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Improving a probabilistic cytoarchitectonic atlas of auditory cortex using a novel method for inter-individual alignment

机译:使用一种新的单独对准方法改进听觉皮质的概率性细胞建筑图案

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摘要

The human superior temporal plane, the site of the auditory cortex, displays high inter-individual macro-anatomical variation. This questions the validity of curvature-based alignment (CBA) methods for in vivo imaging data. Here, we have addressed this issue by developing CBA+, which is a cortical surface registration method that uses prior macro-anatomical knowledge. We validate this method by using cytoarchitectonic areas on 10 individual brains (which we make publicly available). Compared to volumetric and standard surface registration, CBA+ results in a more accurate cytoarchitectonic auditory atlas. The improved correspondence of micro-anatomy following the improved alignment of macro-anatomy validates the superiority of CBA+ compared to CBA. In addition, we use CBA+ to align in vivo and postmortem data. This allows projection of functional and anatomical information collected in vivo onto the cytoarchitectonic areas, which has the potential to contribute to the ongoing debate on the parcellation of the human auditory cortex.
机译:人类优越的时间平面,听觉皮质的位点,显示出高间间的宏观解剖变化。这提出了基于曲率的对准(CBA)方法的有效性,用于体内成像数据。在这里,我们通过开发CBA +来解决了这个问题,这是一种使用先前宏解剖知识的皮质表面注册方法。我们通过使用10个单独的大脑(我们公开可用)的CytoArchitioSonic区域来验证此方法。与体积和标准表面注册相比,CBA +导致更准确的细胞建筑听觉atlas。与CBA相比,改善宏观解剖学对准后微观解剖学的改善对应性验证了CBA +的优越性。此外,我们使用CBA +在Vivo和后期数据中对齐。这允许在体内收集的功能和解剖信息投影在细胞构表区域上,这有可能有助于对人类听觉皮层的局部争论有贡献。

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