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首页> 外文期刊>Biomedical Optics Express >Application of time-resolved autofluorescence to label-free in vivo optical mapping of changes in tissue matrix and metabolism associated with myocardial infarction and heart failure
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Application of time-resolved autofluorescence to label-free in vivo optical mapping of changes in tissue matrix and metabolism associated with myocardial infarction and heart failure

机译:时间分辨自发荧光在无标记体内光学映射中应用与心肌梗死和心力衰竭相关的组织基质和代谢变化的应用

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We investigate the potential of an instrument combining time-resolved spectrofluorometry and diffuse reflectance spectroscopy to measure structural and metabolic changes in cardiac tissue in vivo in a 16 week post-myocardial infarction heart failure model in rats. In the scar region, we observed changes in the fluorescence signal that can be explained by increased collagen content, which is in good agreement with histology. In areas remote from the scar tissue, we measured changes in the fluorescence signal (p 0.001) that cannot be explained by differences in collagen content and we attribute this to altered metabolism within the myocardium. A linear discriminant analysis algorithm was applied to the measurements to predict the tissue disease state. When we combine all measurements, our results reveal high diagnostic accuracy in the infarcted area (100%) and border zone (94.44%) as well as in remote regions from the scar ( 77%). Overall, our results demonstrate the potential of our instrument to characterize structural and metabolic changes in a failing heart in vivo without using exogenous labels.
机译:我们调查了时间分辨荧光光谱仪和漫反射光谱仪相结合的仪器的潜力,以测量大鼠心肌梗死后心衰模型中16周体内体内心脏组织的结构和代谢变化。在疤痕区域,我们观察到荧光信号的变化,这可以通过增加胶原蛋白含量来解释,这与组织学非常吻合。在远离疤痕组织的区域,我们测量了荧光信号的变化(p <0.001),胶原蛋白含量的差异无法解释这一变化,我们将其归因于心肌内新陈代谢的改变。将线性判别分析算法应用于测量以预测组织疾病状态。当我们综合所有测量结果时,我们的结果表明,在梗塞区域(100%)和边界区域(94.44%)以及远离疤痕的偏远地区(> 77%),诊断准确性很高。总的来说,我们的结果证明了我们的仪器在不使用外源性标记的情况下,可以表征体内衰竭心脏的结构和代谢变化的潜力。

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