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首页> 外文期刊>Biomedical Engineering, IEEE Transactions on >Depth-Resolved Blood Oxygen Saturation Assessment Using Spectroscopic Common-Path Fourier Domain Optical Coherence Tomography
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Depth-Resolved Blood Oxygen Saturation Assessment Using Spectroscopic Common-Path Fourier Domain Optical Coherence Tomography

机译:使用光谱共路径傅里叶域光学相干层析成像技术进行深度分辨的血氧饱和度评估

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摘要

Although spectroscopic optical coherence tomography (OCT) has been shown to be a promising method for measuring blood oxygen saturation with high-spatial resolution and accuracy, there are several technical issues that need to be addressed before it could become a practical method. In this letter, we have attempted to address two issues that could significantly improve the quantitative assessment of blood oxygen saturation level. First, we have implemented a spectral normalization technique to eliminate the spectral modulation induced by the wavelength–distance-dependent point spread function (PSF) of OCT’s. Second, to reduce the spectral speckle noise due to the highly scattering blood, we have implemented a spatial low-pass filter to the 2-D OCT dataset consisting of spectra obtained at different lateral positions. We have assessed the effectiveness of these methods using common-path OCT system. Results showed that we were able to extract unambiguous depth-resolved, $hbox{SO}_{2}$-dependent spectroscopic information from 1-D and 2-D OCT images, which could be used to accurately assess the $hbox{SO}_{2}$ level.
机译:尽管光谱光学相干断层扫描(OCT)已被证明是一种以高空间分辨率和准确性测量血氧饱和度的有前途的方法,但是在成为实用方法之前,还需要解决一些技术问题。在这封信中,我们试图解决两个可以显着改善血氧饱和度定量评估的问题。首先,我们实施了一种光谱归一化技术,以消除由OCT的依赖于波长-距离的点扩展函数(PSF)引起的光谱调制。第二,为了减少由于血液高度散射而引起的频谱斑点噪声,我们对二维OCT数据集实施了空间低通滤波器,该数据集由在不同横向位置获得的频谱组成。我们已经使用共路径OCT系统评估了这些方法的有效性。结果表明,我们能够从一维和二维OCT图像中提取明确的深度解析的,$ hbox {SO} _ {2} $依赖性光谱信息,可用于准确评估$ hbox {SO } _ {2} $级。

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