Avanzolini G, Barbini P, Cappello A, Cevenini G, Pohl V, Sikora T
IEEE Trans Biomed Eng. 1989 Mar;36(3):373-81. doi: 10.1109/10.19858.
The problem of tracking changes in viscoelastic properties of the systemic arterial bed is considered and a recursive estimation procedure, belonging to the class of output-error algorithms with adjustable compensator, is developed and discussed. By means of computer simulations, suitable values are determined for the key design variable which controls the tradeoff between tracking ability and noise sensitivity of the algorithm. In this way, the algorithm allows on-line estimation of arterial compliance, peripheral resistance, and characteristic impedance on the basis of aortic pressure and flow signals. Furthermore, the results obtained from data numerically simulated, as well as measured on a mock circulatory system, demonstrate that the dominant arterial time-constant can be tracked by the algorithm using only measurements of the aortic pressure during diastole.
研究了跟踪体循环动脉床粘弹性特性变化的问题,并开发和讨论了一种属于具有可调补偿器的输出误差算法类别的递归估计程序。通过计算机模拟,为控制算法跟踪能力和噪声敏感性之间权衡的关键设计变量确定了合适的值。通过这种方式,该算法能够基于主动脉压力和流量信号在线估计动脉顺应性、外周阻力和特征阻抗。此外,从数值模拟数据以及在模拟循环系统上测量得到的结果表明,该算法仅使用舒张期主动脉压力的测量值就能跟踪主要的动脉时间常数。