高度扩散组织体幻影的光学参数测量与特别设计的样品支架的照片诊断和PDT应用

A. Rehman, K. Rehman, S. Anwar, S. Firdous, M. Nawaz
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引用次数: 5

摘要

了解光学性质(吸收系数、散射系数和各向异性)是理解光组织相互作用的必要条件。光学参数定义了光在组织中的行为。脂内和墨水是公认的组织体幻影。利用积分球实现了生物组织光学性质的定量表征。然而,对于具有较高散射和吸收系数的样本,如恶性组织,可能会降低积分球的信噪比和精度。我们将其置于632.8 nm的积分球中,测量了它们的漫反射和透射,然后用IAD法测定了由印度墨水(1.0%)和脂肪内脂(20%)组成的组织幻影的光学性质。我们制作了一种特殊的样品夹,带有薄的微观盖卡片,可用于测量高浓度脂内和印度墨水溶液的信号。实验表明,在广泛的光学性质下,各种幻相的信噪比都有了显著的改善。这种方法为测量高扩散生物组织的光学特性开辟了一个潜在的应用领域。在632.8 nm处,20%内脂μa =0.112±0.046 cm-1, μs =392.299±10.090 cm-1;在相同波长处,1.0%墨水μa =9.808±0.490 cm-1, μs =1.258±0.063 cm-1。系统重复性好,重现性好,误差在4.9%以内。工作可能在光诊断和光动力治疗方面具有重要的生物医学应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optical parameter measurement of highly diffusive tissue body phantoms with specifically designed sample holder for photo diagnostic and PDT applications
Knowledge of optical properties (absorption coefficients, scattering Coefficients, and anisotropy) is necessary for understanding light tissue interactions. Optical parameters define the behavior of light in the tissues. Intralipid and Indian ink are well-established tissue body phantoms. Quantitative characterization of biological tissues in terms of optical properties is achieved with integrating sphere. However, samples having significantly higher scattering and absorption coefficients such as malignant tissues potentially reduce the signal to noise ratio (SNR) and accuracy of integrating sphere. We have measured the diffuse reflection and transmission of these phantoms by placing them in integrating sphere at 632.8 nm and then applied IAD method to determine the optical properties tissue phantoms composed of Indian ink (1.0%) and Intralipid (20%). We have fabricated a special sample holder with thin microscopic cover slips which can be used to measure signal from highly concentrated intralipid and Indian ink solutions. Experiments conducted with various phantoms reveal significant improvement of SNR for a wide range of optical properties. This approach opens up a field for potential applications in measurement of optical properties of highly diffusive biological tissues. For 20% intralipid μa =0.112±0.046 cm-1 and μs =392.299±10.090 cm-1 at 632.8 nm and for 1.0% Indian ink μa =9.808±0.490 cm-1 and μs =1.258±0.063 cm-1 at same wavelength. System shows good repeatability and reproducibility within 4.9% error. Work may have important biomedical applications in photo-diagnosis and Photodynamic therapy.
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