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一种新型胎儿心率监测器测试方法。

A New Approach for Testing Fetal Heart Rate Monitors.

机构信息

Department of Engineering, University of Roma Tre, Via Vito Volterra, 62, 00146 Rome, Italy.

Department of Cybernetics and Biomedical Engineering, Faculty of Electrical Engineering and Computer Science, VSB-Technical University of Ostrava, 17. listopadu 2172/15, 708 00 Ostrava-Poruba, Czech Republic.

出版信息

Sensors (Basel). 2020 Jul 25;20(15):4139. doi: 10.3390/s20154139.

Abstract

In this paper, a new approach for the periodical testing and the functionality evaluation of a fetal heart rate monitor device based on ultrasound principle is proposed. The design and realization of the device are presented, together with the description of its features and functioning tests. In the designed device, a relay element, driven by an electric signal that allows switching at two specific frequencies, is used to simulate the fetus and the mother's heartbeat. The simulator was designed to be compliant with the standard requirements for accurate assessment and measurement of medical devices. The accuracy of the simulated signals was evaluated, and it resulted to be stable and reliable. The generated frequencies show an error of about 0.5% with respect to the nominal one while the accuracy of the test equipment was within ±3% of the test signal set frequency. This value complies with the technical standard for the accuracy of fetal heart rate monitor devices. Moreover, the performed tests and measurements show the correct functionality of the developed simulator. The proposed equipment and testing respect the technical requirements for medical devices. The features of the proposed device make it simple and quick in testing a fetal heart rate monitor, thus providing an efficient way to evaluate and test the correlation capabilities of commercial apparatuses.

摘要

本文提出了一种基于超声原理的胎儿心率监护仪周期性检测和功能评估的新方法。介绍了该设备的设计和实现,描述了其特点和功能测试。在设计的设备中,使用了一个由允许在两个特定频率切换的电信号驱动的继电器元件来模拟胎儿和母亲的心跳。该模拟器的设计符合准确评估和测量医疗器械的标准要求。评估了模拟信号的准确性,结果表明其稳定可靠。产生的频率相对于标称频率的误差约为 0.5%,而测试设备的精度在测试信号设定频率的±3%范围内。该值符合胎儿心率监护仪精度的技术标准。此外,所进行的测试和测量表明,所开发的模拟器具有正确的功能。所提出的设备和测试符合医疗器械的技术要求。所提出设备的特点使其在测试胎儿心率监护仪时简单快捷,从而为评估和测试商业设备的相关性能提供了一种有效的方法。

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