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Deficits in Behavioral Functions of Intact Barrel Cortex Following Lesions of Homotopic Contralateral Cortex

机译:同侧对侧皮质病变后完整桶皮质行为功能的不足。

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摘要

Focal unilateral injuries to the somatosensory whisker barrel cortex have been shown cause long-lasting deficits in the activity and experience-dependent plasticity of neurons in the intact contralateral barrel cortex. However, the long-term effect of these deficits on behavioral functions of the intact contralesional cortex is not clear. In this study, we used the “Gap-crossing task” a barrel cortex-dependent, whisker-sensitive, tactile behavior to test the hypothesis that unilateral lesions of the somatosensory cortex would affect behavioral functions of the intact somatosensory cortex and degrade the execution of a bilaterally learnt behavior. Adult rats were trained to perform the Gap-crossing task using whiskers on both sides of the face. The barrel cortex was then lesioned unilaterally by subpial aspiration. As observed in other studies, when rats used whiskers that directly projected to the lesioned hemisphere the performance of Gap-crossing was drastically compromised, perhaps due to direct effect of lesion. Significant and persistent deficits were present when the lesioned rats performed Gap-crossing task using whiskers that projected to the intact cortex. The deficits were specific to performance of the task at the highest levels of sensitivity. Comparable deficits were seen when normal, bilaterally trained, rats performed the Gap-crossing task with only the whiskers on one side of the face or when they used only two rows of whiskers (D row and E row) intact on both side of the face. These findings indicate that the prolonged impairment in execution of the learnt task by rats with unilateral lesions of somatosensory cortex could be because sensory inputs from one set of whiskers to the intact cortex is insufficient to provide adequate sensory information at higher thresholds of detection. Our data suggest that optimal performance of somatosensory behavior requires dynamic activity-driven interhemispheric interactions from the entire somatosensory inputs between homotopic areas of the cerebral cortex. These results imply that focal unilateral cortical injuries, including those in humans, are likely to have widespread bilateral effects on information processing including in intact areas of the cortex.
机译:体感晶须桶状皮质的局灶性单侧损伤已显示会导致完整对侧桶状皮质的神经元活动和经验依赖的可塑性持续长期不足。但是,这些缺陷对完整的对侧皮层行为功能的长期影响尚不清楚。在这项研究中,我们使用了“间隙交叉任务”,即桶状皮质依赖的,晶须敏感的触觉行为,以检验以下假设:躯体感觉皮质的单侧病变会影响完整的躯体感觉皮质的行为功能,并降低其执行能力。双边学习的行为。训练成年大鼠使用脸颊两侧的胡须来执行跨口任务。然后通过皮下抽吸单侧破坏桶状皮质。正如在其他研究中观察到的那样,当大鼠使用直接投射到病变半球的晶须时,跨间隙的性能会受到严重损害,这可能是由于病变的直接作用所致。当患病的大鼠使用投射到完整皮层的晶须执行Gap-crossing任务时,存在明显且持续的缺陷。缺陷是在最高灵敏度下特定于任务执行的。当正常的,经过双边训练的大鼠仅在脸上的一面晶须上执行间隙跨越任务时,或者当他们在脸上的两面仅使用两行晶须(D行和E行)时,就可以观察到类似的缺陷。这些发现表明,体感皮层单侧病变的大鼠在执行学习任务中的长期损伤可能是因为从一组晶须到完整皮层的感官输入不足以在更高的检测阈值下提供足够的感官信息。我们的数据表明,体感行为的最佳性能需要动态活动驱动的大脑半球同位区域之间整个体感输入的活动半球间相互作用。这些结果表明,包括人的局灶性单侧皮质损伤可能会对信息处理产生广泛的双边影响,包括在皮质完整区域。

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