在大型动物肿瘤模型中对 980nm 半导体激光消融系统的临床前评估。
Preclinical assessment of a 980-nm diode laser ablation system in a large animal tumor model.
机构信息
Department of Radiology, Section of Interventional Radiology, University of Texas M. D. Anderson Cancer Center, Houston, TX 77030-4009, USA.
出版信息
J Vasc Interv Radiol. 2010 Apr;21(4):555-61. doi: 10.1016/j.jvir.2010.01.002.
PURPOSE
To characterize the performance of a 980-nm diode laser ablation system in an in vivo tumor model.
MATERIALS AND METHODS
This study was approved by the institutional animal care and use committee. The ablation system consisted of a 15-W, 980-nm diode laser, flexible diffusing-tipped fiber optic, and 17-gauge internally cooled catheter. Ten immunosuppressed dogs were inoculated subcutaneously with canine-transmissible venereal tumor fragments in eight dorsal locations. Laser ablations were performed at 79 sites where inoculations were successful (99%) at powers of 10 W, 12.5 W, and 15 W, with exposure times between 60 and 180 seconds. In 20 cases, multiple overlapping ablations were performed. After the dogs were euthanized, the tumors were harvested, sectioned along the applicator tract, measured, and photographed. Measurements of ablation zone were performed on gross specimen. Histopathology and viability staining was performed with hematoxylin and eosin and nicotinamide adenine dinucleotide hydrogen staining.
RESULTS
Gross pathologic examination confirmed a well circumscribed ablation zone with sharp boundaries between thermally ablated tumor in the center surrounded by viable tumor tissue. When a single applicator was used, the greatest ablation diameters ranged from 12 mm at the lowest dose (10 W, 60 seconds) to 26 mm at the highest dose (15 W, 180 seconds). Multiple applicators created ablation zones as large as 42 mm in greatest diameter (with the lasers operating at 15 W for 120 seconds).
CONCLUSIONS
The new 980-nm diode laser and internally cooled applicator effectively create large ellipsoid thermal ablations in less than 3 minutes.
目的
描述 980nm 二极管激光消融系统在体内肿瘤模型中的性能。
材料和方法
本研究获得机构动物护理和使用委员会的批准。消融系统由 15W、980nm 二极管激光、柔性扩散尖端光纤和 17 号内部冷却导管组成。10 只免疫抑制犬在 8 个背部位置皮下接种犬传染性性病肿瘤碎片。在接种成功的 79 个部位(99%),功率为 10W、12.5W 和 15W,曝光时间为 60-180 秒,进行激光消融。在 20 例中,进行了多次重叠消融。犬死后,采集肿瘤,沿施源器道切开,测量并拍照。在大体标本上测量消融区。苏木精和伊红染色和烟酰胺腺嘌呤二核苷酸氢染色进行组织病理学和活力染色。
结果
大体病理检查证实了一个边界清晰的消融区,中心部位的热消融肿瘤与周围存活的肿瘤组织之间界限分明。当单个施源器使用时,最大消融直径范围从最低剂量(10W、60 秒)的 12mm 到最高剂量(15W、180 秒)的 26mm。多个施源器可产生最大直径达 42mm 的消融区(激光以 15W 运行 120 秒)。
结论
新型 980nm 二极管激光和内部冷却施源器可在 3 分钟内有效产生大的椭圆形热消融。