60 cells, the peripheral stimulus suppressed the peak response and/or shifted the center of mass of the OT curve. For 19 of these 22 cells, we then reversibly blocked stimulus-driven activity at the peripheral site by iontophoretic application of GABA (0.5 M). For 6/19 cells, the response returned to control levels, implying that for these cells the inhibitory influence arose from the blocked site. The responses of nine cells remained reduced during inactivation of the peripheral site, suggesting that influence was generated outside the region of local block in area 17. This is consistent with earlier findings suggesting that modulatory influences can originate from higher cortical areas. Three cells had mixed results, suggesting multiple origins of influence. The response of each cell returned to suppressed levels after dissipation of the GABA and returned to baseline values when the peripheral stimulus was removed. These findings support a cortical model in which a cell's response is modulated by an inhibitory network originating from beyond the receptive field that supplants convergence of excitatory lateral geniculate neurons. The existence of cells that exhibit no change in peripherally inhibited responses during the GABA application suggests that peripheral influences may arise from outside area 17, presumably from other cortical areas (e.g. area 18).
机译:位于横纹皮质神经元经典感受野(CRF)之外的刺激可以显着影响其行为。为了研究这种现象,我们从两个皮质位点(记录的和周围的)记录下来,分别用丙泊酚和一氧化二氮麻醉的猫用单独的电极。每个部位的感受野是离散的(中心之间2-7.3度)。用一个漂移光栅测量单个记录单元的控制取向调谐(OT)曲线。然后重新测量OT曲线,同时用针对该位置优化的刺激同时刺激细胞的CRF和周围部位。对于22/60细胞,外围刺激抑制了峰响应和/或移动了OT曲线的质心。然后,对于这22个细胞中的19个,我们通过离子电渗GABA(0.5 M)可逆地阻断了周围部位的刺激驱动活性。对于6/19细胞,反应恢复到控制水平,这意味着对于这些细胞,抑制作用是由受阻位点引起的。在外围位点失活期间,九个细胞的反应仍然降低,这表明影响是在区域17的局部阻滞区域之外产生的。这与早期发现相一致,这表明调节性影响可能源自更高的皮质区域。三个单元的结果参差不齐,表明影响的多种来源。 GABA消散后,每个细胞的反应恢复到抑制水平,而去除外周刺激后,细胞的反应返回基线值。这些发现支持了一种皮质模型,在该模型中,细胞的反应受到抑制性网络的调节,该抑制性网络源自取代兴奋性外侧膝状神经元收敛的感受野。在应用GABA的过程中,外周抑制反应无变化的细胞的存在表明,外周影响可能来自外部区域17,大概是来自其他皮质区域(例如区域18)。

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