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On Better Estimating and Normalizing the Relationship between Clinical Parameters: Comparing Respiratory Modulations in the Photoplethysmogram and Blood Pressure Signal (DPOP versus PPV)

机译:更好地估算和归一化临床参数的关系:对血压信号中呼吸调制的比较(DPOP与PPV)

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DPOP (ΔPOP or Delta-POP) is a noninvasive parameter which measures the strength of respiratory modulations present in the pulse oximeter waveform. It has been proposed as a noninvasive alternative to pulse pressure variation (PPV) used in the prediction of the response to volume expansion in hypovolemic patients. We considered a number of simple techniques for better determining the underlying relationship between the two parameters. It was shown numerically that baseline-induced signal errors were asymmetric in nature, which corresponded to observation, and we proposed a method which combines a least-median-of-squares estimator with the requirement that the relationship passes through the origin (the LMSO method). We further developed a method of normalization of the parameters through rescaling DPOP using the inverse gradient of the linear fitted relationship. We propose that this normalization method (LMSO-N) is applicable to the matching of a wide range of clinical parameters. It is also generally applicable to the self-normalizing of parameters whose behaviour may change slightly due to algorithmic improvements.
机译:DPOP(ΔPOP或DELTA-POP)是一种非侵入性参数,其测量脉搏血氧仪波形中存在的呼吸调制强度。已经提出了用于预测对缓血患者体积扩增的响应的脉冲压变化(PPV)的非侵入性替代方案。我们考虑了一些简单的技术,以便更好地确定两个参数之间的基础关系。在数值上示出的是,基线诱导的信号误差在性质上是不对称的,其对应于观察,并且我们提出了一种将最小二乘中位数估计器结合的方法,要求关系通过原点(LMSO方法)。我们通过使用线性拟合关系的逆梯度来重新梯度来进一步开发了参数的标准化方法。我们建议这种归一化方法(LMSO-N)适用于各种临床参数的匹配。它通常也适用于由于算法改进而略微改变的参数的自归三。

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