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一种使用脉搏血氧仪数据的时频分析来检测自主呼吸健康受试者进行性低血容量的新方法。

A novel approach using time-frequency analysis of pulse-oximeter data to detect progressive hypovolemia in spontaneously breathing healthy subjects.

出版信息

IEEE Trans Biomed Eng. 2011 Aug;58(8). doi: 10.1109/TBME.2011.2144981. Epub 2011 Apr 21.

DOI:10.1109/TBME.2011.2144981
PMID:21518656
Abstract

Accurate and early detection of blood volume loss would greatly improve intraoperative and trauma care. This study has attempted to determine early diagnostic and quantitative markers for blood volume loss by analyzing photoplethysmogram (PPG) data from ear, finger and forehead sites with our high-resolution time-frequency spectral (TFS) technique in spontaneously breathing healthy subjects (n = 11) subjected to lower body negative pressure (LBNP). The instantaneous amplitude modulations present in heart rate (AM HR) and breathing rate (AMBR) band frequencies of PPG signals were calculated from the high-resolution TFS. Results suggested that the changes (P < 0.05) in AMBR and especially in AMHR values can be used to detect the blood volume loss at an early stage of 20% LBNP tolerance when compared to the baseline values. The mean percent decrease in AMHR values at 100% LBNP tolerance was 78.3%, 72.5%, and 33.9% for ear, finger, and forehead PPG signals, respectively. The mean percent increase in AMBR values at 100% LBNP tolerance was 99.4% and 19.6% for ear and finger sites, respectively; AMBR values were not attainable for forehead PPG signal. Even without baseline AMHR values, our results suggest that hypovolemia detection is possible with specificity and sensitivity greater than 90% for the ear and forehead locations when LBNP tolerance is 100%. Therefore, the TFS analysis of noninvasive PPG waveforms is promising for early diagnosis and quantification of hypovolemia at levels not identified by vital signs in spontaneously breathing subjects.

摘要

准确和早期检测血容量损失将极大地改善术中及创伤护理。本研究试图通过分析耳、指和额部光体积描记图(PPG)数据,用我们的高分辨率时频谱(TFS)技术来确定血容量损失的早期诊断和定量标志物,这些数据来自于 11 名自主呼吸健康受试者在接受下体负压(LBNP)时的研究。PPG 信号的心率(AM HR)和呼吸率(AMBR)频带的瞬时幅度调制是从高分辨率 TFS 中计算出来的。结果表明,与基线值相比,在 20%LBNP 耐受时,AMBR 和特别是 AMHR 值的变化(P<0.05)可用于早期检测血容量损失。在 100%LBNP 耐受时,AMHR 值的平均百分比下降分别为耳、指和额 PPG 信号的 78.3%、72.5%和 33.9%。在 100%LBNP 耐受时,AMBR 值的平均百分比增加分别为耳和指部位的 99.4%和 19.6%;额 PPG 信号的 AMBR 值不可用。即使没有基线 AMHR 值,我们的结果表明,当 LBNP 耐受为 100%时,通过 TFS 分析非侵入性 PPG 波形可以以大于 90%的特异性和敏感性检测耳和额部的低血容量。因此,TFS 分析非侵入性 PPG 波形有望在自主呼吸受试者中通过生命体征无法识别的水平,进行低血容量的早期诊断和定量。

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