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Automatic cortical surface reconstruction of high-resolution T1 echo planar imaging data

机译:自动皮质表面重建的高分辨率T1回波平面成像数据

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摘要

Echo planar imaging (EPI) is the method of choice for the majority of functional magnetic resonance imaging (fMRI), yet EPI is prone to geometric distortions and thus misaligns with conventional anatomical reference data. The poor geometric correspondence between functional and anatomical data can lead to severe misplacements and corruption of detected activation patterns. However, recent advances in imaging technology have provided EPI data with increasing quality and resolution. Here we present a framework for deriving cortical surface reconstructions directly from high-resolution EPI-based reference images that provide anatomical models exactly geometric distortion-matched to the functional data. Anatomical EPI data with 1 mm isotropic voxel size were acquired using a fast multiple inversion recovery time EPI sequence (MI-EPI) at 7 T, from which quantitative T1 maps were calculated. Using these T1 maps, volumetric data mimicking the tissue contrast of standard anatomical data were synthesized using the Bloch equations, and these T1-weighted data were automatically processed using FreeSurfer. The spatial alignment between T2*-weighted EPI data and the synthetic T1-weighted anatomical MI-EPI-based images was improved compared to the conventional anatomical reference. In particular, the alignment near the regions vulnerable to distortion due to magnetic susceptibility differences was improved, and sampling of the adjacent tissue classes outside of the cortex was reduced when using cortical surface reconstructions derived directly from the MI-EPI reference. The MI-EPI method therefore produces high-quality anatomical data that can be automatically segmented with standard software, providing cortical surface reconstructions that are geometrically matched to the BOLD fMRI data.
机译:回波平面成像(EPI)是大多数功能磁共振成像(fMRI)的选择方法,但是EPI容易发生几何变形,因此与常规解剖参考数据不一致。功能和解剖数据之间不良的几何对应关系会导致严重的放错位置和检测到的激活模式损坏。但是,成像技术的最新进展为EPI数据提供了更高的质量和分辨率。在这里,我们为直接从高分辨率的基于EPI的参考图像中导出皮质表面重建提供了一个框架,该框架提供了与功能数据完全几何失真匹配的解剖模型。使用7 T下的快速多次反转恢复时间EPI序列(MI-EPI)获取具有1 mm各向同性体素大小的解剖EPI数据,从中计算出定量的T1图。使用这些T1贴图,使用Bloch方程合成模拟标准解剖数据的组织对比的体积数据,并使用FreeSurfer自动处理这些T1加权数据。与传统的解剖参考相比,T2 *加权的EPI数据和合成的T1加权的基于解剖MI-EPI的图像之间的空间对齐得到了改善。特别是,当使用直接源自MI-EPI参考的皮层表面重建时,可改善由于磁化率差异而易于变形的区域附近的排列,并减少了皮层外部相邻组织类别的采样。因此,MI-EPI方法可生成高质量的解剖数据,可以使用标准软件将其自动分段,从而提供与BOLD fMRI数据几何匹配的皮质表面重建。

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