Mazzurana M, Sandrini L, Vaccari A, Malacarne C, Cristoforetti L, Pontalti R
ITC-irst, Bioelectromagnetism Laboratory, FCS Department--38050 Povo, Trento, Italy.
Radiat Prot Dosimetry. 2004;111(4):445-51. doi: 10.1093/rpd/nch072.
Numerical human models for electromagnetic dosimetry are commonly obtained by segmentation of CT or MRI images and complex permittivity values are ascribed to each issue according to literature values. The aim of this study is to provide an alternative semi-automatic method by which non-segmented images, obtained by a MRI tomographer, can be automatically related to the complex permittivity values through two frequency dependent transfer functions. In this way permittivity and conductivity vary with continuity--even in the same tissue--reflecting the intrinsic realistic spatial dispersion of such parameters. A female human model impinged by a plane wave is tested using finite-difference time-domain algorithm and the results of the total body and layer-averaged specific absorption rate are reported.
用于电磁剂量学的数值人体模型通常通过对CT或MRI图像进行分割获得,并且根据文献值为每个组织赋予复介电常数。本研究的目的是提供一种替代的半自动方法,通过该方法,由MRI断层扫描仪获得的未分割图像可以通过两个频率相关的传递函数自动与复介电常数相关联。通过这种方式,介电常数和电导率会连续变化——即使在同一组织中也是如此——反映了这些参数内在的实际空间色散。使用时域有限差分算法对受平面波照射的女性人体模型进行测试,并报告全身和分层平均比吸收率的结果。