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来自体内电子顺磁共振成像(EPRI)、光学分子成像(OMRI)和磁共振成像(MRI)的空间分辨生物信息。

Spatially resolved biologic information from in vivo EPRI, OMRI, and MRI.

作者信息

Matsumoto Ken-ichiro, Subramanian Sankaran, Murugesan Ramachandran, Mitchell James B, Krishna Murali C

机构信息

Radiation Biology Branch, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, Maryland, USA.

出版信息

Antioxid Redox Signal. 2007 Aug;9(8):1125-41. doi: 10.1089/ars.2007.1638.

Abstract

EPR spectroscopy can give biologically important information, such as tissue redox status, pO2, pH, and microviscosity, based on variation of EPR spectral characteristics (i.e., intensity, linewidth, hyperfine splitting, and spectral shape of free radical probes. EPR imaging (EPRI) can obtain 1D-3D spatial distribution of such spectral components using several combinations of magnetic field gradients. Overhauser enhanced MRI (OMRI) is a double-resonance technique of electron and nuclear spins. Because the Overhauser enhancement depends on transverse relaxation rate of the electron spin, OMRI can provide pO2 information indirectly, along with a high-resolution MR image. MRI can also indirectly detect paramagnetic behaviors of free radical contrast agents. Imaging techniques and applications relating to paramagnetic species (i.e., EPRI, OMRI, and MRI) have the potential to obtain maximally 5D information (i.e., 3D spatial + 1D spectral + 1D temporal dimensions, theoretically). To obtain suitable dimensionality, several factors, such as the EPR spectral information, spatial resolution, temporal resolution, will have to be taken into account. For this review, the EPRI, OMRI, and MRI applications for the study biological systems were evaluated for researchers to apply the method of choice and the mode of measurements to specific experimental systems.

摘要

电子顺磁共振光谱法可基于电子顺磁共振光谱特征(即自由基探针的强度、线宽、超精细分裂和光谱形状)的变化,给出生物学重要信息,如组织氧化还原状态、pO2、pH和微粘度。电子顺磁共振成像(EPRI)可利用磁场梯度的几种组合获得此类光谱成分的一维至三维空间分布。奥弗豪泽增强磁共振成像(OMRI)是一种电子和核自旋的双共振技术。由于奥弗豪泽增强取决于电子自旋的横向弛豫率,OMRI可间接提供pO2信息以及高分辨率磁共振图像。磁共振成像还可间接检测自由基造影剂的顺磁行为。与顺磁物质相关的成像技术和应用(即EPRI、OMRI和MRI)理论上有可能获得最大5D信息(即三维空间 + 一维光谱 + 一维时间维度)。为了获得合适的维度,必须考虑几个因素,如电子顺磁共振光谱信息、空间分辨率、时间分辨率。在本综述中,对用于研究生物系统的EPRI、OMRI和MRI应用进行了评估,以便研究人员将选择的方法和测量模式应用于特定的实验系统。

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