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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Accurate measurement of total attenuation coefficient of thin tissue with optical coherence tomography
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Accurate measurement of total attenuation coefficient of thin tissue with optical coherence tomography

机译:光学相干层析成像技术精确测量薄组织的总衰减系数

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摘要

Noninvasive accurate measurements of tissue optical properties are needed for many diagnostic and therapeutic applications. Optical coherence tomography (OCT) recently proposed for high-resolution imaging in tissue can potentially be applied for accurate, noninvasive, and high-resolution measurement of tissue total attenuation coefficient. However, confocal function (dependence of OCT sensitivity on the distance of probed site from the focal plane of the objective lens) and multiple scattering substantially limit the accuracy of the measurement with the OCT technique. We studied the influence of the confocal function and multiple scattering on the accuracy of the measurement and proposed methods that provide measurement of the total attenuation coefficient with a significantly reduced systematic error. Experiments were performed in tissue phantoms and porcine and human skin in vitro and in vivo. Our data indicate that the tissue total attenuation coefficient can noninvasively be measured in vivo with the accuracy of 5%-10% in the range from 0.5 to 17 mm-1 and about 20% in the range up to 40 mm-1. These results suggest that the proper correction of the OCT-based measurement for the confocal function and multiple scattering provides absolute values of tissue total attenuation coefficient with high accuracy and resolution that may not be achievable by other optical techniques in vivo.
机译:许多诊断和治疗应用都需要对组织光学特性进行无创精确测量。最近提出的用于组织中高分辨率成像的光学相干断层扫描(OCT)可以潜在地应用于组织总衰减系数的准确,无创和高分辨率测量。但是,共焦功能(OCT灵敏度取决于所探测部位距物镜焦平面的距离)和多次散射实质上限制了使用OCT技术进行测量的准确性。我们研究了共焦函数和多重散射对测量精度的影响,并提出了提供总衰减系数的测量且系统误差显着降低的方法。在体外和体内对组织模型,猪和人皮肤进行实验。我们的数据表明,可以在体内非侵入性地测量组织总衰减系数,准确度为5%-10%(范围为0.5到17 mm-1),准确度为20%(范围不超过40 mm-1)。这些结果表明,针对共聚焦功能和多重散射的基于OCT的测量值的正确校正提供了具有较高准确性和分辨率的组织总衰减系数的绝对值,这在体内是其他光学技术无法实现的。

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