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Precision of measurement of tissue optical properties with optical coherence tomography

机译:光学相干断层扫描技术测量组织光学特性的精度

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Accurate and noninvasive measurement of tissue optical properties can be used for biomedical diagnostics and monitoring of tissue analytes. Noninvasive measurement of tissue optical properties (total attenuation and scattering coefficients, optical thickness, etc.) can be performed with the optical coherence tomography (OCT) technique. However, speckle noise substantially deteriorates the accuracy of the measurements with this technique. We studied suppression of speckle noise for accurate measurement of backscattering signal and scattering coefficient with the OCT technique. Our results demonstrate that the precision of measurement of backscattering signals with the OCT technique can be 0.2% for homogeneously scattering media and 0.7% for skin, if spatial averaging of speckle noise is applied. This averaging allows us to achieve the precision of tissue scattering coefficient measurements of approximately +/-0.8%. This precision can be further improved by a factor of 2-3, upon optimization of OCT operating parameters. (C) 2003 Optical Society of America. [References: 26]
机译:准确,无创地测量组织光学特性可用于生物医学诊断和组织分析物的监测。可以使用光学相干断层扫描(OCT)技术对组织的光学特性(总衰减和散射系数,光学厚度等)进行非侵入式测量。但是,散斑噪声大大降低了该技术的测量精度。我们研究了抑制斑点噪声的方法,以利用OCT技术精确测量反向散射信号和散射系数。我们的结果表明,如果应用斑点噪声的空间平均,那么使用OCT技术测量反向散射信号的精度,对于均匀散射的介质可以为0.2%,对于皮肤为0.7%。该平均值使我们能够达到大约+/- 0.8%的组织散射系数测量精度。通过优化OCT操作参数,可以将精度进一步提高2-3倍。 (C)2003年美国眼镜学会。 [参考:26]

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