共查询到4条相似文献,搜索用时 15 毫秒
1.
2.
3.
为了提高血氧饱和度光谱测量的精度和可靠性,增强血氧饱和度测量数据的有效性,提出了基于试验方差分析的血氧测量波长选取的方法。通过分析不同波长组合对应的血氧饱和度系数分布情况,合理地利用统计理论,从中选取较好的波长组合。实验中以不同血氧饱和度临床数据为基础,建立了不同波长组合(660和940 nm,660和805 nm,805和940 nm)计算出的血氧饱和度系数的单因素试验方差分析模型,参照分析模型中的F指标和p参数,比较分析不同波长组合的显著性,进而从光谱数据中选取出相对较好的波长组合,为进一步建模分析提供了可靠的中间数据。结果表明,选取660和805 nm的波长组合引入的总误差相对较小,能更显著的代表血氧饱和度的变化,相比其他的波长组合进行分析能够提高血氧测量精度。本研究将试验方差分析方法用于血氧测量中波长组合的优选,效果显著,为血氧饱和度的测量和其他相关光谱的特征波长选取以及定量分析提供了新思路。试验方差分析方法有助于从光谱中提取代表被测量的有效信息。 相似文献
4.
Time-resolved reflectance of an optical pulse in adult head models including non-scattering cerebrospinal fluid (CSF) has been analyzed by the finite difference time domain (FDTD) analysis formulated by the authors. Averaged light intensity and mean time of flight dependences on the source-detector separations calculated by the FDTD analysis are in good agreement with previous experiments, hybrid finite element method (FEM) and Monte Carlo calculations, which justify the FDTD analysis. Based on the analysis, time-resolved reflectance sensitivities to detect optical property changes in brain have been analyzed. As a result, it has been become clear that the sensitivities to detect absorption changes of brain are enhanced in time-resolved reflectance compared to the sensitivities in averaged light intensity, whereas the sensitivities to detect scattering property changes of brain are almost the same in time-resolved reflectance and in averaged light intensity. © 2005 The Optical Society of Japan 相似文献