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Design and Benchmark Testing for Open Architecture Reconfigurable Mobile Spirometer and Exhaled Breath Monitor with GPS and Data Telemetry

机译:具有GPS和数据遥测功能的开放式可重构便携式肺活量计和呼气监测仪的设计和基准测试

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摘要

Portable and wearable medical instruments are poised to play an increasingly important role in health monitoring. Mobile spirometers are available commercially, and are used to monitor patients with advanced lung disease. However, these commercial monitors have a fixed product architecture determined by the manufacturer, and researchers cannot easily experiment with new configurations or add additional novel sensors over time. Spirometry combined with exhaled breath metabolite monitoring has the potential to transform healthcare and improve clinical management strategies. This research provides an updated design and benchmark testing for a flexible, portable, open access architecture to measure lung function, using common Arduino/Android microcontroller technologies. To demonstrate the feasibility and the proof-of-concept of this easily-adaptable platform technology, we had 43 subjects (healthy, and those with lung diseases) perform three spirometry maneuvers using our reconfigurable device and an office-based commercial spirometer. We found that our system compared favorably with the traditional spirometer, with high accuracy and agreement for forced expiratory volume in 1 s (FEV1) and forced vital capacity (FVC), and gas measurements were feasible. This provides an adaptable/reconfigurable open access “personalized medicine” platform for researchers and patients, and new chemical sensors and other modular instrumentation can extend the flexibility of the device in the future.
机译:便携式和可穿戴医疗器械有望在健康监测中发挥越来越重要的作用。移动式肺活量计在市场上有售,用于监测患有晚期肺部疾病的患者。但是,这些商用显示器具有由制造商确定的固定产品架构,研究人员无法随时间轻松地尝试新配置或添加其他新型传感器。肺活量测定法与呼出气代谢物监测相结合具有改变医疗保健和改善临床管理策略的潜力。这项研究使用常见的Arduino / Android微控制器技术为灵活,便携式,开放式访问的架构提供了更新的设计和基准测试,以测量肺功能。为了证明这种易于适应的平台技术的可行性和概念验证,我们让43名受试者(健康者和患有肺部疾病的受试者)使用我们的可重构设备和基于办公室的商用肺活量计进行了3次肺活量测定操作。我们发现我们的系统与传统的肺活量计相比具有优越性,并且在1秒内的强制呼气量(FEV1)和强制肺活量(FVC)方面具有较高的准确性和一致性,并且气体测量是可行的。这为研究人员和患者提供了一个可适应/可重构的开放式“个性化医学”平台,新的化学传感器和其他模块化仪器可以在将来扩展设备的灵活性。

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