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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >'Top-down' influences of ipsilateral or contralateral postero-temporal visual cortices on the extra-classical receptive fields of neurons in cat's striate cortex.
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'Top-down' influences of ipsilateral or contralateral postero-temporal visual cortices on the extra-classical receptive fields of neurons in cat's striate cortex.

机译:同侧或对侧后颞部视觉皮层的“自顶向下”影响对猫的纹状皮层神经元的超经典感受野。

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摘要

In anesthetized and immobilized domestic cats, we have studied the effects of brief reversible inactivation (by cooling to 10 degrees C) of the ipsilateral or contralateral postero-temporal visual (PTV) cortices on: 1) the magnitude of spike-responses of neurons in striate cortex (cytoarchitectonic area 17, area V1) to optimized sine-wave modulated contrast-luminosity gratings confined to the classical receptive fields (CRFs) and 2) the relative strengths of modulation of CRF-induced spike-responses by gratings extending into the extra-classical receptive field (ECRF). Consistent with our previous reports (Bardy et al., 2006; Huang et al., 2007), inactivation of ipsilateral PTV cortex (presumed homologue of primate infero-temporal cortex) resulted in significant reversible changes (almost all substantial reductions) in the magnitude of spike-responses to CRF-confined stimuli in about half of the V1 neurones. Similarly, in half of the present sample, inactivation of ipsilateral PTV cortex resulted in significant reversible changes (in over 70% of cases, reduction) in the relative strength of ECRF modulation of the CRF-induced spike-responses. By contrast, despite the fact that receptive fields of all V1 cells tested were located within 5 degrees of representation of the zero vertical meridian, inactivation of contralateral PTV cortex only rarely resulted in significant (yet invariably small) changes in the magnitude of spike-responses to CRF-confined stimuli or significant (again invariably small) changes in the relative strength of ECRF modulation of spike-responses. Thus, the ipsilateral, but not contralateral, 'higher-order' visual cortical areas make significant contribution not only to the magnitude of CRF-induced spike-responses but also to the relative strengths of ECRF-induced modulation of the spike-responses of V1 neurons. Therefore, the feedback signals originating from the ipsilateral higher-order cortical areas appear to make an important contribution to contextual modulation of responses of neurons in the primary visual cortices.
机译:在麻醉和固定的家猫中,我们研究了同侧或对侧后颞视觉(PTV)皮质的短暂可逆失活(通过冷却至10摄氏度)对以下方面的影响:1)神经元的尖峰响应幅度将皮质纹状体(细胞建筑区域17,区域V1)分布到限定于经典接收场(CRF)和2的优化正弦波调制对比发光度光栅中,通过扩展到外部的光栅对CRF诱导的尖峰响应的调制相对强度-经典感受野(ECRF)。与我们以前的报道(Bardy等,2006; Huang等,2007)一致,同侧PTV皮层失活(推测为灵长类下颞叶皮层的同源物)会导致幅度的可逆变化(几乎所有的实质性减少)。大约一半的V1神经元对CRF限制的刺激有尖峰响应。类似地,在本样本的一半中,同侧PTV皮质的失活导致CRF诱发的尖峰反应的ECRF调制相对强度发生明显的可逆变化(在70%以上的情况下,降低)。相比之下,尽管所有受测的V1细胞的感受野位于零垂直子午线表示的5度以内,对侧PTV皮质的失活仅很少导致尖峰响应幅度的显着变化(但总是很小) CRF限制的刺激或ECRF调制尖峰响应的相对强度发生显着变化(再次不变)。因此,同侧而非对侧的“高阶”视觉皮层区域不仅对CRF诱导的尖峰反应的强度做出了重要贡献,而且对ECRF诱导的V1尖峰反应的调制的相对强度做出了重要贡献。神经元。因此,来自同侧高阶皮质区域的反馈信号似乎对初级视觉皮层中神经元的响应的上下文调制做出了重要贡献。

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