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An Innovative Adaptive Control Strategy for Sensorized Left Ventricular Assist Devices

机译:左心室辅助传感器的创新自适应控制策略

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Nowadays advanced heart failure is mainly treated through heart transplantation. However, the low availability of donors makes the research of alternative therapies urgent. Continuous-flow left ventricular assist devices (LVADs) are going to assume a more significant role in assisting the failing heart. A recent challenge in clinical practice is the possibility to use LVAD as long-term therapy rather than as a bridge to transplantation. For this reason, more comfortable devices, able to dynamically adapt to the physiological cardiac demand in relation to the patient activity level, are needed in order to improve the life quality of patients with implants. Nevertheless, no control system has been developed yet for this purpose. This work proposes an innovative control strategy for a novel sensorized LVAD, based on the continuous collection of physical and functional parameters coming from implantable sensors and from the LVAD itself. Thanks to the proposed system, both the patient and the LVAD conditions are continuously monitored and the LVAD activity regulated accordingly. Specifically, a Proportional Integrative (PI) and a threshold control algorithms have been implemented, respectively based on flow and pressure feedbacks collected from the embedded sensors. To investigate the feasibility and applicability of this control strategy, an on-bench platform for LVADs sensing and monitoring has been developed and tested.
机译:如今,晚期心力衰竭主要通过心脏移植来治疗。但是,由于供体的利用率低,迫切需要替代疗法的研究。持续流动的左心室辅助装置(LVAD)在协助心脏衰竭方面将扮演更重要的角色。临床实践中最近的挑战是使用LVAD作为长期治疗而不是作为移植桥梁的可能性。因此,为了改善植入物患者的生活质量,需要更舒适的设备,该设备能够动态地适应与患者活动水平相关的生理心脏需求。然而,尚未为此目的开发控制系统。这项工作基于来自植入式传感器和LVAD本身的物理和功能参数的连续收集,提出了一种新颖的传感器化LVAD的创新控制策略。由于采用了建议的系统,可以连续监测患者和LVAD状况,并相应地调节LVAD活性。具体而言,分别基于从嵌入式传感器收集的流量和压力反馈,已实现了比例积分(PI)和阈值控制算法。为了研究此控制策略的可行性和适用性,已经开发并测试了用于LVAD传感和监视的台式平台。

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