Ikebata Yusuke, Sato-Akaba Hideo, Aoyama Takashi, Fujii Hirotada, Itoh Kouichi, Hirata Hiroshi
Department of Electrical Engineering, Yamagata University, Yonezawa, Yamagata, Japan.
Magn Reson Med. 2009 Sep;62(3):788-95. doi: 10.1002/mrm.22029.
A method of post-processing to enhance the image resolution of the distribution of free radical molecules obtained with continuous-wave electron paramagnetic resonance (CW-EPR) imaging is reported. The low spatial resolution of EPR imaging, which has created difficulties in biomedical applications, was overcome by the method of resolution-recovery for EPR imaging. High spatial resolution images for the distribution of free radical molecules with a very short relaxation time were obtained with this method. The method's two-step postprocessing consists of conventional deconvolution and filtered back-projection and a process of iterative deconvolution. The resolution-recovery method was demonstrated with three-dimensional (3D) imaging of stable nitroxyl radicals in mouse head. In phantom experiments with a solution of triarylmethyl (TAM) radicals, the spatial resolution was improved by a factor of 7 with the resolution-recovery method.
报道了一种后处理方法,用于提高通过连续波电子顺磁共振(CW-EPR)成像获得的自由基分子分布的图像分辨率。EPR成像的低空间分辨率在生物医学应用中造成了困难,而EPR成像分辨率恢复方法克服了这一问题。用该方法获得了具有非常短弛豫时间的自由基分子分布的高空间分辨率图像。该方法的两步后处理包括传统的反卷积和滤波反投影以及迭代反卷积过程。通过对小鼠头部稳定氮氧自由基的三维(3D)成像证明了分辨率恢复方法。在使用三芳基甲基(TAM)自由基溶液的体模实验中,分辨率恢复方法使空间分辨率提高了7倍。