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Toward Flexible Microwave Ablation Antennas With a Balun-Free Helical Dipole Design

机译:朝着柔性微波消融天线,带有轻便的螺旋偶极设计

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We present a balun-free dipole antenna for generating localized heating patterns in microwave ablation. The dipole antenna is created by extending the outer and inner conductors of the coaxial cable. One dipole arm is a helical outer conductor encompassing the other arm that is the extended inner conductor. The overall lengths of the helix and the extended inner conductor are three quarters and one quarter of a wavelength, respectively. The helix's current direction reverses a quarter of a wavelength away from the feed point, becoming aligned with the extended inner conductor's current. This creates a relatively low-input impedance, choking the current on the outer surface of the outer conductor. The fields produced by the currents flowing on the dipole arms destructively interfere closer to the feed point, while constructively interfering further from it. This helps the antenna produce nearly spherical ablation zones. A 1.9 GHz prototype of the antenna was fabricated and its ablation performance was experimentally verified in egg white. Measurement results showed good agreement with the simulations and confirmed the antenna's effectiveness in generating localized ablation zones. Our proposed design can serve as a promising candidate for performing minimally invasive ablation therapy within flexible and maneuverable embodiments.
机译:我们提供了一种无间偶极天线,用于在微波消融中产生局部加热模式。通过延伸同轴电缆的外部和内导体来产生偶极天线。一个偶极臂是螺旋外导体,包括另一个是延伸的内导体。螺旋和延伸内导体的总长度分别是三个季度和四分之一的波长。螺旋的电流方向将四分之一的波长远离进料点反转,与延长的内导体的电流变为对齐。这产生了相对较低的输入阻抗,扼杀了外导体的外表面上的电流。通过在偶极子臂上流动的电流产生的田地破坏性地干扰更靠近馈电点,同时建设性地干扰它。这有助于天线产生几乎球形的消融区域。制造了1.9 GHz原型的天线,并在蛋清中实验验证了其消融性能。测量结果表明,与模拟吻合良好,并确认了天线在产生局部消融区域方面的有效性。我们所提出的设计可以作为在柔性和可操纵的实施例内进行微创烧蚀治疗的有前途的候选者。

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