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Development of motion resistant instrumentation for ambulatory near-infrared spectroscopy

机译:动态非移动近红外光谱仪的研制

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摘要

Ambulatory near-infrared spectroscopy (aNIRS) enables recording of systemic or tissue-specific hemodynamics and oxygenation during a person's normal activities. It has particular potential for the diagnosis and management of health problems with unpredictable and transient hemodynamic symptoms, or medical conditions requiring continuous, long-duration monitoring. aNIRS is also needed in conditions where regular monitoring or imaging cannot be applied, including remote environments such as during spaceflight or at high altitude. One key to the successful application of aNIRS is reducing the impact of motion artifacts in aNIRS recordings. In this paper, we describe the development of a novel prototype aNIRS monitor, called NINscan, and our efforts to reduce motion artifacts in aNIRS monitoring. Powered by 2 AA size batteries and weighting 350 g, NINscan records NIRS, ECG, respiration, and acceleration for up to 14 h at a 250 Hz sampling rate. The system's performance and resistance to motion is demonstrated by long term quantitative phantom tests, Valsalva maneuver tests, and multiparameter monitoring during parabolic flight and high altitude hiking. To the best of our knowledge, this is the first report of multiparameter aNIRS monitoring and its application in parabolic flight.
机译:动态近红外光谱(aNIRS)可以记录人的正常活动期间系统或组织特定的血流动力学和氧合。对于具有不可预测的和短暂的血流动力学症状的健康问题或需要连续,长期监控的医疗状况,它具有诊断和管理健康的特殊潜力。在无法进行常规监视或成像的条件下,包括太空飞行或高空等偏远环境,也需要使用aNIRS。成功应用aNIRS的关键之一是减少运动伪影对aNIRS记录的影响。在本文中,我们描述了一种称为NINscan的新型aNIRS监视器原型的开发,以及我们为减少aNIRS监视中的运动伪影而做出的努力。 NINscan由2节AA大小的电池供电,重量为350 g,可在250 Hz采样率下记录NIRS,ECG,呼吸和加速度长达14小时。长期的定量体模测试,Valsalva机动测试以及抛物线飞行和高海拔远足期间的多参数监视证明了该系统的性能和运动阻力。据我们所知,这是多参数aNIRS监测及其在抛物线飞行中的应用的第一份报告。

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