Zinno C, Agnesi F, D'Alesio G, Dushpanova A, Brogi L, Camboni D, Bernini F, Terlizzi D, Casieri V, Gabisonia K, Alibrandi L, Grigoratos C, Magomajew J, Aquaro G D, Schmitt S, Detemple P, Oddo C M, Lionetti V, Micera S
The BioRobotics Institute, Department of Excellence in Robotics & AI, Scuola Superiore Sant'Anna, Pisa, Italy.
Bio@SNS, Scuola Normale Superiore, Pisa, Italy.
APL Bioeng. 2024 Apr 16;8(2):026102. doi: 10.1063/5.0169207. eCollection 2024 Jun.
The sensing of left ventricular (LV) activity is fundamental in the diagnosis and monitoring of cardiovascular health in high-risk patients after cardiac surgery to achieve better short- and long-term outcome. Conventional approaches rely on noninvasive measurements even if, in the latest years, invasive microelectromechanical systems (MEMS) sensors have emerged as a valuable approach for precise and continuous monitoring of cardiac activity. The main challenges in designing cardiac MEMS sensors are represented by miniaturization, biocompatibility, and long-term stability. Here, we present a MEMS piezoresistive cardiac sensor capable of continuous monitoring of LV activity over time following epicardial implantation with a pericardial patch graft in adult minipigs. In acute and chronic scenarios, the sensor was able to compute heart rate with a root mean square error lower than 2 BPM. Early after up to 1 month of implantation, the device was able to record the heart activity during the most important phases of the cardiac cycle (systole and diastole peaks). The sensor signal waveform, in addition, closely reflected the typical waveforms of pressure signal obtained via intraventricular catheters, offering a safer alternative to heart catheterization. Furthermore, histological analysis of the LV implantation site following sensor retrieval revealed no evidence of myocardial fibrosis. Our results suggest that the epicardial LV implantation of an MEMS sensor is a suitable and reliable approach for direct continuous monitoring of cardiac activity. This work envisions the use of this sensor as a cardiac sensing device in closed-loop applications for patients undergoing heart surgery.
在心脏手术后的高危患者中,对左心室(LV)活动的感知对于心血管健康的诊断和监测至关重要,以实现更好的短期和长期预后。传统方法依赖于非侵入性测量,尽管近年来,侵入性微机电系统(MEMS)传感器已成为精确连续监测心脏活动的一种有价值的方法。设计心脏MEMS传感器的主要挑战在于小型化、生物相容性和长期稳定性。在此,我们展示了一种MEMS压阻式心脏传感器,在成年小型猪的心外膜植入心包补片后,能够随时间连续监测LV活动。在急性和慢性情况下,该传感器能够以低于2次/分钟的均方根误差计算心率。在植入长达1个月后的早期,该设备能够记录心动周期最重要阶段(收缩期和舒张期峰值)的心脏活动。此外,传感器信号波形紧密反映了通过心室内导管获得的压力信号的典型波形,为心脏导管插入术提供了一种更安全的替代方法。此外,在取出传感器后对LV植入部位进行的组织学分析显示没有心肌纤维化的迹象。我们的结果表明,MEMS传感器的心外膜LV植入是直接连续监测心脏活动的一种合适且可靠的方法。这项工作设想将这种传感器用作心脏手术患者闭环应用中的心脏传感设备。