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Reconstruction of Cardiac Ventricular Geometry and Fiber Orientation Using Magnetic Resonance Imaging

机译:磁共振成像重建心室的几何形状和纤维取向

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摘要

An imaging method for the rapid reconstruction of fiber orientation throughout the cardiac ventricles is described. In this method, gradient-recalled acquisition in the steady-state (GRASS) imaging is used to measure ventricular geometry in formaldehyde-fixed hearts at high spatial resolution. Diffusion-tensor magnetic resonance imaging (DTMRI) is then used to estimate fiber orientation as the principle eigenvector of the diffusion tensor measured at each image voxel in these same hearts. DTMRI-based estimates of fiber orientation in formaldehyde-fixed tissue are shown to agree closely with those measured using histological techniques, and evidence is presented suggesting that diffusion tensor tertiary eigenvectors may specify the orientation of ventricular laminar sheets. Using a semiautomated software tool called heartworks, a set of smooth contours approximating the epicardial and endocardial boundaries in each GRASS short-axis section are estimated. These contours are then interconnected to form a volumetric model of the cardiac ventricles. DTMRI-based estimates of fiber orientation are interpolated into these volumetric models, yielding reconstructions of cardiac ventricular fiber orientation based on at least an order of magnitude more sampling points than can be obtained using manual reconstruction methods.
机译:描述了一种用于快速重建整个心室纤维取向的成像方法。在这种方法中,稳态(GRASS)成像中的梯度调用采集用于以高空间分辨率测量固定甲醛的心脏的心室几何形状。然后,使用扩散张量磁共振成像(DTMRI)来估计纤维取向,作为在这些相同心脏中每个图像体素处测得的扩散张量的主要特征向量。显示基于DTMRI的甲醛固定组织中纤维取向的估计与使用组织学技术测得的纤维取向紧密一致,并且证据表明扩散张量第三特征向量可以指定心室层状板的取向。使用称为heartworks的半自动软件工具,可以估算出一组平滑的轮廓,这些轮廓近似于每个GRASS短轴截面中的心外膜和心内膜边界。然后将这些轮廓互连以形成心室的体积模型。将基于DTMRI的纤维方向估计值内插到这些体积模型中,从而比使用手动重建方法所获得的采样点至少多一个数量级,从而可以重建心室纤维方向。

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