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Bronchoscopically delivered microwave ablation in an in vivo porcine lung model

微波消融 医学 烧蚀 气胸 支气管镜检查 气道 放射科 经皮 薄壁组织 体内 射频消融术 微波食品加热 离体 核医学 生物医学工程 烧蚀区 肺肿瘤 外科 病理 生物技术 内科学 生物
作者
Jan Šebek,Steve Kramer,Rob Rocha,Kun‐Chang Yu,Radoslav Bortel,Warren L. Beard,David S. Biller,David A. Hodgson,Charan Ganta,Henky Wibowo,John Yee,Renelle Myers,Stephen Lam,Punit Prakash
出处
期刊:ERJ Open Research [European Respiratory Society]
卷期号:6 (4): 00146-2020 被引量:12
标识
DOI:10.1183/23120541.00146-2020
摘要

Percutaneous microwave ablation is clinically used for inoperable lung tumour treatment. Delivery of microwave ablation applicators to tumour sites within lung parenchyma under virtual bronchoscopy guidance may enable ablation with reduced risk of pneumothorax, providing a minimally invasive treatment of early-stage tumours, which are increasingly detected with computed tomography (CT) screening. The objective of this study was to integrate a custom microwave ablation platform, incorporating a flexible applicator, with a clinically established virtual bronchoscopy guidance system, and to assess technical feasibility for safely creating localised thermal ablations in porcine lungs in vivo.Pre-ablation CTs of normal pigs were acquired to create a virtual model of the lungs, including airways and significant blood vessels. Virtual bronchoscopy-guided microwave ablation procedures were performed with 24-32 W power (at the applicator distal tip) delivered for 5-10 mins. A total of eight ablations were performed in three pigs. Post-treatment CT images were acquired to assess the extent of damage and ablation zones were further evaluated with viability stains and histopathologic analysis.The flexible microwave applicators were delivered to ablation sites within lung parenchyma 5-24 mm from the airway wall via a tunnel created under virtual bronchoscopy guidance. No pneumothorax or significant airway bleeding was observed. The ablation short axis observed on gross pathology ranged 16.5-23.5 mm and 14-26 mm on CT imaging.We have demonstrated the technical feasibility for safely delivering microwave ablation in the lung parenchyma under virtual bronchoscopic guidance in an in vivo porcine lung model.

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