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Cross-Validation of Deformable Registration With Field Maps in Functional Magnetic Resonance Brain Imaging

机译:功能磁共振脑成像中可变形配准与场图的交叉验证

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ara> The localization of brain functional activity with respect to brain anatomy requires registration between a functional image and a reference high-resolution anatomical image. The fast functional magnetic resonance brain images acquired via echo planar imaging (EPI) in functional magnetic resonance imaging (fMRI) suffer from local geometric distortions. After performing standard rigid or affine registration, local nonlinear distortions of up to 10 mm still appear in prefrontal and orbitofrontal cortex, as well as in temporal and cerebellar regions. To reduce such distortions, an enhanced version of a previously developed deformable registration technique is introduced in this paper. The enhanced deformable registration technique involves a multistage mutual information-based free-form deformable framework guided by a field map template. This template is utilized as prior knowledge for performing an initial warp as well as a guiding mechanism to constrain the initial stage of the deformable registration. The enhanced technique is cross-validated with the high-resolution field map distortion correction technique using real datasets. The results from consistency tests using a normalized mutual information similarity measure as well as the statistics of quantitative cross-validation show the degree of enhancement achieved and the impact of the developed deformable registration in applications requiring accurate local registration.
机译:ara>关于脑部解剖结构的脑功能活动的定位要求在功能图像和参考高分辨率解剖图像之间进行配准。在功能磁共振成像(fMRI)中通过回波平面成像(EPI)获取的快速功能磁共振脑图像遭受局部几何畸变的困扰。执行标准的刚性或仿射配准后,前额叶和眶额叶皮质以及颞叶和小脑区域仍会出现高达10 mm的局部非线性畸变。为了减少这种变形,本文介绍了先前开发的可变形套准技术的增强版本。增强的可变形配准技术涉及由场图模板引导的基于多阶段互信息的自由格式可变形框架。该模板被用作用于执行初始翘曲的先验知识以及用于限制可变形对准的初始阶段的引导机构。增强技术与使用真实数据集的高分辨率场图失真校正技术进行交叉验证。使用归一化的互信息相似性度量进行一致性测试的结果以及定量交叉验证的统计数据表明,实现的增强程度以及已开发的可变形配准在要求精确本地配准的应用中的影响。

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