IEEE Trans Biomed Circuits Syst. 2023 Aug;17(4):688-700. doi: 10.1109/TBCAS.2023.3273711. Epub 2023 Oct 6.
This article presents an implantable wireless system for remote hemodynamic monitoring, which enables direct, continuous (24/7), and simultaneous measurement of pulmonary arterial pressure (PAP) and cross-sectional area (CSA) of the artery. The implantable device, which measures 3.2 mm × 2 mm × 10 mm, comprises a piezoresistive pressure sensor, an ASIC implemented in 180-nm CMOS, a piezoelectric ultrasound (US) transducer, and a nitinol anchoring loop. An energy-efficient pressure monitoring system, which employs duty-cycling and spinning excitation technique, achieves 0.44 mmHg resolution in a pressure range from -135 mmHg to +135 mmHg and consumes 1.1 nJ conversion energy. The artery diameter monitoring system utilizes the inductive characteristic of the implant's anchoring loop and achieves 0.24 mm resolution within a diameter range of 20 mm to 30 mm, four times higher than echocardiography lateral resolution. The wireless US power and data platform enables simultaneous power and data transfer employing a single piezoelectric transducer in the implant. The system is characterized with an 8.5 cm tissue phantom and achieves a US link efficiency of 1.8%. The uplink data is transmitted by using an ASK modulation scheme parallel to the power transfer and achieves a modulation index of 26%. The implantable system is tested in an in-vitro experimental setup, which emulates the arterial blood flow, and accurately detects fast pressure peaks for systolic and diastolic pressure changes at both 1.28 MHz and 1.6 MHz US powering frequencies, with corresponding uplink data rates of 40 kbps and 50 kbps.
本文提出了一种用于远程血液动力学监测的植入式无线系统,该系统能够直接、连续(24/7)和同时测量肺动脉压(PAP)和动脉的横截面积(CSA)。植入式设备尺寸为 3.2mm×2mm×10mm,包括压阻式压力传感器、在 180nmCMOS 中实现的 ASIC、压电超声(US)换能器和镍钛诺锚固环。一种采用占空比和旋转激励技术的节能压力监测系统,在-135mmHg 至+135mmHg 的压力范围内实现了 0.44mmHg 的分辨率,转换能量消耗为 1.1nJ。动脉直径监测系统利用植入物锚固环的感应特性,在 20mm 至 30mm 的直径范围内实现了 0.24mm 的分辨率,比超声心动图的横向分辨率高四倍。无线 US 功率和数据平台利用植入物中的单个压电换能器实现同时的功率和数据传输。该系统在 8.5cm 组织体模中进行了特性测试,实现了 1.8%的 US 链路效率。上行链路数据通过与功率传输并行使用 ASK 调制方案传输,并实现了 26%的调制指数。植入式系统在体外实验装置中进行了测试,该装置模拟了动脉血流,并准确检测到 1.28MHz 和 1.6MHz US 供电频率下收缩压和舒张压变化的快速压力峰值,相应的上行数据速率分别为 40kbps 和 50kbps。