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EPR/NMR co-imaging for anatomic registration of free-radical images.

机译:EPR / NMR共成像用于自由基图像的解剖配准。

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While electron paramagnetic resonance imaging (EPRI) enables spatial mapping of free radicals in the whole body of small animals, it solely visualizes the free-radical distribution and does not typically provide anatomic visualization of the body. However, anatomic registration is often required for meaningful interpretation of the EPRI-derived free-radical images. An approach is reported for whole-body, EPRI-based, free-radical imaging along with proton MRI in mice. EPRI instrumentation with a 750-MHz narrow band microwave bridge and transverse oriented electric field reentrant resonator, with automatic coupling control and automatic tuning control capability, was used to map the spatial distribution of nitroxide free radicals in phantoms and in living mice, while low-field proton MRI at 16 MHz was used to define the anatomic structure to register the EPR images. Small capillary tubes containing an aqueous radical label were used as markers to enable image superimposition. With this coregistration technique, the EPRI free-radical images were precisely registered, enabling assignment of the location of the observed free-radical distribution within the organs of the mice. This technique enabled differentiation of the distribution and metabolism of nitroxide radicals within the major organs and body sites of living mice.
机译:电子顺磁共振成像(EPRI)可以对小型动物的整个身体中的自由基进行空间定位,但它只能可视化自由基的分布,通常不提供人体的解剖学可视化。但是,通常需要解剖配准来有意义地解释EPRI衍生的自由基图像。据报道一种对小鼠进行基于EPRI的全身自由基成像以及质子MRI的方法。 EPRI仪器配有750 MHz窄带微波电桥和横向电场再入谐振器,具有自动耦合控制和自动调谐控制功能,可用于绘制人体和活体小鼠体内一氧化氮自由基的空间分布,而使用16 MHz的现场质子MRI定义解剖结构,以注册EPR图像。包含含水自由基标记的小毛细管被用作标记,以实现图像叠加。通过这种配准技术,可以精确地记录EPRI自由基图像,从而可以指定小鼠器官内观察到的自由基分布的位置。这项技术能够区分活小鼠主要器官和身体部位中的氮氧化物自由基的分布和代谢。

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