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A broadband multi-distance approach to measure tissue oxygen saturation with continuous wave near-infrared spectroscopy

机译:一种用连续波近红外光谱测量组织氧饱和度的宽带多距离方法

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Brain tissue oxygen saturation, StO_2, measured with near-infrared spectroscopy (NIRS) is of great clinical interest as it quantifies the balance between cerebral oxygen supply and demand. Some brain oximeters are based on spatially resolved spectroscopy (SRS), where NIRS data is collected at multiple distances from the light source to estimate a slope of light attenuation against distance. Other use a broadband approach which utilizes derivatives of the absorption spectra to estimate StO_2, such as broadband fitting (BF). We describe a novel algorithm, broadband spatially resolved spectroscopy (BB-SRS), for estimating StO_2. It is based on comparing the measured slope to a model of the attenuation slope, which depends on the optical properties of tissue. Fitting this model with a least squares fitting procedure recovers parameters describing absorption and scattering; the concentrations of oxy- and deoxy-haemoglobin and hence StO_2 and the scattering parameters β and a describing the exponential dependence of scattering on wavelength. To demonstrate BB-SRS, a broadband spectrum (700 -1000 nm, step size 2 nm) was simulated in NIRFAST and was analysed with BB-SRS, SRS and BF. The developed BB-SRS algorithm recovered St02 with a relative error of -9%; the concentration of deoxyhaemoglobin with a relative error of +4% , oxyhaemoglobin -10%. The scattering parameters β and a were recovered with a relative error of -30% and -2%, respectively. Among the three algorithms, BB-SRS performed with the best relative error.
机译:用近红外光谱(NIRS)测量的脑组织氧饱和度STO_2具有很大的临床兴趣,因为它量化了脑氧供应与需求之间的平衡。一些脑血管计基于空间分辨的光谱学(SRS),其中NIRS数据在来自光源的多个距离处收集,以估计距离的光衰减的斜率。其他使用宽带方法,该方法利用吸收光谱的衍生物来估计STO_2,例如宽带配件(BF)。我们描述了一种新颖的算法,宽带空间解析光谱(BB-SRS),用于估计STO_2。它基于将测量的斜率与衰减斜率的模型进行比较,这取决于组织的光学性质。用最小二乘拟合程序拟合该模型恢复描述吸收和散射的参数;氧化氧和脱氧血红蛋白的浓度,因此STO_2和散射参数β和描述散射对波长的指数依赖性。为了证明BB-SRS,在Nirfast中模拟宽带光谱(700 -1000nm,步长2nm),并用BB-SRS,SRS和BF分析。开发的BB-SRS算法恢复了ST02,具有-9%的相对误差;脱氧血红蛋白的浓度为+ 4%的相对误差,氧气血红蛋白-10%。散射参数β和A分别以-30%和-2%的相对误差回收。在这三种算法中,BB-SRS以最佳的相对误差执行。

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