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Noninvasive imaging of biological tissue with dual-wavelength optical coherence tomography

机译:双波长光学相干层析成像技术对生物组织的无创成像

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Abstract: We demonstrate the potential of dual-wavelength optical coherence-domain tomography (OCT) for noninvasive imaging of biological tissue in vivo. A prototype mono-mode fiber-optic coherence tomographic scanner is described, capable of providing rapid 2-D and 3-D images of biological tissues. The advantages of employing a dual-wavelength method for enhancing OCT image contrast, particularly in highly scattering tissue, are discussed. In the current OCT system, a long-wavelength superluminescence diode (SLD) emitting at 1.3-micrometer and a shorter-wavelength SLD emitting at 0.83-micrometer are used as light sources. Because of the optical configuration of dual-wavelength system, we can image the biological tissue at these two wavelengths simultaneously while avoiding the 'mode hopping' effects in the optical fibers. The experimental results demonstrate good correlation between tissue microstructures at these two wavelengths and show that image registration can effectively reduce speckle effects, suggesting that the dual-wavelength OCT has the potential for image contrast enhancement in highly scattering tissue. !18
机译:摘要:我们证明了双波长光学相干域层析成像(OCT)在体内生物组织无创成像中的潜力。描述了一种原型单模光纤相干断层扫描仪,该扫描仪能够提供生物组织的快速2D和3D图像。讨论了使用双波长方法增强OCT图像对比度的优势,特别是在高度散射的组织中。在当前的OCT系统中,以1.3微米发射的长波长超发光二极管(SLD)和以0.83微米发射的短波长SLD被用作光源。由于双波长系统的光学配置,我们可以同时在这两个波长下对生物组织成像,同时避免了光纤中的“模式跳跃”效应。实验结果表明在这两个波长下组织微观结构之间具有良好的相关性,并且表明图像配准可以有效地减少斑点效应,这表明双波长OCT在增强高度散射的组织中具有增强图像对比度的潜力。 !18

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