Biosensors with left ventricular assist devices.
Mahmoud AbbassyMuhammad Zain AliRiya Manas SharmaYohan Porus IraniAdil DahlanMaimoona AzharNadeem AslamBabar HasanAamir HameedPublished in: Heart failure reviews (2024)
Heart failure imposes a significant global health burden, standing as a primary contributor to mortality. Various indicators and physiological shifts within the body may hint at distinct cardiac conditions. Specific biosensors have the capability to identify these changes. Integrating or embedding these biosensors into mechanical circulatory support devices (MCSDs), such as left ventricular assist devices (LVADs), becomes crucial for monitoring alterations in biochemical and physiological factors subsequent to an MCSD implantation. Detecting abnormal changes early in the course of disease progression will allow for improved patient outcomes and prognosis following an MCSD implantation. The aim of this review is to explore the available biosensors that may be coupled or implanted alongside LVADs to monitor biomarkers and changes in physiological parameters. Different fabrication materials for the biosensors are discussed, including their advantages and disadvantages. This review also examines the feasibility of integrating feedback control mechanisms into LVAD systems using data from the biosensors. Challenges facing this emerging technology and future directions for research and development are outlined as well. The overarching goal is to provide an overview of how implanted biosensors may improve the performance and outcomes of LVADs through continuous monitoring and closed-loop control.
Keyphrases
- left ventricular
- heart failure
- global health
- cardiac resynchronization therapy
- label free
- acute myocardial infarction
- public health
- risk factors
- mitral valve
- aortic stenosis
- extracorporeal membrane oxygenation
- machine learning
- coronary artery disease
- deep learning
- atrial fibrillation
- skeletal muscle
- weight loss
- current status
- artificial intelligence