Berlin Heart-R&D, Berlin, Germany.
Artif Organs. 2010 Sep;34(9):726-35. doi: 10.1111/j.1525-1594.2010.01092.x.
A pulsatility-based control algorithm with a self-adapting pulsatility reference value is proposed for an implantable rotary blood pump and is to be tested in computer simulations. The only input signal is the pressure difference across the pump, which is deduced from measurements of the pump's magnetic bearing. A pulsatility index (PI) is calculated as the mean absolute deviation from the mean pressure difference. As a second characteristic, the gradient of the PI with respect to the pump speed is derived. This pulsatility gradient (GPI) is used as the controlled variable to adjust the operating point of the pump when physiological variables such as the systemic arterial pressure, left ventricular contractility, or heart rate change. Depending on the selected mode of operation, the controller is either a linear controller or an extremum-seeking controller. A supervisory mechanism monitors the state of the system and projects the system into the region of convergence when necessary. The controller of the GPI continuously adjusts the reference value for PI. An underlying robust linear controller regulates the PI to the reference value in order to take into account changes in pulmonary venous return. As a means of reacting to sudden changes in the venous return, a suction detection mechanism was included. The control system is robustly stable within a wide range of physiological variables. All the clinician needs to do is to select between the two operating modes. No other adjustments are required. The algorithm showed promising results which encourage further testing in vitro and in vivo.
提出了一种基于脉动的控制算法,该算法具有自适应脉动参考值,用于植入式旋转血泵,并将在计算机模拟中进行测试。唯一的输入信号是泵的压差,该压差是从泵的磁力轴承测量中推导出来的。脉动指数(PI)是通过计算平均压力差的平均值的绝对偏差来计算的。作为第二个特征,推导了 PI 相对于泵速的梯度。该脉动梯度(GPI)用作控制变量,以调整泵的工作点,当生理变量(如全身动脉压、左心室收缩力或心率)发生变化时。根据所选的操作模式,控制器是线性控制器还是极值寻求控制器。一个监督机制监测系统的状态,并在必要时将系统投影到收敛区域。GPI 控制器连续调整 PI 的参考值。一个基本的鲁棒线性控制器将 PI 调节到参考值,以考虑肺静脉回流的变化。作为对静脉回流突然变化的反应手段,包括了抽吸检测机制。控制系统在广泛的生理变量范围内具有稳健的稳定性。临床医生只需要在两种操作模式之间进行选择。不需要进行其他调整。该算法显示出有希望的结果,鼓励进一步进行体外和体内测试。