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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Estimation of tensors and tensor-derived measures in diffusional kurtosis imaging
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Estimation of tensors and tensor-derived measures in diffusional kurtosis imaging

机译:张量估计和张量导出的峰度成像中的量度

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摘要

This article presents two related advancements to the diffusional kurtosis imaging estimation framework to increase its robustness to noise, motion, and imaging artifacts. The first advancement substantially improves the estimation of diffusion and kurtosis tensors parameterizing the diffusional kurtosis imaging model. Rather than utilizing conventional unconstrained least squares methods, the tensor estimation problem is formulated as linearly constrained linear least squares, where the constraints ensure physically and/or biologically plausible tensor estimates. The exact solution to the constrained problem is found via convex quadratic programming methods or, alternatively, an approximate solution is determined through a fast heuristic algorithm. The computationally more demanding quadratic programming-based method is more flexible, allowing for an arbitrary number of diffusion weightings and different gradient sets for each diffusion weighting. The heuristic algorithm is suitable for real-time settings such as on clinical scanners, where run time is crucial. The advantage offered by the proposed constrained algorithms is demonstrated using in vivo human brain images. The proposed constrained methods allow for shorter scan times and/or higher spatial resolution for a given fidelity of the diffusional kurtosis imaging parametric maps. The second advancement increases the efficiency and accuracy of the estimation of mean and radial kurtoses by applying exact closed-form formulae.
机译:本文介绍了扩散峰度成像估计框架的两个相关进展,以提高其对噪声,运动和成像伪像的鲁棒性。第一项进步极大地改善了参数化扩散峰度成像模型的扩散和峰度张量的估计。张量估计问题不是使用常规的无约束最小二乘法,而是被公式化为线性约束线性最小二乘法,其中约束条件确保了物理和/或生物学上合理的张量估计。可以通过凸二次规划方法找到受约束问题的精确解,或者通过快速启发式算法确定近似解。计算上更加苛刻的基于二次规划的方法更加灵活,允许任意数量的扩散权重和每个扩散权重的不同梯度集。该启发式算法适用于实时设置,例如在运行时间至关重要的临床扫描仪上。使用体内人脑图像证明了所提出的约束算法所提供的优势。对于给定的扩散峰度成像参数图的保真度,所提出的约束方法允许较短的扫描时间和/或较高的空间分辨率。第二个进步是通过应用精确的封闭式公式,提高了平均和径向黑数估计的效率和准确性。

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