arXiv:2605.02615physics.med-phcs.LG2026-05

TRACED模型可无创量化胶质瘤患者细胞尺寸分布与微环境特性。

TRACED: In vivo imaging of extracellular intrinsic diffusivity, tortuosity, cell size distribution and cell density in human glioma patients

  • 基于球形细胞分布的蒙特卡洛模拟训练神经网络,实现时间依赖扩散信号快速计算。
  • 在8名患者中同时定量出细胞体积分数、细胞尺寸分布、细胞外本征扩散率和迂曲度。
  • 与传统模型相比参数估计更优,适合肿瘤病理特征研究与精准医疗。

复杂组织微结构中,中间时间尺度下的扩散时间依赖性缺乏有效分析模型,限制了细胞外扩散率与组织微结构的精确量化。本文提出TRACED生物物理模型,通过引入细胞分布的时间依赖性,实现对实体瘤病理相关属性的量化。利用基于球体分布几何的蒙特卡洛扩散模拟数据训练神经网络,以快速计算不同细胞尺寸群体的时间依赖扩散磁共振信号。通过仿真评估模型敏感性和拟合性能。在8名混合级别胶质瘤患者中应用TRACED模型进行数据拟合,采用新型物理信息引导的迁移学习流程Sim2PINN。两名患者的数据结果与图像定位的组织学测量直接对比验证。仿真显示,相比简单双室模型,参数估计显著改善。TRACED成功实现了胶质瘤患者体内同时量化细胞内体积分数、细胞尺寸分布、细胞外本征扩散率及迂曲度。神经网络实现的扩散时间依赖性和迂曲度行为分别符合粗粒化理论与有效介质理论。未来工作将探索TRACED参数在更多患者中的临床价值。

原文摘要 · Abstract (English)

The lack of analytical models describing diffusion time dependence at intermediate time scales in complex tissue microstructure limits the accurate quantification of extracellular diffusivity and tissue microstructure. We introduce TRACED, a biophysical model that incorporates diffusion time dependence in cell distributions to quantify pathologically-relevant properties in solid tumors. Neural networks were trained on Monte Carlo diffusion simulations using sphere distribution-based geometries to enable the rapid computation of time-dependent diffusion MRI signals in cell populations of variable cell size. Model sensitivity and fit performance were assessed via simulation. Diffusion data from eight mixed-grade glioma patients was fitted using the TRACED model. Data fitting was performed using a novel physics-informed transfer learning pipeline, Sim2PINN. In two patients, cell size measurements were compared directly with image-localized histology. Simulation results indicate improved parameter estimation compared to the simple two-compartment model. TRACED enabled the simultaneous in vivo quantification of intracellular volume fraction, cell size distribution, extracellular intrinsic diffusivity, and tortuosity in glioma patients. Neural network implementations of diffusion time-dependence and tortuosity showed behavior consistent with coarse-graining and effective medium theory, respectively. Future work will explore the clinical utility of TRACED parameters in additional patients.

扩散MRI胶质瘤生物物理建模神经网络

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