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Validating atlas-guided DOT: A comparison of diffuse optical tomography informed by atlas and subject-specific anatomies

机译:验证地图集指导的DOT:以地图集和特定对象的解剖学为基础的漫射光学层析成像的比较

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摘要

We describe the validation of an anatomical brain atlas approach to the analysis of diffuse optical tomography (DOT). Using MRI data from 32 subjects, we compare the diffuse optical images of simulated cortical activation reconstructed using a registered atlas with those obtained using a subject's true anatomy. The error in localization of the simulated cortical activations when using a registered atlas is due to a combination of imperfect registration, anatomical differences between atlas and subject anatomies and the localization error associated with diffuse optical image reconstruction. When using a subject-specific MRI, any localization error is due to diffuse optical image reconstruction only. In this study we determine that using a registered anatomical brain atlas results in an average localization error of approximately 18. mm in Euclidean space. The corresponding error when the subject's own MRI is employed is 9.1. mm. In general, the cost of using atlas-guided DOT in place of subject-specific MRI-guided DOT is a doubling of the localization error. Our results show that despite this increase in error, reasonable anatomical localization is achievable even in cases where the subject-specific anatomy is unavailable.
机译:我们描述了解剖脑图谱方法对扩散光学层析成像(DOT)分析的验证。使用来自32个受试者的MRI数据,我们比较了使用注册图集重建的模拟皮质激活的漫射光学图像与使用受试者的真实解剖结构获得的图像。当使用配准的图谱时,模拟皮质激活的定位误差是由于不完善的配准,图谱和受试者解剖结构之间的解剖差异以及与漫射光学图像重建相关的定位误差的组合。使用特定对象的MRI时,任何定位误差都仅是由于漫射光学图像重建造成的。在这项研究中,我们确定使用已注册的解剖脑图谱会导致在欧几里得空间中的平均定位误差约为18毫米。使用受试者自己的MRI时相应的错误是9.1。毫米通常,使用地图集引导的DOT代替特定于受试者的MRI引导的DOT的成本是定位误差的两倍。我们的结果表明,尽管误差有所增加,但即使在无法使用特定对象的解剖结构的情况下,也可以实现合理的解剖定位。

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