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Intravoxel Incoherent Motion in Body Diffusion-Weighted MRI: Reality and Challenges.

机译:体内弥散加权MRI中的体内不相干运动:现实与挑战。

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OBJECTIVE: Diffusion-weighted MRI is increasingly applied in the body. It has been recognized for some time, on the basis of scientific experiments and studies in the brain, that the calculation of apparent diffusion coefficient by simple monoexponential relationship between MRI signal and b value does not fully account for tissue behavior. However, appreciation of this fact in body diffusion MRI is relatively new, because technologic advancements have only recently enabled high-quality body diffusion-weighted images to be acquired using multiple b values. There is now increasing interest in the radiologic community to apply more sophisticated analytic approaches, such as those based on the principles of intravoxel incoherent motion, which allows quantitative parameters that reflect tissue microcapillary perfusion and tissue diffusivity to be derived. CONCLUSION: In this review, we discuss the principles of intravoxel incoherent motion as applied to body diffusion-weighted MRI. The evidence for the technique in measuring tissue perfusion is presented and the emerging clinical utility surveyed. The requisites and challenges of quantitative evaluation beyond simple monoexponential relationships are highlighted.
机译:目的:弥散加权磁共振成像越来越多地应用于人体。一段时间以来,基于大脑的科学实验和研究已经认识到,通过MRI信号和b值之间的简单单指数关系来计算表观扩散系数并不能完全说明组织的行为。但是,在身体弥散MRI中对这一事实的了解相对较新,因为技术进步直到最近才使能够使用多个b值获取高质量的身体弥散加权图像。现在,放射线界越来越关注应用更复杂的分析方法,例如基于体素不相干运动原理的分析方法,该方法允许导出反映组织微毛细血管灌注和组织扩散性的定量参数。结论:在这篇综述中,我们讨论了体素加权磁共振成像中体素不相干运动的原理。介绍了用于测量组织灌注的技术的证据,并对新兴的临床用途进行了调查。强调了简单单指数关系以外的定量评估的必要性和挑战。

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