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一种对伪差具有固有不敏感性的新型脉搏血氧测定法。

A new method for pulse oximetry possessing inherent insensitivity to artifact.

作者信息

Hayes M J, Smith P R

机构信息

Department of Electronic and Electrical Engineering, Loughborough University, Leicestershire, UK.

出版信息

IEEE Trans Biomed Eng. 2001 Apr;48(4):452-61. doi: 10.1109/10.915711.

Abstract

A new method for pulse oximetry is presented that possesses an inherent insensitivity to corruption by motion artifact, a primary limitation in the practical accuracy and clinical applicability of current technology. Artifact corruption of the underlying photoplethysmographic signals is reduced in real time, using an electronic processing methodology that is based upon inversion of a physical artifact model. This fundamental approach has the potential to provide uninterrupted output and superior accuracy under conditions of sustained subject motion, therefore, widening the clinical scope of this useful measurement. A new calibration technique for oxygen saturation is developed for use with these processed signals, which is shown to be a generalization of the classical interpretation. The detailed theoretical and practical issues of implementation are then explored, highlighting important engineering simplifications implicit in this new approach. A quantitative investigation of the degree of insensitivity to artifact is also undertaken, with the aid of a custom electronic system and commercial pulse oximeter probes, which is compared and contrasted with the performance of a conventional implementation. It is demonstrated that this new methodology results in a reduced sensitivity to common classes of motion artifact, while retaining the generality to be combined with conventional signal processing techniques.

摘要

本文提出了一种新的脉搏血氧测定法,该方法对运动伪影干扰具有内在的不敏感性,而运动伪影干扰是当前技术在实际准确性和临床适用性方面的主要限制因素。利用基于物理伪影模型反演的电子处理方法,可实时减少潜在光电容积脉搏波信号的伪影干扰。这种基本方法有可能在受试者持续运动的情况下提供不间断的输出和更高的准确性,从而扩大这种有用测量方法的临床应用范围。针对这些处理后的信号,开发了一种新的血氧饱和度校准技术,该技术被证明是经典解释的推广。然后探讨了实施过程中详细的理论和实际问题,突出了这种新方法中隐含的重要工程简化。借助定制电子系统和商用脉搏血氧仪探头,还对该方法对伪影的不敏感程度进行了定量研究,并与传统方法的性能进行了比较和对比。结果表明,这种新方法降低了对常见运动伪影类别的敏感性,同时保留了与传统信号处理技术相结合的通用性。

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