外渗
毛细管作用
蒙特卡罗方法
微循环
脑血流
血管通透性
标准差
平均通过时间
血流
过境时间
机械
生物医学工程
数学
物理
医学
病理
灌注
放射科
统计
内科学
灌注扫描
热力学
运输工程
工程类
作者
Tong San Koh,Dennis Lai-Hong Cheong,Cheen-Hau Tan,C. C. Tchoyoson Lim
出处
期刊:NeuroImage
[Elsevier]
日期:2006-04-01
卷期号:30 (2): 426-435
被引量:25
标识
DOI:10.1016/j.neuroimage.2005.09.032
摘要
Quantitative estimates of physiological parameters associated with cerebral blood flow can be derived from the analysis of dynamic contrast-enhanced (DCE) images, using an appropriate model of the underlying tissue impulse residue function. The theoretical formulation of a distributed parameter model of tissue microcirculation, which accounts for the effects of capillary permeability and transit time distribution, is presented here. This model considers a statistical distribution of capillary-tissue units, each described by a distributed parameter model that accounts for convective transport within the capillary and transcapillary axial diffusion. Monte Carlo simulations were performed to study the confidence of the parameter estimates, and the model was used to analyze DCE CT images of patient study cases with metastatic cerebral tumors. The tumors were found to yield significantly higher estimates than normal tissues for the parameters associated with the extravasation of tracer and for the standard deviation of capillary transit times. The proposed model can be used with DCE imaging to study the microcirculatory characteristics of cerebral tumors.
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