Atabek H B
Biophys J. 1968 May;8(5):626-49. doi: 10.1016/s0006-3495(68)86512-9.
To give a realistic representation of the pulse propagation in arteries a theoretical analysis of the wave propagation through a viscous incompressible fluid contained in an initially stressed elastic tube is considered. The tube is assumed to be orthotropic and its longitudinal motion is constrained by a uniformly distributed additional mass, a dashpot and a spring. The fluid is assumed to be Newtonian. The analysis is restricted to propagation of small amplitude harmonic waves whose wavelength is large compared to the radius of the vessel. Elimination of arbitrary constants from the general solutions of the equations of motion of the fluid and the wall gives a frequency equation to determine the velocity of propagation. Two roots of this equation give the velocity of propagation of two distinct outgoing waves. One of the waves propagates slower than the other. The propagation properties of s lower waves are very slightly affected by the degree of anisotropy of the wall. The velocity of propagation of faster waves decreases as the ratio of the longitudinal modulus of elasticity to the circumferential modulus decreases; transmission of these waves is very little affected. The influence of the tethering on the propagation velocity of slower waves is negligibly small; transmission of these waves is seriously affected. In tethered tubes faster waves are completely attenuated.
为了真实地描述动脉中的脉搏传播,我们考虑对通过初始受应力弹性管中粘性不可压缩流体的波传播进行理论分析。假设该管是正交各向异性的,其纵向运动受到均匀分布的附加质量、阻尼器和弹簧的约束。假设流体是牛顿流体。分析限于小振幅谐波的传播,其波长与血管半径相比很大。从流体和管壁运动方程的通解中消去任意常数,得到一个频率方程来确定传播速度。该方程的两个根给出了两个不同出射波的传播速度。其中一个波比另一个传播得慢。较慢波的传播特性受管壁各向异性程度的影响非常小。较快波的传播速度随着纵向弹性模量与周向弹性模量之比的减小而降低;这些波的传播受影响很小。束缚对较慢波传播速度的影响小到可以忽略不计;这些波的传播受到严重影响。在束缚管中,较快波完全衰减。