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首页> 外文期刊>Aviation, space, and environmental medicine. >Electromagnetic interference in pacemakers in single-engine fixed-wing aircraft: a European perspective.
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Electromagnetic interference in pacemakers in single-engine fixed-wing aircraft: a European perspective.

机译:欧洲人对单引擎固定翼飞机中起搏器的电磁干扰。

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BACKGROUND: The aim of this study is to evaluate the possible interference by avionics with cardiac pacemakers of aircrew or passengers/patients in single-engine fixed-wing aircraft. Pacemakers which are implanted in patients are in part electromagnetic sensors and can be subject to interference from various external electromagnetic sources. Although modern (chip-based) pacemakers are effectively shielded from electromagnetic interference (EMI), the magnitude of electromagnetic radiation in cockpits of general aviation aircraft is higher and of a different nature than experienced in daily life. An increasing number of pacemaker-bearing individuals are being transported by air. However, the possible EMI with modern types of pacemakers during flight has not been investigated until now. METHOD: In order to evaluate the effect of EMI on five modern types of pacemakers in the cockpit environment of a single-engine fixed-wing aircraft, we have subjected the pacemakers, each implanted into an artificial thorax, to a series of test flights. Each pacemaker was equipped with data logging capabilities which were used for detection of possible EMI. After each flight, the pacemakers were examined by means of the dedicated programmers. In addition, two single lead ventricular pacemakers (VVI) were analyzed by means of beat-to-beat Holter recordings during two separate flights. This enabled an exact analysis of pacemaker function and of possible EMI. RESULTS: No effect of EMI could be detected in any of the pacemakers by interrogating their internal counters after the test flights. In addition, no signs of EMI could be detected on the Holter recordings of the VVI pacemakers. CONCLUSION: We conclude that modern pacemakers are unaffected by EMI in the cockpit environment of single-engine fixed-wing aircraft.
机译:背景:这项研究的目的是评估航空电子设备对单引擎固定翼飞机中机组人员或乘客/患者心脏起搏器的可能干扰。植入患者体内的起搏器部分是电磁传感器,可能会受到各种外部电磁源的干扰。尽管现代(基于芯片的)起搏器已有效地屏蔽了电磁干扰(EMI),但通用航空飞机驾驶舱中的电磁辐射强度却比日常生活中更高,且性质不同。越来越多的携带起搏器的人被空运。但是,到目前为止,尚未研究现代类型的起搏器在飞行过程中可能产生的EMI。方法:为了评估EMI对单引擎固定翼飞机驾驶舱环境中五种现代类型的起搏器的影响,我们对起搏器进行了一系列的测试飞行,每个起搏器都植入了人工胸腔。每个起搏器都配备了数据记录功能,用于检测可能的EMI。每次飞行后,都会由专门的程序员对起搏器进行检查。此外,在两次单独的飞行中,通过逐次心跳Holter记录分析了两个单心室起搏器(VVI)。这样就可以对起搏器功能和可能的EMI进行精确分析。结果:在试飞后,通过询问其内部计数器,无法在任何起搏器中检测到EMI的影响。此外,在VVI起搏器的Holter录音中无法检测到EMI迹象。结论:我们得出结论,现代起搏器在单引擎固定翼飞机的驾驶舱环境中不受EMI的影响。

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