陈明,刘志跃,刘怡,丁云川,李静,尹帆,郑家亮.急性心肌梗死的左室短轴心肌地形图分析[J].中国医学影像技术,2007,23(7):998~1001
急性心肌梗死的左室短轴心肌地形图分析
Application of circumferencial myocardial function maps of tissue Doppler in patients with acute myocardial infarction
投稿时间:2006-12-25  修订日期:2007-02-24
DOI:
中文关键词:  超声心动描记术  心肌地形图  组织多普勒成像  急性心肌梗死
英文关键词:Echocardiography  Circumferencial functional maps  Tissue Doppler imaging  Acute myocardial infarction
基金项目:上海市浦东新区卫生科技面上项目(PW2006A-6)。
作者单位E-mail
陈明 同济大学附属东方医院心脏中心,上海 200120 mingchen1283@vip.163.com 
刘志跃 内蒙古医学院研究生院,内蒙古 呼和浩特 010059  
刘怡 同济大学附属东方医院心脏中心,上海 200120  
丁云川 昆明市延安医院,云南 昆明 650051  
李静 昆明市延安医院,云南 昆明 650051  
尹帆 昆明市延安医院,云南 昆明 650051  
郑家亮 昆明贝斯特数字化公司,云南 昆明 650011  
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中文摘要:
      目的 研制组织多普勒(TDI)短轴心肌功能地形图(CFM),并初步评价该CFM分析系统定量分析冠心病心肌节段运动的作用。方法 用普通彩色超声仪器采集含急性心肌梗死(AMI)患者在内的冠心病人(59例)的左室短轴心肌TDI图像,冠心病组分为AMI亚组(23例)与②冠心病亚组(36例)。自制CFM技术从左乳头肌起,以0°至360°方式表示左室短轴心肌的空间分布,用心内膜面的运动幅度与速度来描述节段运动。结果 心梗区心肌的CFM节段运动曲线急剧向零线方向移动,可以用CFM圆形图像上低平线段所占度数来定量描述缺血心肌的分布范围,AMI亚组异常节段的分布范围较冠心病亚组增大,具有统计学上显著性差异 。结论 自制CFM技术能够用于定量分析AMI的心肌节段运动,该技术增加了组织多普勒技术分析心肌节段运动的能力。
英文摘要:
      Objective A circumferencial functional map (CFM) of tissue Doppler imaging (TDI) was applied in patients with coronary artery disease (CAD) and the accuracy of CFM in assessment of ischemic region in patients with acute myocardial infarction (AMI) was evaluated. Methods CFM was performed in 59 patients with CAD and 26 subjects as control. Patients with CAD were divided into subgroups of AMI (n=23) and myocadial ischemia (n=36). The spatial distribution of hypokinetic motion of endocardium could be demonstrated by CFM in which left papillary muslue was considered as the beginning point and the measurement was made from 0° to 360° on CFM. Results The curve of endocardial motion in patients with AMI was shifted towards zero line on CFM and the extent of wall motion abnormality would be described quantitatively. The extent of abnormal segments in AMI was broader than that in myocadial ischemia subgroup ( ° vs °, P<0.001). Conclusion CFM at the midpapillary muscle level could be used in detection of hypokinetic segments, which might increase the ability of TDI in assessing coronary artery disease.
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