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Characterization of multiphoton photoacoustic spectroscopy for subsurface brain tissue diagnosis and imaging

机译:多光子光声光谱的表征用于脑下组织的诊断和成像

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摘要

The development and demonstration of a multiphoton photoacoustic imaging technique capable of providing high spatial resolution chemical images of subsurface tissue components as deep as 1.4 cm below the tissue surface is described. By combining multiphoton excitation in the diagnostic window (650 to 1100 nm), with ultrasonic detection of nonradiative relaxation events, it is possible to rapidly reconstruct three-dimensional, chemical specific, images of samples underneath overlying structures as well as chemical species of the same material. Demonstration of this technique for subsurface tissue differentiation is shown, with the ability to distinguish between grade Ⅲ astrocytoma tissue and adjacent healthy tissue in blind studies. By employing photoacoustic signal detection, the high nonradiative relaxation rates of most biological tissue components (>90%) and the minimal signal attenuation of the resulting ultrasound compensate for excitation efficiency losses associated with two-photon absorption. Furthermore, the two-photon absorption process results in a highly localized excitation volume (ca., 60 μm). Characterization of the probing depth, spatial resolution, and ability to image through overlying structures is also demonstrated in this paper using tissue phantoms with well-characterized optical scattering properties, mimicking those of tissues.
机译:描述了多光子光声成像技术的开发和演示,该技术能够提供组织表面以下1.4厘米深的地下组织成分的高空间分辨率化学图像。通过将诊断窗口中的多光子激发(650至1100 nm)与超声检测的非辐射弛豫事件结合起来,可以快速重建其上覆结构下的样品的三维化学特异性图像以及相同结构的化学物种材料。显示了该技术用于地下组织分化的证明,并具有在盲法研究中区分Ⅲ级星形细胞瘤组织和邻近健康组织的能力。通过采用光声信号检测,大多数生物组织成分的高非辐射弛豫率(> 90%)和所得超声的最小信号衰减可补偿与双光子吸收相关的激发效率损失。此外,双光子吸收过程导致高度局部化的激发体积(约60μm)。本文还利用具有良好特征的光散射特性的组织体模(类似于组织的体模),证明了探测深度,空间分辨率和通过上覆结构成像的能力。

著录项

  • 来源
    《Journal of biomedical optics》 |2016年第4期|047001.1-047001.10|共10页
  • 作者

    Sudhir Dahal; Brian M. Cullum;

  • 作者单位

    University of Maryland Baltimore County Baltimore, Department of Chemistry and Biochemistry, 1000 Hilltop Circle, Baltimore, Maryland 21250, United States;

    University of Maryland Baltimore County Baltimore, Department of Chemistry and Biochemistry, 1000 Hilltop Circle, Baltimore, Maryland 21250, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    multiphoton photoacoustic; photoacoustic; optoacoustic; optical biopsy; biomedical imaging; brain tumor;

    机译:多光子光声光声光声光学活检生物医学成像;脑肿瘤;

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