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Efficient Tissue Ablation using a Laser Tunable in the Water Absorption Band at 3 microns with little collateral damage

机译:使用在3微米的吸水带中可调谐的激光进行有效的组织消融,几乎没有附带损害

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摘要

Lasers can significantly advance medical diagnostics and treatment. At high power, they are typically used as cutting tools during surgery. For lasers that are used as knifes, radiation wavelengths in the far ultraviolet and in the near infrared spectral regions are favored because tissue has high contents of collagen and water. Collagen has an absorption peak around 190 nm, while water is in the near infrared around 3,000 nm. Changing the wavelength across the absorption peak will result in significant differences in laser tissue interactions. Tunable lasers in the infrared that could optimize the laser tissue interaction for ablation and/or coagulation are not available until now besides the Free Electron Laser (FEL). Here we demonstrate efficient tissue ablation using a table-top mid-IR laser tunable between 3,000 to 3,500 nm. A detailed study of the ablation has been conducted in different tissues. Little collateral thermal damage has been found at a distance above 10-20 microns from the ablated surface. Furthermore, little mechanical damage could be seen in conventional histology and by examination of birefringent activity of the samples using a pair of cross polarizing filters.
机译:激光可以大大促进医学诊断和治疗。在大功率下,它们通常在手术期间用作切割工具。对于用作刀的激光器,由于组织具有高含量的胶原蛋白和水,因此在远紫外和近红外光谱区域中的辐射波长是有利的。胶原蛋白在190 nm附近有一个吸收峰,而水在3,000 nm附近的近红外中。改变吸收峰上的波长将导致激光组织相互作用的显着差异。迄今为止,除了自由电子激光器(FEL)以外,还没有能够优化激光组织相互作用以进行消融和/或凝结的红外可调激光器。在这里,我们演示了使用可在3,000至3500 nm之间可调的台式中红外激光进行的有效组织消融。已经在不同组织中进行了详细的消融研究。在距烧蚀表面的距离大于10-20微米处,几乎没有发现附带的热损伤。此外,在常规组织学中以及通过使用一对交叉偏振滤光片检查样品的双折射活性,几乎看不到机械损伤。

著录项

  • 来源
    《Photonic therapeutics and diagnostics X》|2014年|89262H.1-89262H.6|共6页
  • 会议地点 San Francisco CA(US)
  • 作者单位

    Deptartment of Otolaryngology, Northwestern University, 303 E. Chicago Ave, Searle 12-561, Chicago, IL 60611, USA;

    Deptartment of Otolaryngology, Northwestern University, 303 E. Chicago Ave, Searle 12-561, Chicago, IL 60611, USA, Department of Physics, Sofia University, 5 James Bourchier Blvd., Sofia, 1164, Bulgaria;

    Deptartment of Otolaryngology, Northwestern University, 303 E. Chicago Ave, Searle 12-561, Chicago, IL 60611, USA;

    Department of Physics, Sofia University, 5 James Bourchier Blvd., Sofia, 1164, Bulgaria;

    Department of Medicine, Sofia University, 1 Kozyak Str., Sofia, Bulgaria;

    Deptartment of Otolaryngology, Northwestern University, 303 E. Chicago Ave, Searle 12-561, Chicago, IL 60611, USA;

    Deptartment of Otolaryngology, Northwestern University, 303 E. Chicago Ave, Searle 12-561, Chicago, IL 60611, USA, Department of Physics, Sofia University, 5 James Bourchier Blvd., Sofia, 1164, Bulgaria;

    Deptartment of Otolaryngology, Northwestern University, 303 E. Chicago Ave, Searle 12-561, Chicago, IL 60611, USA, Department of Biomedical Engineering, Northwestern University, 2145 Sheridan Road, Tech E310, Evanston, IL 60208, USA, The Hugh Knowles Center, Department of Communication Sciences and Disorders, Northwestern University, Evanston, IL 60208, USA;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    laser-tissue interaction; near-infrared; laser; ablation; surgery;

    机译:激光与组织的相互作用近红外;激光;消融手术;
  • 入库时间 2022-08-26 13:45:06

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