首页> 外文期刊>International journal of hyperthermia: The official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group >Radiofrequency ablation with a high-power generator: device efficacy in an in vivo porcine liver model.
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Radiofrequency ablation with a high-power generator: device efficacy in an in vivo porcine liver model.

机译:高功率发生器射频消融:在体内猪肝模型中的装置功效。

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PURPOSE: The purpose of this study was to test the feasibility and efficacy of using a high-power generator with nondeployable electrodes to create large zones of coagulation in an in vivo porcine liver model. METHODS: With approval from our institution's research animal care and use committee, 12 female swine (mean weight = 55 kg) were anesthetized and received RF ablation at laparotomy. Twenty-nine ablations were performed in four groups using: (i) a conventional 200-W generator and cluster electrode (n = 4), or an experimental prototype 250-W generator and (ii) a single, 17-gauge electrode (n = 9), (iii) a cluster electrode (n = 8) or (iv) three electrodes spaced 2.0 cm apart in a triangular configuration (n = 8). In the three-electrode group, power was applied by switching between electrodes using a prototype switching device. All electrodes were internally cooled. Ablation zone size, shape and generator data from each group were compared using a mixed-linear model with animals modeled as random effects. RESULTS: The high-power generator was able to increase significantly the zone of coagulation. Mean (+/-SD) ablation diameter was largest in the switched group (4.31 +/- 0.7 cm) followed by the cluster (3.98 +/- 0.5 cm) and single-electrode (3.26 +/- 0.5 cm) groups. Mean diameter in the high-power single-electrode group was no different than the low-power cluster group (3.25 +/- 0.4 cm, p = 0.98). Circularity measures were high (>0.75) in all groups. CONCLUSIONS: Coupling a high-power generator and switching device is feasible. At higher powers, the switching device creates larger zones of ablation than cluster or single electrodes. Single-electrode ablations created with the prototype high-power generator were equivalent to those produced with the cluster electrode at conventional lower powers.
机译:目的:本研究的目的是测试在体内猪肝模型中使用带有不可展开电极的高功率发生器在凝血区域中创建大区域的可行性和有效性。方法:在本机构研究动物护理和使用委员会的批准下,对12头母猪(平均体重= 55公斤)进行麻醉,并在剖腹手术中进行射频消融。使用以下方法在四组中进行了29次消融:(i)常规的200 W发生器和簇电极(n = 4),或实验原型250 W发生器,以及(ii)单个17号电极(n = 9),(iii)簇状电极(n = 8)或(iv)三个电极以三角形配置相隔2.0厘米(n = 8)。在三电极组中,通过使用原型开关装置在电极之间进行切换来施加功率。所有电极均在内部冷却。使用混合线性模型将每组的消融区大小,形状和发生器数据进行了比较,并将动物建模为随机效应。结果:高功率发生器能够显着增加凝结区。平均(+/- SD)消融直径在开关组(4.31 +/- 0.7 cm)中最大,其次是簇(3.98 +/- 0.5 cm)和单电极(3.26 +/- 0.5 cm)组。高功率单电极组的平均直径与低功率簇组的平均直径相同(3.25 +/- 0.4 cm,p = 0.98)。在所有组中,圆度测量均较高(> 0.75)。结论:耦合大功率发电机和开关装置是可行的。在较高功率下,该开关装置会比簇状电极或单个电极产生更大的烧蚀区域。用原型高功率发生器产生的单电极消融效果与用簇电极在常规较低功率下产生的消融效果相同。

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