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Design of PSR with Different Feed Configurations and Partition Lens System for Skin Cancer Treatment

机译:用于皮肤癌治疗的具有不同进料配置和分隔镜系统的PSR设计

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The Prolate Spheroidal Impulse Radiating Antenna (PSIRA) focuses pulsed radiation in the near field with a small beam width allowing the application of non-invasive skin cancer treatment. In this proposed work, SWB (Slanted Wire Bicone), EPH (Elliptical Profile Horn), TSVS (Tapered Slot Vivaldi Shape) and Tapered Arm Conical Plate (TACP) feed antenna configurations for Prolate Spheroidal Reflector (PSR) are explored to enhance the spatial resolution on biological target. The feed antenna is placed at the first focal point and the target is located at the second focal point of the PSR. Next, the resolution of focused electric field on the target is enhanced by using near field focusing lens. A 3 layer partition lens system is placed before the target to reduce the spot size of the focused field on the target. The delivery of subnanosecond pulses using reflector in conjunction with and without partition lens system on the biological target is compared for all feed antenna configurations. Tapered Arm Conical Plate (TACP) fed PSR with the 3 layer partition lens system greatly reduces the spot size to 0.5 cm along lateral direction and 1 cm along axial direction. The enhancement in spatial resolution is much favorable to reduce the damage of healthy tissues during cancer treatment.
机译:扁球形脉冲辐射天线(PSIRA)将脉冲辐射聚焦在近场且波束宽度较小,从而可以应用非侵入性皮肤癌治疗。在这项拟议的工作中,探索了用于扁球面反射镜(PSR)的SWB(斜线双圆锥形),EPH(椭圆形喇叭),TSVS(锥形缝形维瓦尔第形状)和锥形臂锥形板(TACP)馈电天线配置,以增强空间生物目标分辨率。馈电天线位于PSR的第一个焦点,目标位于PSR的第二个焦点。接下来,通过使用近场聚焦透镜来增强目标上聚焦电场的分辨率。将三层分隔透镜系统放置在目标之前,以减小目标上聚焦场的光斑大小。对于所有馈电天线配置,比较了在生物目标上使用反射器(带有或不带有分隔透镜系统)的亚纳秒脉冲的传输。带有3层分隔透镜系统的PSR锥形臂圆锥形板(TACP)大大减小了光斑尺寸,沿横向方向为0.5厘米,沿轴向方向为1厘米。空间分辨率的提高非常有利于减少癌症治疗期间健康组织的损伤。

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