Brancato Luigi, Keulemans Grim, Verbelen Tom, Meyns Bart, Puers Robert
Department of Electrical Engineering, ESAT-MICAS, KU Leuven, Kasteelpark Arenberg 10, 3001 Heverlee, Belgium.
Department of Cardiovascular Sciences, Experimental Cardiac Surgery, KU Leuven, Herestraat 49, 3000 Leuven, Belgium.
Micromachines (Basel). 2016 Aug 8;7(8):135. doi: 10.3390/mi7080135.
The aim of this study is to investigate the intravascular application of a micro-electro-mechanical system (MEMS) pressure sensor to directly measure the hemodynamic characteristics of a ventricular assist device (VAD). A bio- and hemo-compatible packaging strategy is implemented, based on a ceramic thick film process. A commercial sub-millimeter piezoresistive sensor is attached to an alumina substrate, and a double coating of polydimethylsiloxane (PDMS) and parylene-C is applied. The final size of the packaged device is 2.6 mm by 3.6 mm by 1.8 mm. A prototype electronic circuit for conditioning and read-out of the pressure signal is developed, satisfying the VAD-specific requirements of low power consumption (less than 14.5 mW in continuous mode) and small form factor. The packaged sensor has been submitted to extensive in vitro tests. The device displayed a temperature-independent sensitivity (12 μ V/V/mmHg) and good in vitro stability when exposed to the continuous flow of saline solution (less than 0.05 mmHg/day drift after 50 h). During in vivo validation, the transducer has been successfully used to record the arterial pressure waveform of a female sheep. A small, intravascular sensor to continuously register the blood pressure at the inflow and the outflow of a VAD is developed and successfully validated in vivo.
本研究的目的是研究微机电系统(MEMS)压力传感器在血管内的应用,以直接测量心室辅助装置(VAD)的血流动力学特性。基于陶瓷厚膜工艺实施了一种生物和血液兼容的封装策略。将一个商用亚毫米压阻式传感器附着到氧化铝基板上,并施加聚二甲基硅氧烷(PDMS)和聚对二甲苯-C的双层涂层。封装后的器件最终尺寸为2.6毫米×3.6毫米×1.8毫米。开发了一个用于压力信号调理和读出的原型电子电路,满足VAD特定的低功耗(连续模式下小于14.5毫瓦)和小尺寸要求。封装后的传感器已进行了广泛的体外测试。该器件显示出与温度无关的灵敏度(12μV/V/mmHg),并且在暴露于连续的盐溶液流时具有良好的体外稳定性(50小时后漂移小于0.05 mmHg/天)。在体内验证期间,该传感器已成功用于记录一只雌性绵羊的动脉压力波形。开发了一种小型血管内传感器,用于连续记录VAD流入和流出处的血压,并在体内成功验证。