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Noninvasive fluence rate mapping in living tissues using magnetic resonance thermometry

机译:使用磁共振测温物的活性组织中的非侵袭性流量速率

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摘要

A noninvasive method is introduced for quantification and visualization of fluence rate in light-irradiated biological tissues. The method is based on magnetic resonance thermometry (MRT) measurements of tissue temperature changes resulting from absorption of light. From the spatial-temporal temperature data, the generated heat is calculated. Finally, fluence rate maps are reconstructed by dividing the heat data by the tissue absorption coefficient. Simulations were performed using virtual MRT datasets based on analytically described fluence rate distributions, which could be accurately reconstructed by the method. Next, the approach was tested in gel phantoms. Resulting fluence rate maps matched well with theoretical predictions in a nonscattering phantom (R-2 = 0.93). Experimental validation was further obtained in a scattering phantom, by comparing fluence rates to invasive fluence rate probe measurements along and perpendicular to the optical axis (R-2 >= 0.71 for both cases). Finally, our technique was applied in vivo in a mouse tumor model. The resulting fluence rates matched invasive probe measurements (Pearson's. rho = 0.90, p = 0.0026). The method may be applied to investigate the relation between light dose and biological response in light-based treatments, such as photodynamic therapy. It may also be useful for experimental validation of light transport models. (C) 2017 Society of Photo-Optical Instrumentation Engineers (SPIE)
机译:引入非侵入性方法,用于在光辐射生物组织中的流量率的定量和可视化。该方法基于磁共振温度(MRT)测量的组织温度变化,从而吸收光。从空间温度数据,计算产生的热量。最后,通过将热数据除以组织吸收系数来重建流量率图。使用虚拟MRT数据集基于分析描述的流量分布来执行模拟,这可以通过该方法精确地重建。接下来,在凝胶幽灵中测试该方法。产生的流量速率图匹配良好,具有非传动体幻像中的理论预测(R-2 = 0.93)。通过比较散射体模的实验验证,通过比较沿着和垂直于光轴的侵入式流速探针测量(对于这两种情况而垂直于光轴的侵袭性流速探针测量。最后,我们的技术在小鼠肿瘤模型中施用体内。由此产生的流量率匹配侵入性探针测量(Pearson's。rho = 0.90,p = 0.0026)。该方法可以应用于研究光剂量与基于光处理的生物反应之间的关系,例如光动力学治疗。它对光传输模型的实验验证也可能是有用的。 (c)2017年光学仪表工程师协会(SPIE)

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