Mirzajani Hadi, Kraft Michael
Department of Electrical and Electronics Engineering, Koç University, Rumelifeneri Yolu, Sarıyer, Istanbul, 34450 Turkey.
Department of Electrical Engineering (ESAT-MNS), KU Leuven, 3000 Leuven, Belgium.
ACS Sens. 2024 Sep 27;9(9):4328-4363. doi: 10.1021/acssensors.4c00442. Epub 2024 Sep 6.
Cardiovascular diseases (CVDs) are a predominant global health concern, accounting for over 17.9 million deaths in 2019, representing approximately 32% of all global fatalities. In North America and Europe, over a million adults undergo cardiac surgeries annually. Despite the benefits, such surgeries pose risks and require precise postsurgery monitoring. However, during the postdischarge period, where monitoring infrastructures are limited, continuous monitoring of vital signals is hindered. In this area, the introduction of implantable electronics is altering medical practices by enabling real-time and out-of-hospital monitoring of physiological signals and biological information postsurgery. The multimodal implantable bioelectronic platforms have the capability of continuous heart sensing and stimulation, in both postsurgery and out-of-hospital settings. Furthermore, with the emergence of machine learning algorithms into healthcare devices, next-generation implantables will benefit artificial intelligence (AI) and connectivity with skin-interfaced electronics to provide more precise and user-specific results. This Review outlines recent advancements in implantable bioelectronics and their utilization in cardiovascular health monitoring, highlighting their transformative deployment in sensing and stimulation to the heart toward reaching truly personalized healthcare platforms compatible with the Sustainable Development Goal 3.4 of the WHO 2030 observatory roadmap. This Review also discusses the challenges and future prospects of these devices.
心血管疾病(CVDs)是全球主要的健康问题,2019年导致超过1790万人死亡,约占全球总死亡人数的32%。在北美和欧洲,每年有超过100万成年人接受心脏手术。尽管手术有益,但此类手术存在风险,术后需要精确监测。然而,在出院后阶段,由于监测基础设施有限,生命体征的持续监测受到阻碍。在这一领域,可植入电子设备的引入正在改变医疗实践,能够在术后对生理信号和生物信息进行实时院外监测。多模态可植入生物电子平台具备在术后和院外环境中持续心脏传感和刺激的能力。此外,随着机器学习算法在医疗设备中的出现,下一代可植入设备将受益于人工智能(AI)以及与皮肤接口电子设备的连接,以提供更精确和针对用户的结果。本综述概述了可植入生物电子学的最新进展及其在心血管健康监测中的应用,强调了它们在心脏传感和刺激方面的变革性应用,朝着实现与世界卫生组织2030年观测路线图可持续发展目标3.4兼容的真正个性化医疗平台迈进。本综述还讨论了这些设备面临的挑战和未来前景。