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皮层同步化的结构基础。II. 皮层损伤的影响。

Structural basis of cortical synchronization. II. Effects of cortical lesions.

作者信息

Munk M H, Nowak L G, Nelson J I, Bullier J

机构信息

Institut National de la Santé et de la Recherche Médicale, Unité 371, Bron, France.

出版信息

J Neurophysiol. 1995 Dec;74(6):2401-14. doi: 10.1152/jn.1995.74.6.2401.

Abstract
  1. To understand the structural basis of the different types of interhemispheric synchronizations described in the preceding paper, we made sections of the corpus callosum and lesions of extrastriate cortex. We measured the effects of such operations on the frequency of encounter, width and strength of T, C, and H peaks in cross-correlation histograms computed from single-unit and multiunit recordings from areas 17-18 of opposite cortical hemispheres in the cat. 2. Sectioning of the corpus callosum led to a complete abolition of T and C couplings and a strong reduction of encounter rate and strength of H coupling. A section limited to the posterior half of the corpus callosum abolished T and C couplings completely. This suggests that T and C couplings are mediated by the direct reciprocal connections between visual cortical areas circulating through the posterior part of the corpus callosum. 3. The encounter rate of H peaks depended on the extent of the callosal cut. Larger lesions gave a more pronounced reduction of the number of H peaks. From this observation we conclude that H peaks are at least partially mediated by polysynaptic pathways involving widely distributed cortical regions. 4. Extensive lesions of extrastriate cortex were made by aspiration of the gray matter or injections of ibotenic acid. These lesions removed the direct inputs from cortical areas sending ipsilateral as well as contralateral inputs to the area 17-18 border region. Encounter rate and coupling strength of C and H peaks were decreased, whereas little effect was observed on T peaks. 5. These results demonstrate that all types of interhemispheric synchronization are mediated by corticocortical connections and that T and C peaks are generated by reciprocal connections between areas 17 and 18 of each hemisphere. Feedback connections play a role in mediating or facilitating the C and H types of interhemispheric synchronization.
摘要
  1. 为了理解前文所述不同类型半球间同步化的结构基础,我们对胼胝体进行了切片,并对外纹状皮层造成损伤。我们测量了这些操作对猫相对皮质半球17 - 18区单单位和多单位记录计算出的互相关直方图中T、C和H峰的相遇频率、宽度和强度的影响。2. 胼胝体切片导致T和C耦合完全消失,H耦合的相遇率和强度大幅降低。仅限于胼胝体后半部的切片使T和C耦合完全消失。这表明T和C耦合是由通过胼胝体后部循环的视觉皮层区域之间的直接相互连接介导的。3. H峰的相遇率取决于胼胝体切断的范围。更大的损伤导致H峰数量更明显的减少。从这一观察结果我们得出结论,H峰至少部分是由涉及广泛分布的皮质区域的多突触通路介导的。4. 通过吸除灰质或注射鹅膏蕈氨酸对外纹状皮层造成广泛损伤。这些损伤去除了向17 - 18区边界区域发送同侧和对侧输入的皮质区域的直接输入。C和H峰的相遇率和耦合强度降低,而对T峰几乎没有影响。5. 这些结果表明,所有类型的半球间同步化都是由皮质 - 皮质连接介导的,并且T和C峰是由每个半球的17区和18区之间的相互连接产生的。反馈连接在介导或促进C和H类型的半球间同步化中起作用。

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