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首页> 外文期刊>American Journal of Physiology >Extending fluorescent microsphere methods for regional organ blood flow to 13 simultaneous colors.
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Extending fluorescent microsphere methods for regional organ blood flow to 13 simultaneous colors.

机译:扩展了荧光微球方法,使局部器官的血流同时达到13种颜色。

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Seven fluorescent microsphere colors can be used in a single experiment to estimate regional blood flow without correcting for spillover of emitted fluorescence. To extend the method to 13 colors, we compared the accuracy of three methods for spillover correction. Fixed wavelength intensities were corrected by matrix inversion, and synchronous scan spectra were corrected by least squares fit of an overdetermined system of linear equations and by least squares fit of a sum of Gaussian and Lorentzian functions. Correction methods were validated in pigs and sheep by simultaneous injections of radioactive microspheres and fluorescent microspheres of 7, 10, and 13 different colors. We induced extreme changes in flow to create regions with low fluorescent signals bound on either side by high fluorescent signals. Blood flow was determined by radioactivity and by fluorescence using both fixed excitation and emission wavelength pairs and synchronous scanning and then corrected for spillover. Correlation betweenfluorescent intensity and radioactivity were excellent for all three correction methods [R2 = 0.98 +/- 0.02 (mean +/- SD)]. Low-flow regions requiring large spillover correction had systematic errors for some color combinations in all methods. We conclude that for 13 fluorescent colors spillover error can be minimized so that all three correction methods provide accurate estimates of regional blood flow.
机译:可以在单个实验中使用七种荧光微球颜色来估计局部血流,而无需校正发射荧光的溢出。为了将方法扩展到13种颜色,我们比较了三种溢出校正方法的准确性。固定的波长强度通过矩阵求逆来校正,同步扫描光谱通过超定线性方程组的最小二乘拟合和高斯函数与洛伦兹函数和的最小二乘拟合来校正。通过同时注射7种,10种和13种不同颜色的放射性微球和荧光微球,在猪和绵羊中验证了校正方法。我们引起流量的极端变化,以创建具有低荧光信号的区域,该区域在任一侧都被高荧光信号束缚。使用固定的激发和发射波长对以及同步扫描通过放射性和荧光测定血流量,然后针对溢出进行校正。对于所有三种校正方法,荧光强度与放射性之间的相关性都非常好[R2 = 0.98 +/- 0.02(平均值+/- SD)]。在所有方法中,需要大范围溢出校正的低流量区域在某些颜色组合上都存在系统误差。我们得出的结论是,对于13种荧光色,溢出误差可以最小化,因此所有三种校正方法都可以提供对区域血流的准确估计。

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