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首页> 外文期刊>Physics in medicine and biology. >A spectrally composite reconstruction approach for improved resolution of pulsed photothermal temperature profiling in water-based samples.
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A spectrally composite reconstruction approach for improved resolution of pulsed photothermal temperature profiling in water-based samples.

机译:一种光谱复合重建方法,可改善水基样品中脉冲光热温度曲线的分辨率。

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摘要

We report on the first experimental evaluation of pulsed photothermal radiometry (PPTR) using a spectrally composite kernel matrix in signal analysis. Numerical studies have indicated that this approach could enable PPTR temperature profiling in watery tissues with better accuracy and stability as compared to the customary monochromatic approximation. By using an optimized experimental set-up and image reconstruction code (involving a projected nu-method and adaptive regularization), we demonstrate accurate localization of thin absorbing layers in agar tissue phantoms with pronounced spectral variation of a mid-infrared absorption coefficient. Moreover, the widths of reconstructed temperature peaks reach 14-17% of their depth, significantly less than in earlier reports on PPTR depth profiling in watery tissues. Experimental results are replicated by a detailed numerical simulation, which enables analysis of the broadening effect as a function of temperature profile amplitude and depth.
机译:我们报告了在信号分析中使用光谱复合核矩阵对脉冲光热辐射法(PPTR)进行的首次实验评估。数值研究表明,与常规的单色近似方法相比,该方法可以在水性组织中进行PPTR温度轮廓分析,具有更好的准确性和稳定性。通过使用优化的实验设置和图像重建代码(涉及投影的nu方法和自适应正则化),我们证明了琼脂组织体模中薄吸收层的精确定位,并具有中红外吸收系数的明显光谱变化。此外,重建的温度峰的宽度达到其深度的14-17%,远小于早先在含水组织中PPTR深度剖析的报告中。通过详细的数值模拟来复制实验结果,该数值模拟能够分析加宽效果与温度曲线振幅和深度的关系。

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