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首页> 外文期刊>Journal of healthcare engineering. >A Kalman Filtering and Nonlinear Penalty Regression Approach for Noninvasive Anemia Detection with Palpebral Conjunctiva Images
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A Kalman Filtering and Nonlinear Penalty Regression Approach for Noninvasive Anemia Detection with Palpebral Conjunctiva Images

机译:卡尔曼滤波和非线性惩罚回归方法用于睑结膜图像的无创性贫血检测

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Noninvasive medical procedures are usually preferable to their invasive counterparts in the medical community. Anemia examining through the palpebral conjunctiva is a convenient noninvasive procedure. The procedure can be automated to reduce the medical cost. We propose an anemia examining approach by using a Kalman filter (KF) and a regression method. The traditional KF is often used in time-dependent applications. Here, we modified the traditional KF for the time-independent data in medical applications. We simply compute the mean value of the red component of the palpebral conjunctiva image as our recognition feature and use a penalty regression algorithm to find a nonlinear curve that best fits the data of feature values and the corresponding levels of hemoglobin (Hb) concentration. To evaluate the proposed approach and several relevant approaches, we propose a risk evaluation scheme, where the entire Hb spectrum is divided into high-risk, low-risk, and doubtful intervals for anemia. The doubtful interval contains the Hb threshold, say 11 g/dL, separating anemia and nonanemia. A suspect sample is the sample falling in the doubtful interval. For the anemia screening purpose, we would like to have as less suspect samples as possible. The experimental results show that the modified KF reduces the number of suspect samples significantly for all the approaches considered here.
机译:在医学界,无创医疗程序通常比有创医疗程序更好。通过睑结膜检查贫血是一种方便的非侵入性手术。该过程可以自动化以降低医疗成本。我们提出了一种通过使用卡尔曼滤波器(KF)和回归方法的贫血检查方法。传统的KF通常用于与时间有关的应用程序中。在这里,我们修改了传统的KF,用于医疗应用中与时间无关的数据。我们仅计算睑结膜图像红色分量的平均值作为我们的识别特征,并使用惩罚回归算法找到最适合特征值和相应血红蛋白(Hb)浓度数据的非线性曲线。为了评估所提议的方法和几种相关方法,我们提出了一种风险评估方案,其中整个Hb频谱分为贫血的高风险,低风险和可疑区间。可疑的时间间隔包含Hb阈值,例如11μg/ dL,将贫血和非贫血分开。可疑样本是落入可疑区间的样本。为了进行贫血筛查,我们希望有尽可能少的可疑样品。实验结果表明,对于此处考虑的所有方法,改进的KF可以显着减少可疑样本的数量。

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