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A Comparative Study of Automatic Approaches for Preclinical MRI-based Brain Segmentation in the Developing Rat

机译:发展大鼠临床前MRI基脑细分自动化方法的对比研究

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Accurate pre-clinical study reporting requires validated processing tools to increase data reproducibility within and between laboratories. Segmentation of rodent brain from non-brain tissue is an important first step in preclinical imaging pipelines for which well validated tools are still under development. The current study aims to clarify the best approach to automatic brain extraction for studies in the immature rat. Skull stripping modules from AFNI, PCNN-3D, and RATS software packages were assessed for their ability to accurately segment brain from non-brain by comparison to manual segmentation. Comparison was performed using Dice coefficient of similarity. Results showed that the RATS package outperformed the others by including a lower percentage of false positive, non-brain voxels in the brain mask. However, AFNI resulted in a lower percentage of false negative voxels. Although the automatic approaches for brain segmentation significantly facilitate the data stream process, the current study findings suggest that the task of rodent brain segmentation from T2 weighted MRI needs to be accompanied by a supervised quality control step when developmental brain imaging studies were targeted.
机译:准确的临床前研究报告需要验证的处理工具,以提高实验室内和之间的数据再现性。来自非脑组织的啮齿动物脑的分割是临床前成像管道的重要第一步,良好的验证工具仍在开发中。目前的研究旨在阐明未成熟大鼠研究的自动脑提取的最佳方法。通过与手动分割进行比较,评估来自AFNI,PCNN-3D和RAT软件包的头骨剥离模块,以便通过与手动分割进行准确地从非大脑进行大脑进行大脑。使用骰子相似度进行比较。结果表明,大鼠封装通过脑面膜中的较低百分比的假阳性,非脑体素的较低百分比表现优于其他。然而,AFNI导致假阴性体素的百分比较低。虽然脑细分的自动方法显着促进了数据流过程,但目前的研究发现表明,当靶向脑成像研究靶向时,T2加权MRI的啮齿动物脑细分的任务需要伴随着监督质量控制步骤。

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