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Callosal Influence on Visual Receptive Fields Has an Ocular an Orientation-and Direction Bias

机译:愈伤组织对视觉感受野的影响具有视觉方向和方向偏差

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摘要

One leading hypothesis on the nature of visual callosal connections (CC) is that they replicate features of intrahemispheric lateral connections. However, CC act also in the central part of the binocular visual field. In agreement, early experiments in cats indicated that they provide the ipsilateral eye part of binocular receptive fields (RFs) at the vertical midline (Berlucchi and Rizzolatti, ), and play a key role in stereoscopic function. But until today callosal inputs to receptive fields activated by one or both eyes were never compared simultaneously, because callosal function has been often studied by cutting or lesioning either corpus callosum or optic chiasm not allowing such a comparison. To investigate the functional contribution of CC in the intact cat visual system we recorded both monocular and binocular neuronal spiking responses and receptive fields in the 17/18 transition zone during reversible deactivation of the contralateral hemisphere. Unexpectedly from many of the previous reports, we observe no change in ocular dominance during CC deactivation. Throughout the transition zone, a majority of RFs shrink, but several also increase in size. RFs are significantly more affected for ipsi- as opposed to contralateral stimulation, but changes are also observed with binocular stimulation. Noteworthy, RF shrinkages are tiny and not correlated to the profound decreases of monocular and binocular firing rates. They depend more on orientation and direction preference than on eccentricity or ocular dominance of the receiving neuron's RF. Our findings confirm that in binocularly viewing mammals, binocular RFs near the midline are constructed via the direct geniculo-cortical pathway. They also support the idea that input from the two eyes complement each other through CC: Rather than linking parts of RFs separated by the vertical meridian, CC convey a modulatory influence, reflecting the feature selectivity of lateral circuits, with a strong cardinal bias.
机译:关于视觉call骨连接(CC)的性质的一个主要假设是它们复制了半球内侧向连接的特征。但是,CC也在双目视野的中心部分起作用。一致的是,在猫中进行的早期实验表明,它们在垂直中线(Berlucchi和Rizzolatti,)处提供了双眼感受野(RF)的同侧眼部分,并且在立体功能中起关键作用。但是直到今天,从未同时比较过由一只或两只眼睛激活的接受区域的call输入,因为经常通过切除或损伤体或视神经as来研究call的功能,不允许进行这种比较。为了研究CC在完整的猫视觉系统中的功能性贡献,我们在对侧半球可逆性失活期间记录了17/18过渡区中的单眼和双眼神经突刺反应和感受野。出乎意料的是,从先前的许多报道中,我们观察到CC失活期间眼部优势没有改变。在整个过渡区域中,大多数RF都在缩小,但有些RF的尺寸也会增加。与对侧刺激相反,射频对ipsi-的影响更大,但是在双眼刺激下也观察到变化。值得注意的是,RF收缩很小,与单眼和双眼射击率的大幅下降无关。它们更多地取决于方向和方向偏好,而不是接收神经元RF的偏心率或眼部优势。我们的研究结果证实,在以双眼观察的哺乳动物中,中线附近的双眼RF是通过直接的膝部皮层-皮质途径构建的。他们还支持这样的想法,即两只眼睛的输入通过CC相互补充:CC不会链接由垂直子午线分隔的RF部分,而是传递调制作用,反映出侧向电路的特征选择性以及强烈的主偏角。

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