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Novel Local Shape-Adaptive Gyrification Index with Application to Brain Development

机译:新型局部形状自适应回旋指数及其在脑发育中的应用

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Conventional approaches to quantification of the cortical folding employ a simple circular kernel. Such a kernel commonly covers multiple cortical gyral/sulcal regions that may be functionally unrelated and also often blurs local gyrification measurements. We propose a novel adaptive kernel for quantification of the local cortical folding, which incorporates neighboring gyral crowns and sulcal fundi. The proposed kernel is adaptively elongated to cover regions along the cortical folding patterns. The experimental results showed that the proposed kernel-based gyrification measure achieved a higher reproducibility in a multi-scan human phantom dataset and captured the cortical folding in a more shape-adaptive way than the conventional method. In early human brain development, we found positive correlations with age over most cortical regions as previously found as well as novel, refined regions of both positive and negative correlations undetectable by the conventional method.
机译:皮质折叠定量的常规方法采用简单的圆形核。这样的内核通常覆盖多个皮质回旋/沟区域,这些区域可能在功能上不相关,并且经常使局部回旋测量模糊。我们提出了一种新颖的自适应内核,用于量化局部皮质折叠,其中包括邻近的回旋冠和沟底。拟议的内核被自适应地拉长,以覆盖沿皮质折叠模式的区域。实验结果表明,所提出的基于核的旋转测量方法在多扫描人体幻象数据集中实现了更高的重现性,并且以比传统方法更具形状适应性的方式捕获了皮质折叠。在人类大脑的早期发育中,我们发现以前发现的大多数皮质区域都与年龄呈正相关,而传统方法无法检测到新颖,精细的正负相关区域。

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