首页> 外文会议>Thermal Treatment of Tissue: Energy Delivery and Assessment III; Progress in Biomedical Optics and Imaging; vol.6, no.13 >Electromagnetic Optimization of Dual Mode Antennas for Radiometry Controlled Heating of Superficial Tissue
【24h】

Electromagnetic Optimization of Dual Mode Antennas for Radiometry Controlled Heating of Superficial Tissue

机译:辐射控制表皮组织加热的双模天线的电磁优化

获取原文
获取原文并翻译 | 示例

摘要

The large variance of survival in the treatment of large superficial tumors indicates that the efficacy of current therapies can be dramatically improved. Hyperthermia has shown significant enhancement of response when used in combination with chemotherapy and/or radiation. Control of temperature is a critical factor for treatment quality (and thus effectiveness), since the response of tumor and normal cells is significantly different over a range of just a few degrees (41-45°). For diffuse spreading tumors, microwave conformal arrays have been shown to be a sound solution to deposit the power necessary to reach the goal temperature throughout the targeted tissue. Continuous temperature monitoring is required for feedback control of power to compensate for physiologic (e.g. blood perfusion and dielectric properties) changes. Microwave radiometric thermometry has been proposed to complement individual fluoroptic probes to non-invasively map superficial and sub-surface temperatures. The challenge is to integrate the broadband antenna used for radiometric sensing with the high power antenna used for power deposition. A modified version of the dual concentric conductor antenna presented previously is optimized for such use. Several design challenges are presented including preventing unwanted radiating modes and thermal and electromagnetic coupling between the two antennas, and accommodating dielectric changes of the target tissue. Advanced 3D and planar 2D simulation software are used to achieve an initial optimized design, focused on maintaining appropriate radiation efficiency and pattern for both heating and radiometry antennas. A cutting edge automated measurement system has been realized to characterize the antennas in a tissue equivalent material and to confirm the simulation results. Finally, the guidelines for further development and improvement of this initial design are presented together with a preliminary implementation of the feedback program to be used to control the temperature distribution in variable, inhomogeneous tissue.
机译:治疗大型浅表肿瘤的生存率差异很大,表明当前疗法的疗效可以得到显着提高。与化学疗法和/或放射疗法结合使用时,热疗已显示出显着的反应增强。温度控制是治疗质量(进而影响有效性)的关键因素,因为肿瘤和正常细胞的反应在几度(41-45°)的范围内都显着不同。对于弥散性扩散的肿瘤,微波保形阵列已被证明是一种合理的解决方案,可在整个目标组织中沉积达到目标温度所需的能量。需要进行连续的温度监控以对功率进行反馈控制,以补偿生理变化(例如血液灌注和介电特性)的变化。已经提出了微波辐射测温法来补充单个的荧光探针以非侵入性地绘制表面温度和地下温度。挑战在于将用于辐射感测的宽带天线与用于功率沉积的高功率天线集成在一起。先前提出的双同心导体天线的修改版本已针对这种用途进行了优化。提出了几个设计挑战,包括如何防止两个天线之间的有害辐射模式以及热和电磁耦合,以及如何适应目标组织的介电变化。先进的3D和平面2D仿真软件用于实现最初的优化设计,重点是为加热和辐射天线保持适当的辐射效率和方向图。已经实现了最先进的自动测量系统,以表征组织等效材料中的天线并确认模拟结果。最后,提出了进一步开发和改进此初始设计的指南,以及反馈程序的初步实现,该反馈程序可用于控制可变的,不均匀的组织中的温度分布。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号