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Analysis of the influence location of the fiber-optic sensor on the measurement and determination the heart rate of the human body

机译:光纤传感器影响位置分析对人体心力率的测量和确定

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Authors of this article focused on the analysis of the influence location of the fiber-optic sensor on the measurement and determination the heart rate of the human body. The sensor uses a Fiber Bragg Grating (FBG) and is encapsulated in the polymer polydimethylsiloxane (PDMS). The combination of fiber-optic technology and its encapsulation in a polymer PDMS allows the use of the sensor e.g. in magnetic resonance environments (MRI). Among currently solved doctors requirements belongs field focusing on the study of hyperventilation and panic attacks of patients during MRI examination due to their very frequent occurrence. Proposed FBG sensor can help doctors to predict (based on heart rate) hyperventilation and panic attacks of patients during MRI examinations. For the most accurate determination of the heart rate, it is necessary to know the influence location of the sensor on the human body. The sensor functionality and analysis of the sensor placement on the heart rate has been verified by a series of real experimental measurements of test subjects in laboratory environment.
机译:本文的作者专注于分析光纤传感器对测量和确定人体心率的影响。传感器使用光纤布拉格光栅(FBG)并将其包封在聚合物聚二甲基硅氧烷(PDMS)中。光纤技术及其在聚合物PDMS中的封装的组合允许使用传感器。在磁共振环境(MRI)中。目前已解决的医生要求属于由于其频繁发生而在MRI考试期间对患者的高通通化和恐慌发作的研究。建议的FBG传感器可以帮助医生预测(根据心率)在MRI检查期间预测患者的过度通气和恐慌发作。为了最准确的心率确定,有必要了解传感器对人体的影响位置。通过在实验室环境中的测试对象的一系列实际实验测量,验证了心率的传感器功能和分析。

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