Moon Tyler J, Brace Christopher L
Annu Int Conf IEEE Eng Med Biol Soc. 2016 Aug;2016:348-351. doi: 10.1109/EMBC.2016.7590711.
This study presents the development of a dual-slot antenna for small animal tumor ablation. By using a dual-slot design at 8 GHz, it was hypothesized that smaller and more spherical ablations can be produced. After computer-aided design optimization, antennas were fabricated and ablations performed at 5-20 W for 15-120 s with the objective of creating ablations with a diameter/length aspect ratio of at least 0.9. The new dual-slot design at 8 GHz created significantly more spherical ablations than a commercial antenna at 2.45 GHz in ex vivo liver tissue (Average Aspect Ratio 0.8081 vs. 0.4532, p <;<; 0.05). In vivo studies confirmed the highly spherical results ex vivo. Initial testing shows that the dual-slot antenna and 8 GHz generator can be used to ablate tumors in mice.
本研究介绍了一种用于小动物肿瘤消融的双槽天线的研发情况。通过采用8 GHz的双槽设计,推测可以产生更小且更接近球形的消融区。经过计算机辅助设计优化后,制造出天线,并在5 - 20 W功率下进行15 - 120秒的消融,目标是创建直径/长度纵横比至少为0.9的消融区。在离体肝脏组织中,8 GHz的新型双槽设计产生的球形消融区明显多于2.45 GHz的商用天线(平均纵横比分别为0.8081和0.4532,p < 0.05)。体内研究证实了离体实验中高度球形的结果。初步测试表明,双槽天线和8 GHz发生器可用于消融小鼠体内的肿瘤。