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Phosphor thermometry at the cellular level

机译:细胞水平的荧光体测温

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Luminescence from a thermographic phosphor (TGP) can be very sensitive to temperature, an attribute exploited in commercial and scientific applications at various levels. Depending on the formulation and the processing method, phosphor particle sizes may range from a few nanometers to dozens of microns across. The size, then, may be comparable to or even much smaller than a typical biological cell. In previous biomedical efforts we have explored using TGP's as 1) flow tracers in simulations of positive pressure infusion for brain tumors, 2) their performance for nanoscale thermometry at physiological temperatures, and 3) as surrogates for green fluorescent protein-labelled cells in tests of cytometric neurocatheters. The present effort provides additional supporting quantitative information to aid deployment of phosphor thermometry for cellular level applications. One of the most temperature-sensitive phosphors is La2O2S:Eu. At normal body temperature, a one degree C change in temperature results in a greater than 5% change in decay time. In this work, it is demonstrated that temperature changes of at least 0.05 C can be resolved using this phosphor. Also demonstrated is detection of phosphor signal using small diameter multimode and even single-mode optical fiber. The latter fiber had a 5 micron diameter core and is therefore only slightly larger than biological cells. In conclusion, the results may serve as a guide to further investigations and application of phosphors to biomedical applications.
机译:来自热成像磷光体(TGP)的​​发光可能对温度非常敏感,这是在商业和科学应用中各个级别使用的一个属性。取决于配方和加工方法,磷光体的粒径范围可以从几纳米到几十微米。这样的大小可以与典型的生物细胞相当甚至更小。在先前的生物医学研究中,我们已经探索过使用TGP作为1)流动示踪剂模拟脑肿瘤的正压输注,2)在生理温度下其用于纳米级测温的性能,以及3)在测试中用作绿色荧光蛋白标记细胞的替代物细胞计数神经导管。当前的努力提供了附加的支持定量信息,以辅助用于细胞水平应用的荧光体测温的部署。对温度最敏感的荧光粉之一是La 2 O 2 S:Eu。在正常的体温下,温度每变化1摄氏度,衰减时间的变化就会超过5%。在这项工作中,证明了使用这种荧光粉可以解决至少0.05 C的温度变化。还演示了使用小直径多模甚至单模光纤检测磷光体信号。后者的纤维芯直径为5微米,因此仅比生物细胞稍大。总之,该结果可作为进一步研究荧光粉并将其应用于生物医学应用的指南。

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