Author Affiliations
Abstract
1 School of Electrical Engineering and Automaton, Harbin Institute of Technology, Harbin, P. R. China
2 School of Transportation Science and Engineering, Harbin Institute of Technology, Harbin, P. R. China
3 Intelligent Fusion Technology, Inc., Germantown, MD, USA
Near-infrared spectroscopy (NIRS) can provide the hemodynamics information based on the hemoglobin concentration representing the blood oxygen metabolism of the cerebral cortical, which can be deployed for the cerebral function study. However, NIRS-based cerebral function detection accuracy can be significantly influenced by the physiological activities such as cardic cycle, respiration, spontaneous low-frequency oscillation and ultra-low frequency oscillation. The distribution difference of the capillary, artery and vein leads to the heterogeneity feature of the cerebral tissues. In the case that the heterogeneity is not serious, good detection accuracy and stable performance can be achieved through the regression analysis as the reference signal can well represent the interference in the measurement signal when conducting the multi-distance measurement approach. The direct use of the reference signal to estimate the interference is not able to achieve good performance in the case that the heterogeneity is serious. In this study, the cerebral function activity signal is extracted using recursive least square (RLS) method based on the multi-distance measurement method in which the reference signal is processed by ensemble empirical mode decomposition (EEMD) algorithm. The temporal and dimensional correlation of the neighboring sampling values are applied to estimate the interference in the measurement signal. Monte Carlo simulation based on a heterogeneous model is adopted here to investigate the effectiveness of this methodology. The results show that this methodology can effectively suppress the physiological interference and improve the detection accuracy of cerebral activity signal.
Ensemble empirical mode decomposition recursive least square methods physiological interference heterogeneous distribution 
Journal of Innovative Optical Health Sciences
2018, 11(6): 1850039
作者单位
摘要
西北核技术研究所, 西安 710024
利用133Ba面源和137Cs点源匀速下降,成功刻度了133Xe气体体源的探测效率和137Cs线源的探测效率; 利用133Ba面源和137Cs点源非匀速下降,成功刻度了非均匀分布的133Xe气体体源的探测效率和137Cs线源的探测效率。结果表明:匀速下降情况下,尺寸为46.8 mm×20 mm和63.5 mm×20 mm放射性133Xe气体体源的探测效率分别为0.155 和0.143,标准不确定度为8.4%(包含因子k=2 )。非均匀分布的体源效率和均匀分布的体源效率两者偏差在14%,线源的偏差在23%,可见由非均匀性引起的误差必须进行校正。
探测效率 非均匀分布 动态刻度 气体源 蒙卡模拟 detection efficiency heterogeneous distribution dynamic calibration gas source Monte Carlo simulation 
强激光与粒子束
2016, 28(10): 106002

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