Lumped parameter liver simulation to predict acute haemodynamic alterations following partial resections

血流动力学 肝移植 流入 剪应力 医学 灌注 血流 流出 放射科 外科 心脏病学 移植 机械 地质学 海洋学 物理
作者
Jeffrey Tithof,Timothy L. Pruett,Joseph Sushil Rao
出处
期刊:Journal of the Royal Society Interface [Royal Society]
卷期号:20 (207) 被引量:1
标识
DOI:10.1098/rsif.2023.0444
摘要

Partial liver resections are routinely performed in living donor liver transplantation and to debulk tumours in liver malignancies, but surgical decisions on vessel reconstruction for adequate inflow and outflow are challenging. Pre-operative evaluation is often limited to radiological imaging, which fails to account for post-resection haemodynamic alterations. Substantial evidence suggests post-surgical increase in local volume flow rate enhances shear stress, signalling hepatic regeneration, but excessive shear stress has been postulated to result in small for size syndrome and liver failure. Predicting haemodynamic alterations throughout the liver is particularly challenging due to the dendritic architecture of the vasculature, spanning several orders of magnitude in diameter. Therefore, we developed a mathematical lumped parameter model with realistic heterogeneities capturing inflow/outflow of the human liver to simulate acute perfusion alterations following surgical resection. Our model is parametrized using clinical measurements, relies on a single free parameter and accurately captures established perfusion characteristics. We quantify acute changes in volume flow rate, flow speed and wall shear stress following variable, realistic liver resections and make comparisons with the intact liver. Our numerical model runs in minutes and can be adapted to patient-specific anatomy, providing a novel computational tool aimed at assisting pre- and intra-operative surgical decisions for liver resections.
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