Tran-Son-Tay Roger, Hwang Minki, Garbey Marc, Jiang Zhihua, Ozaki C Keith, Berceli Scott A
Department of Mechanical & Aerospace Engineering, University of Florida, Gainesville, FL 32611, USA.
Ann Biomed Eng. 2008 Jul;36(7):1083-91. doi: 10.1007/s10439-008-9495-y. Epub 2008 Apr 15.
Vein graft intimal hyperplasia induced by shear stress is considered to be one of the major causes of vein graft failure. We have developed a mathematical model of vein graft intimal hyperplasia induced by shear stress based on experimental data. Intimal thickness and the rate of intimal thickness change are expressed as functions of shear stress and time. The model coefficients are derived from animal experiments where bilateral rabbit carotid vein grafts are exposed to different shear stress levels. Morphology data of the vein grafts are obtained over multiple time points. The model describes the well-known behavior of intimal thickening, which is inversely related to shear stress. It also depicts the time-dependent behavior of vein graft intimal hyperplasia. Finally, the model is used to simulate the intimal growth around a focal stenosis, which was created by ligating the middle of a vein graft using a suture. Simulation results and experimental data agree qualitatively, and demonstrate that the intima thickens more distal to the stenosed area. These experiments establish the potential of the general experiment-based approach for predicting human vein graft remodeling. Other mechanical and biological factors can be included following a similar approach in order to obtain a more accurate vein graft remodeling model.
剪切应力诱导的静脉移植物内膜增生被认为是静脉移植物失败的主要原因之一。我们基于实验数据建立了一个剪切应力诱导的静脉移植物内膜增生的数学模型。内膜厚度和内膜厚度变化率表示为剪切应力和时间的函数。模型系数来自双侧兔颈动脉静脉移植物暴露于不同剪切应力水平的动物实验。在多个时间点获取静脉移植物的形态学数据。该模型描述了众所周知的内膜增厚行为,其与剪切应力呈负相关。它还描绘了静脉移植物内膜增生的时间依赖性行为。最后,该模型用于模拟局灶性狭窄周围的内膜生长,该狭窄是通过用缝线结扎静脉移植物中间而产生的。模拟结果与实验数据在定性上一致,并表明内膜在狭窄区域的更远端增厚。这些实验确定了基于一般实验方法预测人体静脉移植物重塑的潜力。遵循类似方法可以纳入其他机械和生物学因素,以获得更准确的静脉移植物重塑模型。