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Brcal/p53 Deficient Mouse Breast Tumor Hemodynamics During Hyperoxic Respiratory Challenge Monitored by A Novel Wide-field Functional Imaging (WiFI) System

机译:新型宽视野功能成像(WiFI)系统监测高氧呼吸挑战期间Brcal / p53缺陷小鼠乳腺癌的血液动力学。

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摘要

Current imaging modalities allow precise visualization of tumors but do not enable quantitative characterization of the tumor metabolic state. Such quantitative information would enhance our understanding of tumor progression and response to treatment, and to our overall understanding of tumor biology. To address this problem, we have developed a wide-field functional imaging (WiFI) instrument which combines two optical imaging modalities, spatially modulated imaging (MI) and laser speckle imaging (LSI). Our current WiFI imaging protocol consists of multispectral imaging in the near infrared (650-980 nm) spectrum, over a wide (7 cm × 5 cm) field of view. Using MI, the spatially-resolved reflectance of sinusoidal patterns projected onto the tissue is assessed, and optical properties of the tissue are estimated using a Monte Carlo model. From the spatial maps of local absorption and reduced scattering coefficients, tissue composition information is extracted in the form of oxy-, deoxy-, and total hemoglobin concentrations, and percentage of lipid and water. Using LSI, the reflectance of a 785 nm laser speckle pattern on the tissue is acquired and analyzed to compute maps of blood perfusion in the tissue. Tissue metabolism state is estimated from the values of blood perfusion, volume and oxygenation state. We currently are employing the WiFI instrument to study tumor development in a BRCA1/p53 deficient mice breast tumor model. The animals are monitored with WiFI during hyperoxic respiratory challenge. At present, four tumors have been measured with WiFI, and preliminary data suggest that tumor metabolic changes during hyperoxic respiratory challenge can be determined.
机译:当前的成像方式允许精确地可视化肿瘤,但不能定量表征肿瘤的代谢状态。这样的定量信息将增强我们对肿瘤进展和对治疗的反应的理解,以及对我们对肿瘤生物学的整体理解。为了解决这个问题,我们开发了一种结合了两种光学成像模式,空间调制成像(MI)和激光散斑成像(LSI)的广域功能成像(WiFI)仪器。我们当前的WiFI成像协议包括在宽(7 cm×5 cm)视场中的近红外(650-980 nm)光谱中的多光谱成像。使用MI,评估投影到组织上的正弦曲线图案在空间上的反射率,并使用蒙特卡洛模型评估组织的光学特性。从局部吸收和降低的散射系数的空间图上,以氧,脱氧和总血红蛋白浓度以及脂质和水的百分比的形式提取组织组成信息。使用LSI,获取并分析了在组织上的785 nm激光散斑图的反射率,以计算组织中的血液灌注图。组织的代谢状态是根据血液灌注,体积和氧合状态的值估算的。我们目前正在使用WiFI仪器来研究BRCA1 / p53缺陷小鼠乳腺肿瘤模型中的肿瘤发展。在高氧呼吸挑战中用WiFI监视动物。目前,已经用WiFI测量了四个肿瘤,初步数据表明可以确定高氧呼吸激发过程中的肿瘤代谢变化。

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  • 会议地点 San Jose CA(US)
  • 作者单位

    Beckman Laser Institute and Medical Clinic, 1002 Health Sciences Rd., Irvine, CA USA 92612 Dept. of Biomedical Engineering, University of California, Irvine, Irvine, CA USA 92697;

    Beckman Laser Institute and Medical Clinic, 1002 Health Sciences Rd., Irvine, CA USA 92612;

    Dept. of Developmental and Cell Biology and Dept. of Biological Chemistry, University of California, Irvine, Irvine, CA USA 92697;

    Beckman Laser Institute and Medical Clinic, 1002 Health Sciences Rd., Irvine, CA USA 92612 Dept. of Biomedical Engineering, University of California, Irvine, Irvine, CA USA 92697;

    Beckman Laser Institute and Medical Clinic, 1002 Health Sciences Rd., Irvine, CA USA 92612;

    Beckman Laser Institute and Medical Clinic, 1002 Health Sciences Rd., Irvine, CA USA 92612 Dept. of Biomedical Engineering, Univer;

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

    tissue optics; speckle; cancer; metabolism; transgenic; laser doppler perfusion imaging;

    机译:组织光学;斑点;癌症;代谢;转基因激光多普勒灌注成像;
  • 入库时间 2022-08-26 13:44:47

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