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Standardized Comparison of Selected Physiological Controllers for Rotary Blood Pumps: In Vitro Study

机译:旋转血液泵选定生理控制器的标准化比较:体外研究

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Abstract Various physiological controllers for left ventricular assist devices (LVADs) have been developed to prevent flow conditions that may lead to left ventricular (LV) suction and overload. In the current study, we selected and implemented six of the most promising physiological controllers presented in literature. We tuned the controllers for the same objectives by using the loop‐shaping method from control theory. The in vitro experiments were derived from literature and included different preload, afterload, and contractility variations. All experiments were repeated with an increased or decreased contractility from the baseline pathological circulation and with simulated sensor drift. The controller performances were compared with an LVAD operated at constant speed (CS) and a physiological circulation. During preload variations, all controllers resulted in a pump flow change that resembled the cardiac output response of the physiological circulation. For afterload variations, the response varied among the controllers, whereas some of them presented a high sensitivity to contractility or sensor drift, leading to LV suction and overload. In such cases, the need for recalibration of the controllers or the sensor is indicated. Preload‐based physiological controllers showed their clinical significance by outperforming the CS operation and promise many benefits for the LVAD therapy. However, their clinical implementation in the near future for long‐term use is highly dependent on the sensor technology and its reliability.
机译:摘要已经开发出用于左心室辅助装置(LVADS)的各种生理控制器,以防止可能导致左心室(LV)吸力和过载的流动条件。在目前的研究中,我们选择并实施了文学中提出的最有希望的生理控制器中的六个。我们通过使用来自控制理论的环形整形方法调整了相同目标的控制器。体外实验源自文献,包括不同的预载荷,后载和收缩性变化。重复所有实验,从基线病理循环和模拟传感器漂移增加或减少的收缩性。将控制器性能与以恒定速度(CS)的LVAD进行比较,以及生理循环。在预加载变化期间,所有控制器导致泵流量变化类似于生理循环的心输出响应。对于余载变化,控制器之间的响应变化,而其中一些呈现出对收缩性或传感器漂移的高灵敏度,导致LV吸力和过载。在这种情况下,指示对控制器或传感器进行重新校准的需要。预载的生理控制器通过表现出CS操作并承诺对LVAD疗法的许多益处来表达了它们的临床意义。然而,它们在不久的将来的临床实施是长期使用的高度依赖于传感器技术及其可靠性。

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