Korpinen Leena, Kuisti Harri, Tarao Hiroo, Elovaara Jarmo, Virtanen Vesa
a Tampere University of Technology , Finland.
Int J Occup Saf Ergon. 2015;21(2):229-32. doi: 10.1080/10803548.2015.1029286.
The use of cardiac pacemakers (PMs) increases in Western countries. The aim of the study is to investigate cardiac pacemakers (PMs) using a human-shaped phantom in magnetic fields of a shunt reactor at a 400 kV substation. We performed seven PM experiments using a phantom. Two locations close to the shunt reactors were chosen. The magnetic field exposure was over 1000 µT in one location and over 600 µT in the other one. The magnetic field exposure did not disturb the tested five different PMs (in unipolar or bipolar configurations). It can be stated that in our experiment, the magnetic field exposure (over 600 µT and over 1000 µT) did not disturb the PMs (in unipolar or bipolar configurations). Since we only studied some PMs, it is possible that the magnetic field exposure at 400 kV substations can cause disturbances to other PMs. However, the risk of disturbances does not seem to be high.
在西方国家,心脏起搏器(PMs)的使用呈上升趋势。本研究的目的是在一座400 kV变电站的并联电抗器磁场中,使用人形仿真模型对心脏起搏器(PMs)进行研究。我们使用一个仿真模型进行了七次PM实验。选择了两个靠近并联电抗器的位置。其中一个位置的磁场暴露超过1000 μT,另一个位置超过600 μT。磁场暴露并未干扰所测试的五种不同的PM(单极或双极配置)。可以说,在我们的实验中,磁场暴露(超过600 μT和超过1000 μT)并未干扰PM(单极或双极配置)。由于我们仅研究了部分PM,400 kV变电站的磁场暴露有可能会对其他PM造成干扰。然而,干扰风险似乎并不高。