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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >Model of Steady-state Temperature Rise in Multilayer Tissues Due to Narrow-beam Millimeter-wave Radiofrequency Field Exposure
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Model of Steady-state Temperature Rise in Multilayer Tissues Due to Narrow-beam Millimeter-wave Radiofrequency Field Exposure

机译:模型的稳态温度上升多层组织由于窄射线毫米波射频场接触

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摘要

The assessment of health effects due to localized exposures from radiofrequency fields is facilitated by characterizing the steady-state, surface temperature rise in tissue. A closed-form analytical model was developed that relates the steady-state, surface temperature rise in multilayer planar tissues as a function of the spatial-peak power density and beam dimensions of an incident millimeter wave. Model data was derived from finite-difference solutions of the Pennes bioheat transfer equation for both normal-incidence plane waves and for narrow, circularly symmetric beams with Gaussian intensity distribution on the surface. Monte Carlo techniques were employed by representing tissue layer thicknesses at different body sites as statistical distributions compiled from human data found in the literature. The finite-difference solutions were validated against analytical solutions of the bioheat equation for the plane wave case and against a narrow-beam solution performed using a commercial multiphysics simulation package. In both cases, agreement was within 1-2%. For a given frequency, the resulting analytical model has four input parameters, two of which are deterministic, describing the level of exposure (i.e., the spatial-peak power density and beam width). The remaining two are stochastic quantities, extracted from the Monte Carlo analyses. The analytical model is composed of relatively simple functions that can be programmed in a spreadsheet. Demonstration of the analytical model is provided in two examples: the calculation of spatial-peak power density vs. beam width that produces a predefined maximum steady-state surface temperature, and the performance evaluation of various proposed spatial-averaging areas for the incident power density.
机译:由于局部健康影响的评估从射频场接触通过描述稳态,在组织表面温度上升。分析模型相关的开发稳态,表面温度上升多层平面组织的功能spatial-peak功率密度和梁的尺寸一个事件毫米波。来自有限差分的解决方案人们bioheat传递方程为波垂直入射平面狭窄,圆对称高斯光束表面强度分布。卡洛技术受雇于代表组织层厚度在不同身体部位使用从人类的统计分布编译数据在文献中找到。有限差分解决方案验证针对bioheat的解析解方程对于平面波和反对窄束使用商业解决方案执行多重物理量模拟方案。协议是在1 - 2%。结果分析模型有四个输入参数,其中两个是决定性的,描述的暴露程度(即spatial-peak功率密度和波束宽度)。剩下的两个是随机量,从蒙特卡洛分析。分析模型是由相对简单函数可以被编程电子表格。模型中提供了两个例子:计算spatial-peak功率密度vs。波束宽度产生一个预定义的最大值稳态表面温度,绩效评估的各种建议spatial-averaging入射功率的领域密度。

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