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Assessment of the exposure to WLAN frequencies of a head model with a cochlear implant

机译:评估使用人工耳蜗植入的头部模型在WLAN频率下的暴露情况

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In the last few years, significant developments have taken place in the field of Wireless Local Area Networks (WLAN), and the popularity of portable devices supporting Wireless Fidelity (Wi-Fi) is continuously growing. At the same time, the number of Active Implanted Medical Devices (AIMD) being placed in patients is widely increasing and among them, cochlear implants (CI) are becoming a common aid. The goal of this study is to investigate the effect on the electromagnetic field distribution and the specific absorption rate (SAR) due to the presence of a CI in a head model during far-field exposure to Wi-Fi frequencies. The head model was obtained by image segmentation, the implant was modelled as a geometric structure, and the exposure sources were modelled as a uniform plane wave (power density = 10 W/m2) at 2.4, 5.2 and 5.8 GHz. Vertical and horizontal polarizations were simulated. Conditions with and without CI were compared. The findings of that are: (1) local differences in the field distribution close to the CI, comparing the head models with or without the CI; (2) higher field strength and point SAR value in the cochlear region very close to the CI; (3) negligible differences in the field strength and point SAR value in the cochlear region far from the CI; (4) negligible variations in the average SAR values in the cochlea and head due to the presence of the CI. The results of this study conclude that insertion of a CI brings moderate localized differences in the E, H and point SAR distribution when evaluated close to the electrode array in the cochlea, while negligible differences are found in the average SAR values both in the cochlea and head, independent of frequency and wave polarization. Bioelectromagnetics 31:546–555, 2010. © 2010 Wiley-Liss, Inc.
机译:在过去的几年中,无线局域网(WLAN)领域取得了重大发展,并且支持无线保真(Wi-Fi)的便携式设备的普及也在不断增长。同时,放置在患者体内的有源植入医疗器械(AIMD)的数量正在大量增加,其中,人工耳蜗(CI)成为一种常见的辅助手段。这项研究的目的是研究由于在远场暴露于Wi-Fi频率期间头部模型中存在CI而对电磁场分布和比吸收率(SAR)的影响。通过图像分割获得头部模型,将植入物建模为几何结构,并将曝光源建模为均匀平面波(功率密度= 10 W / m 2 ),分别为2.4、5.2和5.8 GHz。模拟了垂直和水平极化。比较了有和没有CI的条件。结果是:(1)在接近CI的场分布中存在局部差异,比较有或没有CI的头部模型; (2)在非常接近CI的耳蜗区域有较高的场强和点SAR值; (3)远离CI的耳蜗区域的场强和点SAR值的差异可忽略不计; (4)由于CI的存在,耳蜗和头部平均SAR值的变化可忽略不计。这项研究的结果得出结论,在靠近耳蜗中的电极阵列进行评估时,插入CI会在E,H和点SAR分布方面带来中等程度的局部差异,而在耳蜗和耳蜗中的平均SAR值均可以忽略不计头,独立于频率和波极化。生物电磁学,2010年31:546-555。©2010 Wiley-Liss,Inc.

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