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Modified optical coefficient measurements using a single high-NA fiber with detection parameter changes at a tip

机译:使用单个高NA光纤进行修改的光学系数测量,尖端的检测参数变化

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To avoid the instability of an optical coefficient measurement using sliced tissue preparation, an attenuation coefficient measurement by puncturing an optical fiber in bulk tissue have been reported. We proposed a modified puncturing method to obtain an absorption coefficient and scattering coefficient by increasing optical information. We used the light intensity measurement through a single high-NA fiber puncturing into an optically thick bulk tissue varying detection parameters, the depth and field of view (FOV), at the tip. The light intensity measurement and ray trace calculation using the Monte Carlo method (inverse or normal) were employed. We constructed the measurement system which can change the FOV at the fiber tip inside the bulk tissue using the variable aperture outside the bulk tissue. A 200 μm Φ NA:0.5 fiber installed in a 21G needle was punctured down to surface of the bulk tissue to measure light intensity in the bulk tissue. Using homogeneous optical model solution, the accuracy about attenuation coefficients of the constructed experimental system was confirmed. The error in the attenuation coefficient was up to 1.4%. We demonstrated the optical coefficient measurement of porcine myocardium using the proposed method. To fit dependence of the measured attenuation coefficients on FOV, we decided that the absorption coefficient, the scattering coefficient, and anisotropic parameter were 0.2 mm~(-1), 10 mm~(-1), and 0.96, respectively. We proposed modified puncturing optical coefficient measurement varying depth and FOV. We demonstrated its usefulness on myocardium.
机译:为了避免使用切片组织制备的光学系数测量的不稳定性,已经报道了通过在散装组织中穿刺光纤来进行衰减系数测量。我们提出了一种修改的刺破方法,通过增加光学信息来获得吸收系数和散射系数。我们通过单个高NA光纤穿刺到光学厚的散装组织变化检测参数,视野(FOV)的深度和视野,在尖端中使用光强度测量。使用使用蒙特卡罗方法(逆或正常)的光强度测量和射线追踪计算。我们构建了测量系统,其可以使用散装组织外部的可变孔径在散装组织内的纤维尖端内的FOV改变。安装在21g针中的200μmφna:0.5纤维被刺破到散装组织的表面,以测量散装组织中的光强度。使用均匀的光学模型解决方案,确认了构建实验系统的衰减系数的准确性。衰减系数的误差高达1.4%。我们用该方法证明了猪心肌的光学系数测量。为了适应测量的衰减系数对FOV的依赖性,我们认为吸收系数,散射系数和各向异性参数分别为0.2mm〜(-1),10mm〜(-1)和0.96。我们提出了修改的刺破光学系数测量变化深度和FOV。我们证明了它对心肌的用途。

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