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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Determination of the critical buckling pressure of blood vessels using the energy approach.
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Determination of the critical buckling pressure of blood vessels using the energy approach.

机译:使用能量方法确定血管的临界屈曲压力。

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The stability of blood vessels under lumen blood pressure is essential to the maintenance of normal vascular function. Differential buckling equations have been established recently for linear and nonlinear elastic artery models. However, the strain energy in bent buckling and the corresponding energy method have not been investigated for blood vessels under lumen pressure. The purpose of this study was to establish the energy equation for blood vessel buckling under internal pressure. A buckling equation was established to determine the critical pressure based on the potential energy. The critical pressures of blood vessels with small tapering along their axis were estimated using the energy approach. It was demonstrated that the energy approach yields both the same differential equation and critical pressure for cylindrical blood vessel buckling as obtained previously using the adjacent equilibrium approach. Tapering reduced the critical pressure of blood vessels compared to the cylindrical ones. This energy approach provides a useful tool for studying blood vessel buckling and will be useful in dealing with various imperfections of the vessel wall.
机译:在管腔血压下的血管稳定性对于维持正常的血管功能至关重要。最近已经为线性和非线性弹性动脉模型建立了微分屈曲方程。但是,尚未对管腔压力下的血管研究弯曲屈曲中的应变能和相应的能量方法。这项研究的目的是建立内压下血管屈曲的能量方程。建立了屈曲方程,根据势能确定临界压力。使用能量方法估算了沿其轴线逐渐变细的血管的临界压力。结果表明,能量方法对于圆柱血管屈曲产生的微分方程和临界压力与先前使用相邻平衡方法获得的结果相同。与圆柱形相比,渐缩降低了血管的临界压力。这种能量方法为研究血管屈曲提供了有用的工具,并且在处理血管壁的各种缺陷方面将是有用的。

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