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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Modeling of the Internal Fields Distribution in Human Inner Hearing System Exposed to 900 and 1800 MHz
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Modeling of the Internal Fields Distribution in Human Inner Hearing System Exposed to 900 and 1800 MHz

机译:暴露于900和1800 MHz的人体听觉系统内部场分布的建模

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This paper investigates the internal electric and magnetic field distribution and the specific absorption rate (SAR) values in a magnetic resonance imaging-based model of the inner hearing system exposed to 900 and 1800 MHz. The internal fields distributions were calculated using the Finite Integration Technique. The estimation of the field values was evaluated along lines passing through that target organ, specifically from the vestibular to the cochlear region and from the apex to the base of the cochlea. The specific findings are: 1) higher internal fields strength and SAR value in the vestibular region rather than in the auditory region, especially for the inner ear closer to the external source; 2) higher internal fields strength in the basal and apical region of the cochlea than in the middle one; 3) local differences in the internal fields distribution and SAR value, comparing the head models including or not the inner auditory system model; 4) results' variability evaluated by changing the head-source mutual position and the dielectric properties of the inner hearing system
机译:本文研究了基于磁共振成像的内部听力系统暴露于900和1800 MHz的模型中的内部电场和磁场分布以及比吸收率(SAR)值。使用有限积分技术计算内部场分布。沿着穿过该目标器官的线,特别是从前庭到耳蜗区域以及从耳尖到耳蜗根的线评估场值的估计。具体发现是:1)前庭区域而不是听觉区域的内部场强和SAR值更高,尤其是对于内耳更靠近外部源的情况。 2)耳蜗的基部和根尖区域的内部场强高于中部。 3)比较内部模型和内部听觉模型等头部模型的内部场分布和SAR值的局部差异; 4)通过改变头源相互位置和内部听力系统的介电特性来评估结果的变异性

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