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Enabling in vivo measurements of nanoparticle concentrations with three-dimensional optoacoustic tomography

机译:使用三维光声层析成像技术进行体内纳米颗粒浓度测量

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摘要

In this report, we demonstrate the feasibility of using optoacoustic tomography (OAT) to evaluate biodistributions of nanoparticles in animal models. The redistribution of single-walled carbon nanotubes (SWCNTs) was visualized in living mice. Nanoparticle concentrations in harvested organs were measured spectroscopically using the intrinsic optical absorption and fluorescence of SWCNTs. Observed increases in optoacoustic signal brightness in tissues were compared with increases in optical absorption coefficients caused by SWCNT accumulation. The methodology presented in this report can further be extended to calibrate the sensitivity of an optoacoustic imaging system for a range of changes in optical absorption coefficient values at specific locations or organs in a mouse body to enable noninvasive measurements of nanoparticle concentrations in vivo. Additionally, qualitative information provided by OAT and quantitative information obtained ex vivo may provide valuable feedback for advancing methods of quantitative analysis with OAT.
机译:在此报告中,我们证明了使用光声层析成像(OAT)评估动物模型中纳米颗粒的生物分布的可行性。单壁碳纳米管(SWCNTs)的重新分布在活着的小鼠中可见。使用SWCNT的固有光学吸收和荧光光谱法测量收获的器官中的纳米颗粒浓度。将观察到的组织中光声信号亮度的增加与SWCNT积累引起的光吸收系数的增加进行了比较。可以进一步扩展本报告中介绍的方法,以校准光声成像系统对小鼠体内特定位置或器官的光吸收系数值变化范围的灵敏度,以实现体内纳米粒子浓度的无创测量。另外,OAT提供的定性信息和离体获得的定量信息可能为推进OAT定量分析方法提供有价值的反馈。

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