摘要
目的:了解扇区重建技术在冠状动脉CT成像中的应用价值。方法:58例受检者,根据心率分为3组,A组,心率〈75次/min,单扇区重建;B组,心率75~94次/min,双扇区重建;C组,心率95~115次/min,四扇区重建。分别测量冠状窦开口处增强前后CT值的变化,并计算强化率,同时测量受检者的受辐射剂量CTD和DLP值。对三维冠状动脉重建图像质量按5个等级进行主观评分:5分无伪影;4分轻微伪影,仅主干的某一段轻微模糊,诊断不受影响;3分为中等伪影,某一支冠状动脉主干的1/2以上模糊,但可以诊断;2分为严重伪影,某一支冠状动脉主干全长均模糊不清或不连续,诊断受限;1分为冠状动脉主干不能识别,不能作出诊断。其中4分以上因伪影的干扰较少定为优良。结果:①主观评分:A组:共29例,优良率为100%;B组:共20例,优良率为85%;C组:共9例,优良率为56%;②客观评估:3组病例的强化均值、强化率、CTD和DLP值之间均存在显著差异(P〈0.05),单扇区扫描获得的图像的强化效果最佳,且受检者在检查过程中的所受到的辐射剂量最小。结论:受检者在检查前服用β受体阻滞剂控制心率,并采用单扇区重建技术能获得理想的冠状动脉诊断图像。
Objective:To evaluate the effect of different segment image reconstructions for different heart rates(HRs) on 64-multislice computed tomographic(MSCT) coronary angiography.Methods:Fifty-eight patients were categorized into 3 groups based ondifferent sinus rhythms heart rate(HR).Group A,HR75 beats per minute,single-segment image reconstruction;Group B,HR 75-94 beats per minute,two-segment image reconstruction;Group C,HR 95-115 beats per minute with four-segment image reconstruction.Mean attenuation values of the coronary sinus were measured before and after contrast enhancement and the enhancement ratio were also calculated.Weighted CT dose indexes(CTDI) and dose-length product(DLP)were obtained for all protocols and the image quality were graded on a 5-point confidence scale,Grades 4 and 5 were accepted as good and excellent for the image quality.Results: The ratio of good and excellent image quality were 100%(29/29) for group A,85%(17/20) for Group B and 56%(5/9) for Group C.The values of mean attenuation,enhancement ratio,CTDI and DLP showed significant difference among the 3 groups(P0.05).The best image quality and the least radiation dose were achieved at single-segment image reconstruction.Conclusions: Oral administration of β-blockers to control patients′ HR and use of single-segment image reconstruction are very important to get the best diagnostic image in 64-MDCT coronary angiography.
出处
《中国临床医学》
2011年第4期555-557,共3页
Chinese Journal of Clinical Medicine
关键词
体层摄影术
X线计算机
多扇区重建
CT剂量指数
剂量长度乘积
Tomography
X-ray computed
Segment image reconstructions
Weighted CT dose indexes
dose-length product(DLP)