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A miniature bidirectional telemetry system for in-vivo gastric slow wave recordings

机译:用于体内胃慢波录制的微型双向遥测系统

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摘要

Stomach contractions are initiated and coordinated by an underlying electrical activity (slow waves), and electrical dysrhythmias accompany motility diseases. Electrical recordings taken directly from the stomach provide the most valuable data, but face technical constraints. Serosal or mucosal electrodes have cables that traverse the abdominal wall, or a natural orifice, causing discomfort and possible infection, and restricting mobility. These problems motivated the development of a wireless system. The bidirectional telemetric system constitutes a front-end transponder, a back-end receiver and a graphical user interface. The front-end module conditions the analog signals, then digitizes and loads the data into a radio for transmission. Data receipt at the back-end is acknowledged via a transceiver function. The system was validated in a bench-top study, then validated in-vivo using serosal electrodes connected simultaneously to a commercial wired system. The front-end module was 35×35×27 mm3 and weighed 20 g. Bench-top tests demonstrated reliable communication within a distance range of 30 m, power consumption of 13.5 mW, and 124-hour operation when utilizing a 560-mAh, 3-V battery. In-vivo, slow wave frequencies were recorded identically with the wireless and wired reference systems (2.4 cycles/min), automated activation time detection was modestly better for the wireless system (5% vs 14% false positive rate), and signal amplitudes were modestly higher via the wireless system (462 vs 386 μV; p<0.001). This telemetric system for slow wave acquisition is reliable, power efficient, readily portable and potentially implantable. The device will enable chronic monitoring and evaluation of slow wave patterns in animals and patients.
机译:通过潜在的电活动(慢波)开始并协调胃收缩,并且伴随动力疾病的电性缺血性。直接从胃直接拍摄的电气记录提供最有价值的数据,但面临技术限制。浆膜或粘膜电极具有横穿腹壁的电缆,或天然孔口,引起不适和可能的感染,并限制移动性。这些问题有动力开发无线系统。双向遥测系统构成前端转发器,后端接收器和图形用户界面。前端模块条件调节模拟信号,然后将数据数字化并将数据加载到用于传输的无线电中。后端的数据收据通过收发器功能确认。该系统在台式研究中验证,然后使用同时连接到商业有线系统的浆膜电极进行验证的体内验证。前端模块为35×35×27mm 3 并重量为20克。台式测试在30米,功耗为13.5 mW的距离范围内展示可靠的通信,并且在利用560 MAH,3 V电池时,电量为124小时。体内,慢波频率与无线和有线参考系统(2.4循环/分钟)相同地记录,自动化激活时间检测对于无线系统(5%Vs 14%误差)和信号幅度是较好的通过无线系统适度更高(462 Vs386μV; P <0.001)。该遥测系统为慢波采集可靠,功率高,便携式便携,潜在植入。该装置将使动物和患者慢波模式的慢性监测和评估。

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