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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Spatial frequency processing in posteromedial lateral suprasylvian cortex does not depend on the projections from the striate-recipient zone of the cat's lateral posterior-pulvinar complex.
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Spatial frequency processing in posteromedial lateral suprasylvian cortex does not depend on the projections from the striate-recipient zone of the cat's lateral posterior-pulvinar complex.

机译:后内侧外侧上踝皮质的空间频率处理不依赖于猫外侧后-腰突复合体的条纹-接收区的投影。

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摘要

It is generally considered that the posteromedial part of the cat's lateral suprasylvian cortex is involved in the analysis of image motion. The main afferents of the posteromedial lateral suprasylvian cortex come from a direct retinogeniculate pathway and indirect retinotectal and retino-geniculo-cortical pathways. Removal of the primary visual cortex does not affect the spatial and temporal processing of suprasylvian cortex cells suggesting that these properties are derived from thalamic input. We have investigated the possibility that the striate-recipient zone of the lateral posterior nucleus-pulvinar complex may be responsible for the spatial (and temporal) frequency processing in posteromedial lateral suprasylvian cortex since these two regions establish strong bidirectional connections and share many visual properties. Experiments were done on anaesthetized normal adult cats. Visual responses in suprasylvian cortex were recorded before, during, and after the deactivation of the lateral part of the lateral posterior nucleus accomplished by the injection of lidocaine or GABA. Results can be summarized as follows. A total of 64 cells was tested. Out of this number, 11 units were affected by the deactivation of the lateral part of lateral posterior nucleus and one cell, by the blockade of pulvinar. For all cells, except one, the effect consisted in a global reduction of the evoked discharge rate suggesting that the thalamo-suprasylvian cortex projections are excitatory in nature. We did not find any significant differences in the optimal spatial frequency, nor in the width of the tuning function, whether the grating was presented at half- or saturation contrast. In addition, there were no significant differences between the low- and high cut-off spatial frequency values computed before and after the deactivation of the lateral posterior nucleus. No specific changes were observed in the contrast sensitivity function of the posteromedial lateral suprasylvian cortex cells. Similar results were observed with respect to the temporal frequency tuning functions. Deactivating the lateral posterior nucleus did not modify the direction selectivity nor the organization of the subregions of the lateral suprasylvian cortex "classical" receptive fields. The absence of strong changes in posteromedial lateral suprasylvian cortex cell response properties following the functional blockade of the lateral posterior nucleus suggests that the projections from this part of the thalamus are not essential to generate the spatial characteristics of most posteromedial lateral suprasylvian cortex receptive fields. These properties may be derived from other thalamic inputs (e.g., medial interlaminar nucleus) and/or from the intrinsic computation of the afferent signals within the lateral suprasylvian cortex. On the other hand, it is possible that the lateral posterior nucleus lateral suprasylvian cortex loop may be involved in other functions such as the analysis of complex motion as suggested by the findings from our and other groups.
机译:通常认为,猫的外侧腕上皮质的后内侧部分参与图像运动的分析。后内侧外侧腕上皮质的主要传入途径来自直接的成视网膜途径以及间接的视网膜台和视网膜-成纤维-皮质途径。初级视觉皮层的去除不会影响超上层皮层细胞的时空处理,表明这些特性源自丘脑输入。我们已经研究了外侧后核-髓核复合物的纹状体-受体区可能负责后内侧外侧上踝皮质的空间(和时间)频率处理的可能性,因为这两个区域建立了牢固的双向连接并共享许多视觉特性。实验是在麻醉的正常成年猫上进行的。在通过注射利多卡因或GABA完成的外侧后核外侧部分失活之前,期间和之后,记录了踝上皮质的视觉反应。结果可以总结如下。总共测试了64个电池。在这个数目中,有11个单位受到侧面后核外侧部分的失活和一个细胞的影响,但受到了pulvinar的阻滞。对于除一个细胞外的所有细胞,其作用在于引起的放电速率的整体降低,这提示丘脑-超上层皮层投射本质上是兴奋性的。无论光栅是半对比度还是饱和对比度,我们都没有发现最佳空间频率或调谐功能的宽度有任何显着差异。另外,在后外侧核去活之前和之后计算的低和高截止空间频率值之间没有显着差异。没有观察到后内侧外侧腕上皮质皮层细胞的对比敏感性功能的具体变化。关于时间频率调谐功能,观察到相似的结果。停用外侧后核不会改变方向选择性,也不会改变外侧腕上皮质“经典”感受野的子区域的组织。在外侧后核功能性阻断后,后内侧外侧上睑外侧皮质细胞反应特性没有强烈变化,这表明丘脑这一部分的投射对于产生大多数内侧内侧上睑外侧皮质感受野的空间特征不是必不可少的。这些特性可以从其他丘脑输入(例如,中间层间核)和/或从外侧腕上皮质内传入信号的固有计算中得出。另一方面,可能是外侧后核外侧腕上皮质回环可能参与了其他功能,例如我们小组和其他小组的研究结果所建议的复杂运动分析。

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