Várady Péter, Wildt Ludwig, Benyó Zoltán, Hein Achim
Budapest University of Technology and Economics, Department of Control Engineering and Information Technology, BME-IIT, Pázmány s. 1/d., Room: B.311, H-1117 Budapest, Hungary.
Comput Methods Programs Biomed. 2003 Jul;71(3):283-96. doi: 10.1016/s0169-2607(02)00111-6.
The long-term variability of the fetal heart rate (FHR) provides valuable information on the fetal health status. The routine clinical FHR measurements are usually carried out by the means of ultrasound cardiography. Although the frequent FHR monitoring is recommendable, the high quality ultrasound devices are so expensive that they are not available for home care use. The passive and fully non-invasive acoustic recording called phonocardiography, provides an alternative low-cost measurement method. Unfortunately, the acoustic signal recorded on the maternal abdominal surface is heavily loaded by noise, thus the determination of the FHR raises serious signal processing issues. The development of an accurate and robust fetal phonocardiograph has been since long researched. This paper presents a novel two-channel phonocardiographic device and an advanced signal processing method for determination of the FHR. The developed system provided 83% accuracy compared to the simultaneously recorded reference ultrasound measurements.
胎儿心率(FHR)的长期变异性为胎儿健康状况提供了有价值的信息。常规临床FHR测量通常通过超声心动图进行。尽管建议频繁进行FHR监测,但高质量的超声设备非常昂贵,无法用于家庭护理。被称为心音图的被动且完全非侵入性的声学记录提供了一种低成本测量方法。不幸的是,在母体腹部表面记录的声学信号被大量噪声干扰,因此FHR的测定引发了严重的信号处理问题。长期以来,人们一直在研究开发一种准确且稳健的胎儿心音图仪。本文提出了一种新颖的双通道心音图设备以及一种用于测定FHR的先进信号处理方法。与同时记录的参考超声测量相比,所开发的系统准确率达到83%。