Multisite EPR oximetry from multiple quadrature harmonics.

Multisite EPR oximetry from multiple quadrature harmonics.
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DOI:
10.1016/j.jmr.2011.10.016
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发表时间:
2012-01
影响因子:
2.2
通讯作者:
Potter, L. C.
Potter, L. C.
中科院分区:
化学3区
文献类型:
--
作者:
Ahmad, R.;Som, S.;Johnson, D. H.;Zweier, J. L.;Kuppusamy, P.;Potter, L. C.

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提出了利用多正交场调制谐波的多点连续波(CW)电子顺磁共振(EPR)血氧仪。首先,使用一种新近研制的数字接收机来提取场调制投影数据的多次谐波。其次,提出了一个将投影数据与未知参数(包括每个站点的线宽)联系起来的正演模型。第三,提出了一种未知参数的极大似然估计器,该估计器采用了一种能够联合处理多个正交谐波的迭代算法。该数据建模与处理方法适用于非饱和条件下的参数线型。多次谐波联合处理可使EPR数据采集速度提高2~3倍。为了在两个空间维度上进行演示,我们报道了对L波段系统的模拟和体模研究。
Multisite continuous wave (CW) electron paramagnetic resonance (EPR) oximetry using multiple quadrature field modulation harmonics is presented. First, a recently developed digital receiver is used to extract multiple harmonics of field modulated projection data. Second, a forward model is presented that relates the projection data to unknown parameters, including linewidth at each site. Third, a maximum likelihood estimator of unknown parameters is reported using an iterative algorithm capable of jointly processing multiple quadrature harmonics. The data modeling and processing are applicable for parametric lineshapes under nonsaturating conditions. Joint processing of multiple harmonics leads to 2-3 fold acceleration of EPR data acquisition. For demonstration in two spatial dimensions, both simulations and phantom studies on an L-band system are reported.
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