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Automated analysis of paradoxical ribcage motion during sleep in infants.

机译:自动分析婴儿睡眠期间的自相矛盾的胸腔运动。

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Identification of thoracoabdominal asynchrony (TAS) during breathing is currently detected by visual coding of records of ribcage (RC) and abdominal (AB) movements. There is thus a need to automate this process in order to save time and improve TAS detection accuracy. We studied 15 infants of 39-49 weeks postconceptional age. RC and AB signals were recorded continuously by inductance plethysmography for 4-24 hr immediately after herniorraphy. In our novel analysis approach, the records were divided into 10 sec epochs, and the equation RC = alphaAB + beta was fit to each epoch, using recursive linear regression with an exponential memory time constant of 1 and 2 sec. This yielded 10 sec signals for alpha corresponding to each epoch. The fraction of time that each alpha signal was positive was taken as a measure of synchrony between RC and AB for that epoch, while asynchrony was indicated by the fraction of time the signal was negative. We also assessed synchrony and asynchrony using a conventional measure known as thoracic delay (TD), which is based on the degree to which the peaks in RC and AB are coincident in time. Using TD as the basis of comparison, we found that our new recursive least squares method gave a positive predictive value of 99%. We conclude that our recursive least squares method is able to accurately identify portions of the RC and AB records that correspond to TAS, and we speculate that it may be useful in automating detection of TAS.
机译:目前,通过视觉编码胸腔(RC)和腹部(AB)运动的记录来识别呼吸中的胸腹异步(TAS)。因此需要使该过程自动化以节省时间并提高TAS检测精度。我们研究了15个受孕后39-49周的婴儿。疝气后立即通过电感体积描记法连续记录RC和AB信号4-24小时。在我们新颖的分析方法中,使用递归线性回归(指数存储时间常数分别为1和2秒)将记录分为10秒,将RC = alphaAB + beta拟合到每个时期。这产生了与每个时期相对应的10秒的alpha信号。每个alpha信号为正的时间比例被用作该时期RC和AB之间同步的量度,而异步则由信号为负的时间比例来表示。我们还使用称为胸延迟(TD)的常规方法评估了同步和异步,该方法基于RC和AB中的峰值在时间上重合的程度。使用TD作为比较的基础,我们发现新的递归最小二乘法给出了99%的正预测值。我们得出的结论是,我们的递推最小二乘方法能够准确识别RC和AB记录中与TAS对应的部分,并且我们推测它可能对自动检测TAS有用。

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