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Analysis of the use of Fiber-Optic Technology for the Monitoring Heart Rate of the Pregnant and Fetus

机译:纤维光学技术用途分析孕妇和胎儿的监测心率

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This article describes an analysis of the use of fiber-optic technology in biomedical applications, specifically for the monitoring heart rate of the pregnant (mHR) and fetal (fHR). Authors focused on the use of Fiber Bragg Grating (FBG) and Fiber-Optic Interferometers (FOI). Thanks to the utilization of conventional method so-called cardiotocography (CTG), the mortality of newborn babies during delivery has decreased. Generally, among disadvantages of this method, there is a high sensitivity to noises caused by the movement of a mother, and it is connected with the frequent transfer of ultrasonic converters. This method is not suitable for a long-term continuous monitoring due to a possible influence of ultrasonic radiation on the fetus. Use of fiber-optic technology offers many advantages, for example, use measuring probes based FBG or FOI does not represent any additional radiation burden for the pregnant woman or fetus, fiber-optic measurement probes are resistant to technical artifacts such as electromagnetic interferences (EMI), thus they can be used in situations where it is impossible to use classic methods, e.g. examination by magnetic resonance (MR) or in case of delivery in water. The article describes the first experimental knowledge of based on real measurements.
机译:本文介绍了对生物医学应用中光纤技术的使用的分析,特别是用于监测怀孕(MHR)和胎儿(FHR)的心率。作者集中于使用光纤布拉格光栅(FBG)和光纤干涉仪(FOI)。由于采用常规方法所谓的心肌(CTG),发货过程中新生婴儿的死亡率降低。通常,在该方法的缺点中,对母亲的运动引起的噪声具有高灵敏度,并且它与超声波转换器的频繁转移连接。由于超声波辐射对胎儿的可能影响,该方法不适用于长期连续监测。使用光纤技术提供了许多优点,例如,使用基于测量探针的FBG或FOI不代表孕妇或胎儿的任何额外辐射负担,光纤测量探头对技术伪影具有耐电磁干扰(EMI ),因此它们可以在不可能使用经典方法的情况下使用,例如通过磁共振(MR)或在水中输送的情况进行检查。本文介绍了基于实际测量的第一种实验知识。

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