Centre for Computational Imaging and Simulation Technologies in Biomedicine (CISTIB), School of Computing, University of Leeds, Leeds, UK.
Inria-Saclay, Equipe Idefix, ENSTA Paris, Unite de Mathematiques Appliquees (UMA), 91762 Palaiseau, France.
Med Image Anal. 2025 Jan;99:103369. doi: 10.1016/j.media.2024.103369. Epub 2024 Oct 16.
Intravoxel incoherent motion (IVIM) imaging is increasingly recognised as an important tool in clinical MRI, where tissue perfusion and diffusion information can aid disease diagnosis, monitoring of patient recovery, and treatment outcome assessment. Currently, the discovery of biomarkers based on IVIM imaging, similar to other medical imaging modalities, is dependent on long preclinical and clinical validation pathways to link observable markers derived from images with the underlying pathophysiological mechanisms. To speed up this process, virtual IVIM imaging is proposed. This approach provides an efficient virtual imaging tool to design, evaluate, and optimise novel approaches for IVIM imaging. In this work, virtual IVIM imaging is developed through a new finite element solver, SpinDoctor-IVIM, which extends SpinDoctor, a diffusion MRI simulation toolbox. SpinDoctor-IVIM simulates IVIM imaging signals by solving the generalised Bloch-Torrey partial differential equation. The input velocity to SpinDoctor-IVIM is computed using HemeLB, an established Lattice Boltzmann blood flow simulator. Contrary to previous approaches, SpinDoctor-IVIM accounts for volumetric microvasculature during blood flow simulations, incorporates diffusion phenomena in the intravascular space, and accounts for the permeability between the intravascular and extravascular spaces. The above-mentioned features of the proposed framework are illustrated with simulations on a realistic microvasculature model.
体素内不相干运动(IVIM)成像在临床 MRI 中越来越被认为是一种重要的工具,它可以提供组织灌注和扩散信息,辅助疾病诊断、患者康复监测以及治疗效果评估。目前,与其他医学成像模式类似,基于 IVIM 成像的生物标志物的发现依赖于长期的临床前和临床验证途径,以将图像中观察到的标志物与潜在的病理生理机制联系起来。为了加快这一过程,提出了虚拟 IVIM 成像。这种方法提供了一种高效的虚拟成像工具,可用于设计、评估和优化 IVIM 成像的新方法。在这项工作中,通过一个新的有限元求解器 SpinDoctor-IVIM 开发了虚拟 IVIM 成像,该求解器扩展了扩散 MRI 模拟工具箱 SpinDoctor。SpinDoctor-IVIM 通过求解广义的 Bloch-Torrey 偏微分方程来模拟 IVIM 成像信号。SpinDoctor-IVIM 的输入速度是使用已建立的晶格玻尔兹曼血流模拟器 HemeLB 计算的。与以前的方法不同,SpinDoctor-IVIM 在血流模拟过程中考虑了体积微血管,将扩散现象纳入血管内空间,并考虑了血管内外空间之间的渗透性。所提出的框架的上述特征通过在真实微血管模型上的模拟进行了说明。