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Portable SpO{sub}2 monitor: a fast response approach

机译:便携式SPO {SUB} 2显示器:快速响应方法

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Long-term monitoring of human vital signs is becoming one of the most important fields of applied research in biomedical engineering. In order to achieve weeks to months of monitoring, new strategies for sensing, conditioning, processing and communicating have to be developed. While it is relatively easy to monitor some medical parameters at rest, getting reliable measurements and diagnosis during periods of physical activity is very difficult. This is especially true in the case of non-invasive methods, where monitoring techniques are very sensitive to various artefacts appearing when the person is active. Successful results were obtained at the Swiss Center for Electronics and Microtechnology (CSEM) fusing data from different sensors. The key technology resides in sophisticated signal processing approaches for such multi-parameter systems, including advanced signal processing algorithms and low-power implementation on real-time platforms. CSEM has designed and developed a so-called opto-inertial sensing platform to continuously measure physiological signals, such as heart rate (HR), blood oxygenation levels by pulse oximetry (SpO{sub}2) and presently blood pressure (BP). This paper presents the essential issues in applying CSEM's opto-inertial sensing platform for the development of portable hemodynamic sensors.
机译:人类生命体征的长期监测正成为生物医学工程中应用研究中最重要的领域之一。为了达到数周到的监测,必须开发传感,调节,加工和沟通的新策略。虽然在休息时相对容易监测一些医疗参数,但在体育活动期间获得可靠的测量和诊断非常困难。在非侵入性方法的情况下,这尤其如此,其中监测技术对当人有效时出现的各种人工制品非常敏感。在瑞士电子和微技术(CSEM)融合来自不同传感器的数据的成功结果。关键技术驻留在这种多参数系统的复杂信号处理方法中,包括在实时平台上的高级信号处理算法和低功耗实现。 CSEM已经设计和开发了所谓的光学惯性传感平台,以通过脉冲血氧(SPO {Sub} 2)和目前血压(BP)连续测量心率(HR),血氧氧合水平,例如心率(HR),血液氧合水平。本文介绍了CSEM光学思想传感平台在开发便携式血液动力学传感器的基本问题。

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