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Complete hemispherotomy leads to lateralized functional organization and lower level of consciousness in the isolated hemisphere

机译:完整的半球切割导致孤立的半球横向化功能组织和较低的意识

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Objective To quantify whole‐brain functional organization after complete hemispherotomy, characterizing unexplored plasticity pathways and the conscious level of the dissected hemispheres. Methods Evaluation with multimodal magnetic resonance imaging in two pediatric patients undergoing right hemispherotomy including complete callosotomy with a perithalamic section. Regional cerebral blood flow and fMRI network connectivity assessed the functional integrity of both hemispheres after surgery. The level of consciousness was tested by means of a support vector machine classifier which compared the intrinsic organization of the dissected hemispheres with those of patients suffering from disorders of consciousness. Results After hemispherotomy, both patients showed typical daily functionality. We found no interhemispheric transfer of functional connectivity in either patient as predicted by the operation. The healthy left hemispheres displayed focal blood hyperperfusion in motor and limbic areas, with preserved network‐level organization. Unexpectedly, the disconnected right hemispheres showed sustained network organization despite low regional cerebral blood flow. Subcortically, functional connectivity was increased in the left thalamo‐cortical loop and between the cerebelli. One patient further showed unusual ipsilateral right cerebello‐cortical connectivity, which was explained by the mediation of the vascular system. The healthy left hemisphere had higher probability to be classified as in a minimally conscious state compared to the isolated right hemisphere. Significance Complete hemispherotomy leads to a lateralized whole‐brain organization, with the remaining hemisphere claiming most of the brain's energetic reserves supported by subcortical structures. Our results further underline the contribution of nonneuronal vascular signals on contralateral connectivity, shedding light on the nature of network organization in the isolated tissue. The disconnected hemisphere is characterized by a level of consciousness which is necessary but insufficient for conscious processing, paving the way for more specific inquiries about its role in awareness in the absence of behavioral output.
机译:目的在完全半球切割后量化全脑功能组织,表征未探测的可塑性途径和解剖半球的有意识。方法评价在经历右半球形术中的两位儿科患者中的评价,包括具有磨损段的完全胼细胞术。区域脑血流和FMRI网络连接在手术后评估了两种半球的功能完整性。通过支持向量机分类器测试意识水平,该分类是将解剖半球的内在组织与患有意识障碍的患者进行了比较。结果术后半球切断,两名患者都显示出典型的日常功能。我们发现在操作中预测的任何患者中没有发现功能连接的互动转移。健康的左半球显示电动机和肢体区域的焦血压血液血栓灌注,具有保存的网络级组织。出乎意料地,尽管存在低区域脑血流,但断开的右半球显示持续网络组织。在左半皮质环路和小脑之间增加了下尺寸的功能连接。一名患者进一步表现出不寻常的同侧右小脑 - 皮质连接,其被血管系统的调解解释。与孤立的右半球相比,健康的左半球具有更高的概率,以便以最小的意识状态分类。意义完全半球形导致侧向化的全脑组织,剩下的半球声称大多数大脑的精力充沛的储备由下皮结构支持。我们的结果进一步强调了非尿形血管信号对对侧连通性的贡献,脱落光在孤立组织中网络组织性质。断开的半球的特点是一种意识水平,这是必要的,但不足以有意识的加工,为在没有行为产出的意识中发挥作用的更具体的询问,铺平了道路。
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