Duke University, Durham, NC 27708, USA.
Phys Med Biol. 2012 Jan 21;57(2):329-41. doi: 10.1088/0031-9155/57/2/329. Epub 2011 Dec 14.
Increased hepatic venous pressure can be observed in patients with advanced liver disease and congestive heart failure. This elevated portal pressure also leads to variation in acoustic radiation-force-derived shear wave-based liver stiffness estimates. These changes in stiffness metrics with hepatic interstitial pressure may confound stiffness-based predictions of liver fibrosis stage. The underlying mechanism for this observed stiffening behavior with pressurization is not well understood and is not explained with commonly used linear elastic mechanical models. An experiment was designed to determine whether the stiffness increase exhibited with hepatic pressurization results from a strain-dependent hyperelastic behavior. Six excised canine livers were subjected to variations in interstitial pressure through cannulation of the portal vein and closure of the hepatic artery and hepatic vein under constrained conditions (in which the liver was not free to expand) and unconstrained conditions. Radiation-force-derived shear wave speed estimates were obtained and correlated with pressure. Estimates of hepatic shear stiffness increased with changes in interstitial pressure over a physiologically relevant range of pressures (0-35 mmHg) from 1.5 to 3.5 m s(-1). These increases were observed only under conditions in which the liver was free to expand while pressurized. This behavior is consistent with hyperelastic nonlinear material models that could be used in the future to explore methods for estimating hepatic interstitial pressure noninvasively.
在晚期肝病和充血性心力衰竭患者中可以观察到肝静脉压升高。这种升高的门静脉压也会导致基于声辐射力的剪切波的肝硬度估计的变化。肝硬度测量值随肝间质压力的变化可能会混淆基于肝纤维化分期的硬度预测。这种加压时观察到的僵硬行为的潜在机制尚不清楚,并且不能用常用的线性弹性力学模型来解释。设计了一项实验来确定肝加压时表现出的硬度增加是否是由应变相关的超弹性行为引起的。对六个离体犬肝进行实验,通过门静脉插管和肝动脉和肝静脉的闭合,在约束条件(肝不能自由扩张)和非约束条件下,使间质压力发生变化。获得了基于辐射力的剪切波速度估计值,并与压力相关联。肝剪切刚度的估计值随着间质压力在生理相关的压力范围内(0-35mmHg)从 1.5 增加到 3.5m/s。仅在加压时肝脏可以自由扩张的情况下观察到这种增加。这种行为与超弹性非线性材料模型一致,未来可以使用这些模型探索非侵入性估计肝间质压力的方法。