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Automatic and robust calibration of optical detector arrays for biomedicaldiffuse optical spectroscopy

机译:用于生物医学的光学检测器阵列的自动强大校准漫射光谱

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摘要

The design and testing of a new, fully automated, calibration approach is described. The process was used to calibrate an image-guided diffuse optical spectroscopy system with 16 photomultiplier tubes (PMTs), but can be extended to any large array of optical detectors and associated imaging geometry. The design goals were accomplished by developing a routine for robust automated calibration of the multi-detector array within 45 minutes. Our process was able to characterize individual detectors to a median norm of the residuals of 0.03 V for amplitude and 4.4 degrees in phase and achieved less than 5% variation between all the detectors at the 95% confidence interval for equivalent measurements. Repeatability of the calibrated data from the imaging system was found to be within 0.05 V for amplitude and 0.2 degrees for phase, and was used to evaluate tissue-simulating phantoms in two separate imaging geometries. Spectroscopic imaging of total hemoglobin concentration was recovered to within 5% of the true value in both cases. Future work will focus on streamlining the technology for use in a clinical setting with expectations of achieving accurate quantification of suspicious lesions in the breast.
机译:描述了一种新型的全自动校准方法的设计和测试。该过程用于校准具有16个光电倍增管(PMT)的图像引导漫射光谱系统,但可以扩展到任何大型的光学检测器阵列和相关的成像几何形状。通过开发例程以在45分钟内对多探测器阵列进行强大的自动校准,可以达到设计目标。我们的过程能够将单个检测器表征为幅度为0.03 V,相位为4.4度的残差的中值范数,并且在所有检测器之间以95%置信区间进行小于5%的变化以进行等效测量。发现来自成像系统的校准数据的重复性在振幅范围内在0.05 V之内,在相位的范围内在0.2度之内,并被用于评估两种不同成像几何结构中的组织模拟体模。在两种情况下,总血红蛋白浓度的光谱成像均恢复到真实值的5%以内。未来的工作将集中于简化用于临床的技术,以期实现对乳房中可疑病变的准确量化。

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