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In vivo quantification of autofluorescence dynamics during renal ischemia and reperfusion under dual UV excitation

机译:双重紫外线激发下肾脏缺血和再灌注过程中自身荧光动力学的体内定量

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摘要

We explore an optical spectroscopy approach to monitor the progression of ischemia and reperfusion in situ using a rat model. The system utilizes the sensitivity of NADH emission to changes in cell metabolism during ischemia and reperfusion. In addition, the emission from tryptophan is employed as a normalization against changes in other optical properties of the tissue. Ischemia was induced in one kidney followed by at least 60 minutes of reperfusion. During both phases, autofluorescence images of the exposed surfaces of both the ischemic kidney and the normal (control) kidney were acquired and the respective average emission intensities were determined. Preliminary results indicate that the kinetics of the ratio of the emissions under these two excitations is related to the injury time.
机译:我们探索使用大鼠模型的光谱学方法来监测局部缺血和再灌注的进展。该系统利用了NADH释放对缺血和再灌注过程中细胞代谢变化的敏感性。另外,色氨酸的发射被用作针对组织的其他光学性质的变化的归一化。在一个肾脏中诱发缺血,然后再灌注至少60分钟。在两个阶段中,均采集了缺血性肾脏和正常(对照)肾脏的暴露表面的自发荧光图像,并确定了各自的平均发射强度。初步结果表明,在这两种激发下的排放比的动力学与损伤时间有关。

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