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利用具有洛伦兹线形的探针,应用磁场过调制来改进电子顺磁共振线宽测量。

Application of magnetic field over-modulation for improved EPR linewidth measurements using probes with Lorentzian lineshape.

作者信息

Deng Yuanmu, Pandian Ramasamy P, Ahmad Rizwan, Kuppusamy Periannan, Zweier Jay L

机构信息

Center for Biomedical EPR Spectroscopy and Imaging, Davis Heart and Lung Research Institute, Division of Cardiovascular Medicine, Department of Internal Medicine, The Ohio State University College of Medicine, Columbus, OH 43210, USA.

出版信息

J Magn Reson. 2006 Aug;181(2):254-61. doi: 10.1016/j.jmr.2006.05.010. Epub 2006 Jun 8.

Abstract

Magnetic field modulation in CW electron paramagnetic resonance (EPR) is used for signal detection. However, it can also distort signal lineshape. In experiments where the linewidth information is of particular importance, small modulation amplitude is usually used to limit the lineshape distortion. The use of small modulation amplitude, however, results in low signal-to-noise ratio and therefore affects the precision of linewidth measurements. Recently, a new spectral simulation model has been developed enabling accurate fitting of modulation-broadened EPR spectra in liquids. Since the use of large modulation amplitude (over-modulation) can significantly enhance the EPR signal, the precision of linewidth measurements is therefore greatly improved. We investigated the over-modulation technique in EPR oximetry experiments using the oxygen-sensing probe lithium octa-n-butoxy-substitued naphthalocyanine (LiNc-BuO). Modulation amplitudes 2-18 times the intrinsic linewidth of the probe were applied to increase the spectral signal-to-noise ratio. The intrinsic linewidth of the probe at different oxygen concentrations was accurately extracted through curve fitting from the enhanced spectra. Thus, we demonstrated that the over-modulation model is also applicable to particulate oxygen-sensing probes such as LiNc-BuO and that the lineshape broadening induced by oxygen is separable from that induced by over-modulation. Therefore, the over-modulation technique can be used to enhance sensitivity and improve linewidth measurements for EPR oximetry with particulate oxygen-sensing probes with Lorentzian lineshape. It should be particularly useful for in vivo oxygen measurements, in which direct linewidth measurements may not be feasible due to inadequate signal-to-noise ratio.

摘要

连续波电子顺磁共振(EPR)中的磁场调制用于信号检测。然而,它也会使信号线形失真。在线宽信息特别重要的实验中,通常使用小调制幅度来限制线形失真。然而,使用小调制幅度会导致信噪比降低,从而影响线宽测量的精度。最近,已经开发出一种新的光谱模拟模型,能够精确拟合液体中调制展宽的EPR光谱。由于使用大调制幅度(过调制)可以显著增强EPR信号,因此线宽测量的精度得到了极大提高。我们使用氧传感探针八正丁氧基取代萘酞菁锂(LiNc-BuO)在EPR血氧测定实验中研究了过调制技术。应用2至18倍于探针固有线宽的调制幅度来提高光谱信噪比。通过对增强后的光谱进行曲线拟合,准确提取了不同氧浓度下探针的固有线宽。因此,我们证明了过调制模型也适用于颗粒状氧传感探针,如LiNc-BuO,并且氧引起的线形展宽与过调制引起的线形展宽是可分离的。因此,过调制技术可用于提高具有洛伦兹线形的颗粒状氧传感探针的EPR血氧测定的灵敏度并改善线宽测量。它对于体内氧测量应该特别有用,在体内氧测量中,由于信噪比不足,直接进行线宽测量可能不可行。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/641a/1839039/4655b0687d9c/nihms-16810-0001.jpg

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Formulation of Zeeman modulation as a signal filter.作为信号滤波器的塞曼调制公式。
J Magn Reson. 2004 Oct;170(2):345-71. doi: 10.1016/j.jmr.2004.07.007.

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