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老年人群颈动脉内/中个体间血流变异性的特定人群建模。

Population-specific modelling of between/within-subject flow variability in the carotid arteries of the elderly.

机构信息

Centre for Computational Imaging and Simulation Technologies in Biomedicine (CISTIB), School of Computing, University of Leeds.

出版信息

Int J Numer Method Biomed Eng. 2020 Jan;36(1):e3271. doi: 10.1002/cnm.3271. Epub 2019 Nov 27.

Abstract

Computational fluid dynamics models are increasingly proposed for assisting the diagnosis and management of vascular diseases. Ideally, patient-specific flow measurements are used to impose flow boundary conditions. When patient-specific flow measurements are unavailable, mean values of flow measurements across small cohorts are used as normative values. In reality, both the between-subjects and within-subject flow variabilities are large. Consequently, neither one-shot flow measurements nor mean values across a cohort are truly indicative of the flow regime in a given person. We develop models for both the between-subjects and within-subject variability of internal carotid flow. A log-linear mixed effects model is combined with a Gaussian process to model the between-subjects flow variability, while a lumped parameter model of cerebral autoregulation is used to model the within-subject flow variability in response to heart rate and blood pressure changes. The model parameters are identified from carotid ultrasound measurements in a cohort of 103 elderly volunteers. We use the models to study intracranial aneurysm flow in 54 subjects under rest and exercise and conclude that OSI, a common wall shear-stress derived quantity in vascular CFD studies, may be too sensitive to flow fluctuations to be a reliable biomarker.

摘要

计算流体动力学模型越来越多地被提出,以辅助血管疾病的诊断和管理。理想情况下,使用特定于患者的流量测量来施加流量边界条件。当无法获得特定于患者的流量测量时,使用小队列的流量测量平均值作为规范值。实际上,受试者之间和受试者内的流量变化都很大。因此,单次流量测量或整个队列的平均值都不能真实反映特定个体的流量情况。我们开发了用于颈内流量的受试者间和受试者内变异性的模型。对数线性混合效应模型与高斯过程相结合,用于模拟受试者间的流量变异性,而大脑自动调节的集总参数模型用于模拟心率和血压变化引起的受试者内流量变异性。模型参数是从 103 名老年志愿者的颈动脉超声测量中确定的。我们使用这些模型研究了 54 名受试者在休息和运动状态下的颅内动脉瘤流量,并得出结论,OSI 是血管 CFD 研究中常用的壁切应力衍生量,可能对流量波动过于敏感,不能作为可靠的生物标志物。

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