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首页> 外文期刊>Magnetic resonance imaging: An International journal of basic research and clinical applications >Polynomial fitting of DT-MRI fiber tracts allows accurate estimation of muscle architectural parameters
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Polynomial fitting of DT-MRI fiber tracts allows accurate estimation of muscle architectural parameters

机译:DT-MRI纤维束的多项式拟合可准确估算肌肉结构参数

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摘要

Fiber curvature is a functionally significant muscle structural property, but its estimation from diffusion-tensor magnetic resonance imaging fiber tracking data may be confounded by noise. The purpose of this study was to investigate the use of polynomial fitting of fiber tracts for improving the accuracy and precision of fiber curvature (κ) measurements. Simulated image data sets were created in order to provide data with known values for κ and pennation angle (θ). Simulations were designed to test the effects of increasing inherent fiber curvature (3.8, 7.9, 11.8 and 15.3 m ~(-1)), signal-to-noise ratio (50, 75, 100 and 150) and voxel geometry (13.8- and 27.0-mm ~3 voxel volume with isotropic resolution; 13.5-mm ~3 volume with an aspect ratio of 4.0) on κ and θ measurements. In the originally reconstructed tracts, θ was estimated accurately under most curvature and all imaging conditions studied; however, the estimates of κ were imprecise and inaccurate. Fitting the tracts to second-order polynomial functions provided accurate and precise estimates of κ for all conditions except very high curvature (κ=15.3 m ~(-1)), while preserving the accuracy of the θ estimates. Similarly, polynomial fitting of in vivo fiber tracking data reduced the κ values of fitted tracts from those of unfitted tracts and did not change the θ values. Polynomial fitting of fiber tracts allows accurate estimation of physiologically reasonable values of κ, while preserving the accuracy of θ estimation.
机译:纤维曲率在功能上是重要的肌肉结构特性,但是根据扩散张量磁共振成像纤维跟踪数据进行的估计可能会受到噪声的干扰。这项研究的目的是研究使用纤维束的多项式拟合来提高纤维曲率(κ)测量的准确性和精确度。创建模拟图像数据集是为了提供具有κ和垂角(θ)的已知值的数据。设计仿真来测试增加固有光纤曲率(3.8、7.9、11.8和15.3 m〜(-1)),信噪比(50、75、100和150)和体素几何形状(13.8-在κ和θ测量中,各向同性分辨率为27.0 mm〜3体素体积;纵横比为4.0的13.5 mm〜3体积。在最初重建的通道中,在大多数曲率和研究的所有成像条件下,θ都可以精确估计。但是,κ的估计不准确且不准确。将束与二阶多项式函数拟合,可以在所有条件下(非常高的曲率(κ= 15.3 m〜(-1))除外)对κ进行精确准确的估计,同时保留θ估计的准确性。类似地,体内纤维跟踪数据的多项式拟合可将拟合管道的κ值与未拟合管道的κ值相减,而不会更改θ值。纤维束的多项式拟合可以准确估算κ的生理合理值,同时保留θ估算的准确性。

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