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Application of hyperspectral fluorescence lifetime imaging to tissue autofluorescence: Arthritis

机译:高光谱荧光寿命成像对组织自发荧光的应用:关节炎

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Tissue contains many natural fluorophores and therefore by exploiting autofluorescence, we can obtain information from tissue with less interference than conventional histological techniques. However, conventional intensity imaging is prone to artifacts since it is an absolute measurement. Fluorescence lifetime and spectral measurements are relative measurements and therefore allow for better measurements. We have applied FLIM and hyperspectral FLIM to the study of articular cartilage and its disease arthritis. We have analyzed normal human articular cartilage and cartilage which was in the early stages of disease. In this case, it was found that FLIM was able to detect changes in the diseased tissue that were not detectable with the conventional diagnosis. Specifically, the fluorescence lifetimes (FL) of the cells were different between the two samples. We have also applied hyperspectral FLIM to degraded cartilage through treatment with interleukin-1. In this case, it was found that there was a shift in the emission spectrum with treatment and that the lifetime had also increased. We also showed that there was greater contrast between the cells and the extracellular matrix (ECM) at longer wavelengths.
机译:组织含有许多天然荧光团,因此通过利用自发荧光,我们可以从常规组织技术的干扰较少的组织中获取信息。然而,传统的强度成像易于伪像,因为它是绝对测量。荧光寿命和光谱测量是相对测量的,因此允许更好的测量。我们已经应用了Flim和Hyperspectral Flim与关节软骨及其疾病关节炎的研究。我们分析了正常的人类关节软骨和软骨,这是疾病的早期阶段。在这种情况下,发现Flim能够检测患病组织的变化,该组织不能随着传统诊断检测。具体地,细胞的荧光寿命(FL)在两个样品之间不同。我们还通过白细胞介素-1的处理来施加高光谱脱脂以降解软骨。在这种情况下,发现在发射光谱中有偏移,并且寿命也增加。我们还表明,细胞和细胞外基质(ECM)之间的更大对比度更长的波长。

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