黄克敏,冯彦林,温广华,梁伟棠,李林,冯叶霞,邓大浪.SPECT/CT心肌灌注显像图像配准情况及其对图像质量的影响[J].中国医学影像技术,2014,30(10):1574~1578
SPECT/CT心肌灌注显像图像配准情况及其对图像质量的影响
Images registration of SPECT/CT myocardial perfusion imaging and effect on image quality
投稿时间:2014-01-07  修订日期:2014-08-06
DOI:
中文关键词:  心脏  体层摄影术, 发射型计算机, 单光子  衰减校正  灌注成像
英文关键词:Heart  Tomography, emission-computed, single-photon  Attenuation corrected  Perfusion imaging
基金项目:
作者单位E-mail
黄克敏 佛山市第一人民医院核医学科, 广东 佛山 528000 hkmin25@163.com 
冯彦林 佛山市第一人民医院核医学科, 广东 佛山 528000  
温广华 佛山市第一人民医院核医学科, 广东 佛山 528000  
梁伟棠 佛山市第一人民医院核医学科, 广东 佛山 528000  
李林 佛山市第一人民医院核医学科, 广东 佛山 528000  
冯叶霞 佛山市第一人民医院核医学科, 广东 佛山 528000  
邓大浪 佛山市第一人民医院核医学科, 广东 佛山 528000  
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中文摘要:
      目的 探讨SPECT/CT心肌灌注显像CT与SPECT图像的配准及配准不良对CT衰减校正(CTAC)图像质量的影响。方法 分析110例99Tcm-甲氧基异丁基异腈SPECT/CT心肌灌注显像受检者资料,利用仪器自带的图像融合软件观察CT和SPECT图像的配准情况,并对出现配准不良的受检者图像行重新配准。利用靶心图获得左心室各壁的放射性计数百分比,比较不同方向配准不良与重新配准后左心室各壁放射性计数的差异和图像差异。结果 有58例(58/110,52.73%)共出现78次图像配准不良,以x轴方向向右偏移和z轴方向向下偏移最常见。对配准不良的图像重新配准后,前壁、心尖部和侧壁的放射性计数百分比明显增加(t=7.931、2.385、8.320,P均<0.05),其中x轴方向的配准不良对侧壁的影响最为显著,z轴方向的配准不良对前壁的影响最为显著。图像重新配准后可明显改善左心室前壁、心尖部和侧壁的放射性分布。结论 图像配准不良以x轴方向向右偏移和z轴方向向下偏移最为常见,对前壁、心尖部和侧壁的影响最为显著;对CT和SPECT图像行重新配准后可明显改善左心室各壁的图像质量。
英文摘要:
      Objective To explore the effect of registration and misregistration of CT and SPECT images on image quality of CT attenuation correction (CTAC) in SPECT/CT myocardial perfusion imaging. Methods Totally 110 patients performed rest 99Tcm-methoxy isobutyl isouitril (99Tcm-MIBI) myocardial perfusion SPECT and underwent CTAC on a SPECT/CT system. The circumstances of image misregistration between SPECT and CT were observed by using the image function software, and reregistrationed of CT and SPECT images for the misregistration data were analyzed. Then counts percentage of radioactivity of the left ventricle using myocardial Bull's-eye were measured. The different directions misregistration differences and image differences reregistrationed of the left ventricular walls radioactive counts were compared. Results All of 58 patients (58/110, 52.73%) showed 78 misregistration, and it was frequently occurred in x-axes that motion to right and in z-axes that motion to down. The counts percentage of radioactivity of anterior, apex and lateral wall was significant increased when the misregistration images were reregistrationed (t=7.931, 2.385, 8.320, all P<0.05), the misregistration in x-axes was most impact on the lateral wall and z-axes was most impact on the anterior wall. The image quality could be obviously improved after reregistrationed expressly in anterior, apex and lateral wall. Conclusion The image misregistration is frequently occurred in x-axes that motion to right and in z-axes that motion to down, which is mostly impact on the anterior, apex and lateral wall. The image quality could be obviously improved after reregistrationed.
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