Long Zaiquan, Yao Chenguo, Li Chengxiang, Mi Yan, Sun Caixin
State Key Laboratory of Power Transmission Equipment & System Security and New Technology, Chongqing University, Chongqing 400044, China.
Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2010 Oct;27(5):1128-32.
In the light of optical theory, we advanc an ultra-wideband impulse radiating antenna (IRA) which is composed of an ellipsoidal reflector and a cone radiator. The high-intensity ultra-short electric pulses radiated by IRA can be transferred into the deep target in tissue non-invasively and be focused effectively. With the focused picosecond electric pulses, the organelles (mitochondria) transmembrane potential shall change to collapse under which the tumor cells will be targetly induced to apoptosis, so the method of non-invasive treatment of tumors would be achieved. Based on the time-domain electromagnetic field theory, the propagation characteristics of picosecond electric pulses were analyzed with and without the context of biological tissue, respectively. The results show that the impulse characteristics of input pulse were maintained and the picosecond electric pulses can keep high resolution in target areas. Meanwhile, because of the dispersive nature of medium, the pulse amplitude of the pulses will attenuate and the pulse width will be broadened.
根据光学理论,我们提出了一种由椭圆形反射器和锥形辐射器组成的超宽带脉冲辐射天线(IRA)。IRA辐射的高强度超短电脉冲可以无创地传输到组织深处的目标并有效聚焦。在聚焦的皮秒电脉冲作用下,细胞器(线粒体)跨膜电位会发生变化直至崩溃,在此情况下肿瘤细胞将被靶向诱导凋亡,从而实现肿瘤的无创治疗方法。基于时域电磁场理论,分别分析了有无生物组织情况下皮秒电脉冲的传播特性。结果表明,输入脉冲的脉冲特性得以保持,皮秒电脉冲在目标区域能够保持高分辨率。同时,由于介质的色散特性,脉冲的幅度会衰减,脉冲宽度会变宽。