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A time-frequency respiration tracking system using non-contact bed sensors with harmonic artifact rejection

机译:使用具有谐波伪影抑制功能的非接触式床传感器的时频呼吸跟踪系统

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Sleep apnea is a breathing disorder that affects many individuals and has been associated with serious health conditions such as cardiovascular disease. Clinical diagnosis of sleep apnea requires that a patient spend the night in a sleep clinic while being wired up to numerous obtrusive sensors. We are developing a system that utilizes respiration rate and breathing amplitude inferred from non-contact bed sensors (i.e. load cells placed under bed supports) to detect sleep apnea. Multi-harmonic artifacts generated either biologically or as a result of the impulse response of the bed have made it challenging to track respiration rate and amplitude with high resolution in time. In this paper, we present an algorithm that can accurately track respiration on a second-by-second basis while removing noise harmonics. The algorithm is tested using data collected from 5 patients during overnight sleep studies. Respiration rate is compared with polysomnography estimations of respiration rate estimated by a technician following clinical standards. Results indicate that certain subjects exhibit a large harmonic component of their breathing signal that can be removed by our algorithm. When compared with technician transcribed respiration rates using polysomnography signals, we demonstrate improved accuracy of respiration rate tracking using harmonic artifact rejection (mean error: 0.18 breaths/minute) over tracking not using harmonic artifact rejection (mean error: -2.74 breaths/minute).
机译:睡眠呼吸暂停是一种会影响许多人的呼吸系统疾病,并伴有严重的健康状况,如心血管疾病。睡眠呼吸暂停的临床诊断要求患者在睡眠期间在睡眠诊所中过夜,同时将其连接到众多引人注目的传感器上。我们正在开发一种系统,该系统利用从非接触式床传感器(即放置在床支架下方的称重传感器)推断出的呼吸频率和呼吸幅度来检测睡眠呼吸暂停。床的脉冲响应或生物学上产生的多谐波伪影,使得以高分辨率及时跟踪呼吸频率和幅度具有挑战性。在本文中,我们提出了一种算法,该算法可以在消除噪声谐波的同时每秒精确地跟踪呼吸。使用过夜睡眠研究期间从5位患者收集的数据对算法进行测试。将呼吸速率与技术人员根据临床标准估算的呼吸速率的多导睡眠监测仪进行比较。结果表明,某些受试者在其呼吸信号中表现出较大的谐波分量,可以通过我们的算法将其消除。当与使用多导睡眠图信号记录的呼吸速率进行比较时,我们证明了使用谐波伪影抑制(平均误差:0.18呼吸/分钟)比不使用谐波伪影抑制(平均误差:-2.74呼吸/分钟)的呼吸速率跟踪精度更高。

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