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首页> 外文期刊>PLoS One >Default Mode Network structural alterations in Kocher-Monro trajectory white matter transection: A 3 and 7 tesla simulation modeling approach
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Default Mode Network structural alterations in Kocher-Monro trajectory white matter transection: A 3 and 7 tesla simulation modeling approach

机译:默认模式网络结构改变kocher-monro轨迹白质横断:a 3和7特斯拉模拟建模方法

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The Kocher-Monro trajectory to the cerebral ventricular system represents one of the most common surgical procedures in the field of neurosurgery. Several studies have analyzed the specific white matter disruption produced during this intervention, which has no reported adverse neurological outcomes. In this study, a graph-theoretical approach was applied to quantify the structural alterations in whole-brain level connectivity. To this end, 132 subjects were randomly selected from the Human Connectome Project dataset and used to create 3 independent 44 subjects groups. Two of the groups underwent a simulated left/right Kocher-Monro trajectory and the third was kept as a control group. For the right Kocher-Monro approach, the nodal analysis revealed decreased strength in the anterior cingulate gyrus of the transected hemisphere. The network-based statistic analysis revealed a set of right lateralized subnetworks with decreased connectivity strength that is consistent with a subset of the Default Mode Network, Salience Network, and Cingulo-Opercular Network. These findings could allow for a better understanding of structural alterations caused by Kocher-Monro approaches that could reveal previously undetected clinical alterations and inform the process of designing safer and less invasive cerebral ventricular approaches.
机译:脑室系统的kocher-monro轨迹代表神经外科领域中最常见的手术手术之一。几项研究分析了这种干预期间产生的特定白质破坏,其尚未报告的神经原因不良。在该研究中,应用了图形理论方法来量化全脑水平连接中的结构改变。为此,从人类连接项目数据集随机选择132个科目,并用于创建3个独立的44个受试者组。其中两个组经历了模拟的左/右kocher-monro轨迹,第三组被视为对照组。对于正确的kocher-monro方法,节点分析显示出趋染的半球的前刺刺痛的强度降低。基于网络的统计分析显示了一组右侧横向化子网,其连通强度降低,与默认模式网络,宣传网络和CINGULO-ORP网络的子集一致。这些发现可以更好地了解由kocher-monro方法引起的结构改变,这些方法可以揭示先前未检测到的临床改变,并告知设计更安全和更少的侵入性脑室方法。

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