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Temperature Sensing of Deep Abdominal Region in Mice by Using Over-1000 nm Near-Infrared Luminescence of Rare-Earth-Doped NaYF 4 Nanothermometer

机译:稀土掺杂NaYF 4纳米温度计的1000 nm以上近红外发光对小鼠深部腹部的温度感测

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Luminescence nanothermometry has attracted much attention as a non-contact thermal sensing technique. However, it is not widely explored for in vivo applications owing to the low transparency of tissues for the light to be used. In this study, we performed biological temperature sensing in deep tissues using β-NaYF4 nanoparticles co-doped with Yb3+, Ho3+, and Er3+ (NaYF4: Yb3+, Ho3+, Er3+ NPs), which displayed two emission peaks at 1150?nm (Ho3+) and 1550?nm (Er3+) in the 1000?nm near-infrared wavelength region, where the scattering and absorption of light by biological tissues are at the minimum. The change in the luminescence intensity ratio of the emission peaks of Ho3+ and Er3+ (IHo/IEr) in the NaYF4: Yb3+, Ho3+, Er3+ nanothermometer differs corresponding to the thickness of the tissue. Therefore, the relationship between IHo/IEr ratio and temperature needs to be calibrated by the depth of the nanothermometer. The temperature-dependent change in the IHo/IEr was evident at the peritoneal cavity level, which is deeper than the subcutaneous tissue level. The designed experimental system for temperature imaging will open the window to novel luminescent nanothermometers for in vivo deep tissue temperature sensing.
机译:发光纳米温度计作为一种非接触式热传感技术已引起了广泛的关注。然而,由于组织对于所使用的光的透明度低,因此未广泛用于体内应用。在这项研究中,我们使用掺有Yb3 +,Ho3 +和Er3 +(NaYF4:Yb3 +,Ho3 +,Er3 + NPs)的β-NaYF4纳米粒子在深部组织中进行了生物温度感测,该纳米粒子在1150?nm(Ho3 +)处显示了两个发射峰。在> 1000?nm的近红外波长区域中为1550?nm(Er3 +),其中生物组织对光的散射和吸收最小。 NaYF4:Yb3 +,Ho3 +,Er3 +纳米温度计中Ho3 +和Er3 +的发射峰的发光强度比的变化(IHo / IEr)随组织的厚度而变化。因此,IHo​​ / IEr比与温度之间的关系需要通过纳米温度计的深度进行校准。 IHo / IEr的温度依赖性变化在腹膜腔水平明显,该深度比皮下组织水平深。用于温度成像的设计实验系统将为用于体内深层组织温度感测的新型发光纳米温度计打开一扇窗户。

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