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Impacts of vascular diameter and depth on singlet oxygen luminescence imaging in tissue simulating phantom

机译:血管直径和深度对模拟体模中单线态氧发光成像的影响

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摘要

Singlet oxygen (~1O_2) is the primary cytotoxic production in type-II photodynamic therapy (PDT). The correlation between O_2 generation and PDT efficacy during treatment has received considerable attention. The direct detection of ~1O_2 luminescence is the gold standard for ~1O_2 identification. However, the intensity of ~1O_2 luminescence could be influenced by tissue optical properties, location and morphology of lesion, especially for vascular targeting PDT. In this study, the impacts of vascular diameter and depth on ~1O_2 luminescence imaging have been investigated in tissue simulating phantom. A near-IR sensitive InGaAs camera with adaptive optics and CW laser 532 nm were used for fast imaging of ~1O_2 luminescence. Rose Bengal (RB) was used as photosensitizer to generate ~1O_2 during photosensitization. Intralipid was diluted with different concentrations in order to establish the scattering properties of tissues. The capillary tubes, containing solution of RB, with varied diameters from 0.1 to 0.9 mm were used to simulate the vascular with the depth varied from 0 to 5 mm in phantom. The preliminary results indicate that the profile range ratio of ~1O_2 luminescence images are negatively correlated to the diameter of capillary tube, and the attenuation of intensity of ~1O_2 luminescence is non-linear with the increase of depth.
机译:单线态氧(〜1O_2)是II型光动力疗法(PDT)的主要细胞毒性产物。治疗期间O_2生成与PDT功效之间的相关性已引起广泛关注。直接检测〜1O_2发光是鉴定〜1O_2的金标准。然而,〜1O_2发光的强度可能受组织光学特性,病变位置和形态的影响,尤其是针对血管靶向PDT。在这项研究中,在组织模拟体模中研究了血管直径和深度对〜1O_2发光成像的影响。具有自适应光学元件和532纳米CW激光的近红外InGaAs相机用于〜1O_2发光的快速成像。玫瑰红(RB)用作光敏剂,在光敏过程中产生〜1O_2。为了建立组织的散射特性,将脂质体内用不同的浓度稀释。包含RB溶液的毛细管的直径在0.1到0.9 mm之间变化,用于模拟深度在0到5 mm之间变化的血管。初步结果表明,〜1O_2发光图像的轮廓比与毛细管直径成负相关,〜1O_2发光强度的衰减与深度的增加呈非线性关系。

著录项

  • 来源
    《Optics in health care and biomedical optics VIII》|2018年|108203I.1-108203I.6|共6页
  • 会议地点 Beijing(CN)
  • 作者单位

    Key Laboratory of OptoElectronic Science and Technology for Medicine of Ministry of Education, Fujian Provincial Key Laboratory of Photonics Technology, Fujian Normal University, Fuzhou, 350007, P. R. China;

    Key Laboratory of OptoElectronic Science and Technology for Medicine of Ministry of Education, Fujian Provincial Key Laboratory of Photonics Technology, Fujian Normal University, Fuzhou, 350007, P. R. China;

    Key Laboratory of OptoElectronic Science and Technology for Medicine of Ministry of Education, Fujian Provincial Key Laboratory of Photonics Technology, Fujian Normal University, Fuzhou, 350007, P. R. China;

    Key Laboratory of OptoElectronic Science and Technology for Medicine of Ministry of Education, Fujian Provincial Key Laboratory of Photonics Technology, Fujian Normal University, Fuzhou, 350007, P. R. China;

    Key Laboratory of OptoElectronic Science and Technology for Medicine of Ministry of Education, Fujian Provincial Key Laboratory of Photonics Technology, Fujian Normal University, Fuzhou, 350007, P. R. China;

    Department of Laser Medicine, Chinese PLA General Hospital, Beijing 100853, P. R. China;

    Key Laboratory of OptoElectronic Science and Technology for Medicine of Ministry of Education, Fujian Provincial Key Laboratory of Photonics Technology, Fujian Normal University, Fuzhou, 350007, P. R. China;

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

    singlet oxygen luminescence imaging; tissue simulating phantom; vascular diameter; depth;

    机译:单重态氧发光成像;组织模拟体模血管直径深度;
  • 入库时间 2022-08-26 14:33:00

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