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体素内不相干运动磁共振成像中扩散与灌注的分离

Separation of diffusion and perfusion in intravoxel incoherent motion MR imaging.

作者信息

Le Bihan D, Breton E, Lallemand D, Aubin M L, Vignaud J, Laval-Jeantet M

机构信息

Groupe de Biophysique, Ecole Polytechnique, Palaiseau, France.

出版信息

Radiology. 1988 Aug;168(2):497-505. doi: 10.1148/radiology.168.2.3393671.

Abstract

Intravoxel incoherent motion (IVIM) imaging is a method the authors developed to visualize microscopic motions of water. In biologic tissues, these motions include molecular diffusion and microcirculation of blood in the capillary network. IVIM images are quantified by an apparent diffusion coefficient (ADC), which integrates the effects of both diffusion and perfusion. The aim of this work was to demonstrate how much perfusion contributes to the ADC and to present a method for obtaining separate images of diffusion and perfusion. Images were obtained at 0.5 T with high-resolution multisection sequences and without the use of contrast material. Results in a phantom made of resin microspheres demonstrated the ability of the method to separately evaluate diffusion and perfusion. The method was then applied in patients with brain and bone tumors and brain ischemia. Clinical results showed significant promise of the method for tissue characterization by perfusion patterns and for functional studies in the evaluation of the microcirculation in physiologic and pathologic conditions, as, for instance, in brain ischemia.

摘要

体素内不相干运动(IVIM)成像技术是作者开发的一种用于可视化水分子微观运动的方法。在生物组织中,这些运动包括分子扩散以及毛细血管网络中血液的微循环。IVIM图像通过表观扩散系数(ADC)进行量化,该系数整合了扩散和灌注的影响。本研究的目的是证明灌注对ADC的贡献程度,并提出一种获取扩散和灌注单独图像的方法。使用高分辨率多层面序列在0.5T条件下且不使用造影剂获取图像。在由树脂微球制成的模型上取得的结果证明了该方法能够分别评估扩散和灌注。随后该方法应用于患有脑肿瘤、骨肿瘤和脑缺血的患者。临床结果表明,该方法在通过灌注模式进行组织表征以及在评估生理和病理状态下(如脑缺血)的微循环的功能研究方面具有显著前景。

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