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Ablation of subsurface tumors using an ultra-short pulse laser

机译:使用超短脉冲激光消融地下肿瘤

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This paper demonstrates the novel technique of ablating subsurface tumors with minimal thermal damage to surrounding healthy tissue using a focused laser beam from an ultra-short pulse diode laser source. Experiments were performed on anesthetized healthy mice as well as mice with mammary tumors in order to demonstrate the fundamental advantages of using a focused-beam, ultra-short pulse laser to ablate subcutaneous tissues. The technique was demonstrated through histological analysis of tissue samples after irradiation of anesthetized mice with or without mammary tumors. To demonstrate the efficacy of subsurface focusing, temperature was monitored at the subsurface tumor location and at the surface in an untranslated sample while irradiating with a focused ultra-short pulsed 1552 nm laser. Results show that temperature rise was dramatically greater at the focal depth than at the surface. Irradiation at the subsurface tumor location while translated over time across the tumor location resulted in precise ablation of the tumor. This work shows that a focused-beam ultra-short pulse 1552 nm laser results in precise ablation at the desired location with high efficacy and a minimal zone of collateral thermal and/or mechanical damage.
机译:本文演示了使用来自超短脉冲二极管激光源的聚焦激光束消融表面肿瘤的新技术,对周围健康组织的热损伤最小。为了证明使用聚焦光束,超短脉冲激光消融皮下组织的基本优势,对麻醉的健康小鼠以及患有乳腺肿瘤的小鼠进行了实验。通过对有或没有乳腺肿瘤的麻醉小鼠进行照射后组织样本的组织学分析证明了该技术。为了证明地下聚焦的功效,在用聚焦的超短脉冲1552 nm激光照射的同时,在未翻译样品中的肿瘤下表面和表面监测温度。结果表明,焦深处的温度升高明显大于表面处的温度升高。在整个肿瘤位置上随着时间推移而平移时,在肿瘤下表面处进行辐照会导致肿瘤的精确消融。这项工作表明,聚焦光束超短脉冲1552 nm激光可在所需位置进行精确的烧蚀,并具有很高的功效,并具有最小的附带热和/或机械损伤区域。

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