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Assembly and testing of a wireless, battery powered epicardial accelerometer for contractility sensing

机译:无线,电池供电的心外膜加速度计的组装和测试,用于收缩力感测

摘要

This work presents the assembly, biocompatible packaging and validation of a three-axis digital accelerometer to record the vibrations generated by the heart during its contraction. The device, designed to be stitched on the outer cardiac wall, is intended to provide information about heart contractility during acute and chronic in-vivo tests and could be used to monitor cardiac functionality in ischaemic patients. A dedicated system was developed (Fig.1) featuring a commercially available miniature three-axis accelerometer (BMA-280 Bosh Sensortec), a microcontroller with an integrated 433MHz wireless transceiver (CC430F5137, Texas Instruments) for data collection and transmission and a 64GBit flash memory (AT45db641e, Adesto) for data logging. The device is specifically designed for very low power consumption and is powered by a 3.3V coin cell battery with a capacity of 40mAh (cr1220, Panasonic). A tailored packaging technique was designed and implemented to minimize the immune response of the host organism while protecting the electronics from the aggressive body fluids. Two successive coatings were applied: a thin parylene-C layer was deposited by chemical vapour deposition and medical PDMS (NUSIL MED-6015) was moulded around the sensor. Three lobes in the PDMS package allow for stitching of the sensor on the cardiac muscle (Fig.2, Fig.3). The final device is 7mm thick and has a diameter of 24mm. The device was initially tested in-vitro for current leakage and water diffusion. Later, in-vivo performance was evaluated recording acceleration signals from different locations on the heart of a sheep during an acute test (Fig.4). Finally, the long term effects of the packaging strategy were investigated during a chronic experiment. Three sensors were implanted on different locations on the heart of a sheep and left in place for two months. At explantation, the sensors were nicely encapsulated in scar tissue making them adherent to the myocardium. No leakage of fluids in the sensors was observed
机译:这项工作介绍了三轴数字加速度计的组装,生物相容性包装和验证,以记录心脏收缩期间由心脏产生的振动。该设备设计用于缝合在心脏外壁上,旨在提供有关急性和慢性体内测试期间心脏收缩力的信息,并可用于监测缺血患者的心脏功能。开发了一个专用系统(图1),该系统具有市售的微型三轴加速度计(BMA-280 Bosh Sensortec),带有用于数据收集和传输的集成433MHz无线收发器(CC430F5137,Texas Instruments)和64GBit闪存的微控制器。内存(AT45db641e,Adesto)用于数据记录。该设备专门为极低的功耗而设计,并由容量为40mAh的3.3V纽扣电池供电(松下(cr1220))。设计并实施了量身定制的包装技术,以最大程度降低宿主生物体的免疫反应,同时保护电子设备免受侵蚀性体液的侵害。施加了两个连续的涂层:通过化学气相沉积法沉积了薄的Parylene-C层,并在传感器周围模制了医用PDMS(NUSIL MED-6015)。 PDMS封装中的三个凸角可用于缝合心肌上的传感器(图2,图3)。最终设备的厚度为7mm,直径为24mm。该设备最初在体外进行了电流泄漏和水扩散测试。后来,在急性试验期间,通过记录绵羊心脏不同位置的加速度信号来评估体内性能(图4)。最后,在长期实验中研究了包装策略的长期效果。三个传感器分别植入了绵羊心脏的不同位置,并放置了两个月。在外植时,传感器被很好地封装在疤痕组织中,使其附着在心肌上。传感器中没有发现液体泄漏

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