刘波,桑池学,叶泳松,周懂晶,董洋,邓时贵.低灌注兔模型脑血流动力学的多层螺旋CT灌注成像研究[J].中国医学影像技术,2007,23(8):1105~1107
低灌注兔模型脑血流动力学的多层螺旋CT灌注成像研究
CT perfusion imaging on the hemodynamics of rabbit model with cerebral hypoperfusion
投稿时间:2007-02-04  修订日期:2007-04-20
DOI:
中文关键词:  CT灌注成像  脑血流低灌注  血流动力学
英文关键词:CT perfusion imaging  Cerebral hypoperfusion  Hemodynamics
基金项目:本课题受广东省科技厅计划项目基金资助(2003C30608)。
作者单位E-mail
刘波 广东省中医院影像科,广东 广州 510120 doctorlb2006@yahoo.com.cn 
桑池学 广东省中医院影像科,广东 广州 510120  
叶泳松 广东省中医院影像科,广东 广州 510120  
周懂晶 广东省中医院影像科,广东 广州 510120  
董洋 广东省中医院影像科,广东 广州 510120  
邓时贵 广东省中医院影像科,广东 广州 510120  
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中文摘要:
      目的 探讨多层螺旋CT在实验性低灌注兔模型脑血流动力学研究中的价值。方法 健康新西兰大白兔16只,随机分成正常对照组6只及低灌注模型组10只。采用结扎双侧颈总动脉及右侧椎动脉的方法,创建实验性低血流灌注模型。所有兔在术后4~6小时行CT平扫选择显示上矢状窦最大的两个层面,经股静脉以2 ml/s速率注入造影剂行头颅CT灌注扫描,经后处理获得灌注图像。对感兴趣区平均脑血流量、平均脑血容量及达峰时间等血流动力学参数进行测量与分析。取兔脑与CT灌注扫描相对应层面的切片行HE染色。结果 低灌注模型组大白兔脑组织CBV为(20.43±2.88) ml·100 mg-1,CBF为(45.75±9.96) ml·min-1·100 mg-1,TP为(2.61±0.29) s;正常对照组CBV为(33.37±11.06) ml·100 mg-1,CBF为(58.85±20.58) ml·min-1·100 mg-1,TP为(2.08±0.20) s;统计学分析表明,两组研究对象间的三个参数均具有显著性差异,且TP对低灌注模型组脑血流动力学参数变化的反映更加敏感。结论 结扎双侧颈总动脉及单侧椎动脉制作兔低血流灌注模型稳定可靠。经股静脉团注对比剂行CT灌注扫描可较敏感地反映低灌注模型脑组织的血流动力学状态,为缺血性脑梗死的早期预防和诊断、治疗提供重要信息。
英文摘要:
      Objection To investigate the value of CT perfusion imaging in the hemodynamics of experimental rabbit model with cerebral hypoperfusion. Methods Sixteen New Zealand rabbits were classified randomly into 2 groups: one was control group (n=6) and the other was cerebral hypoperfusion group (n=10). The group of experimental cerebral hypoperfusion models was created by occlusion of the bilateral internal carotid artery (IAC) and the right vertebral artery (VA). In 4-6 hours after operation, all the rabbits were performed the CT examination to choose two slices showing the superior sagittal sinus better and then underwent the CTPI. The injection rate of contrast medium was 2 ml/s by the femoral vein. Study on the hemodynamics parameters includes CBV, CBF and TP of the ROI. The slices were performed HE staining according to those of the CTPI. Results The CBV, CBF and TP of rabbit model with cerebral hypoperfusion was (20.43±2.88) ml·100 mg-1, (45.75±9.96) ml·min-1·100 mg-1, and (2.61±0.29) s, respectively; the CBV, CBF and TP of the control was (33.37±11.06) ml·100 mg-1, (58.85±20.58) ml·min-1·100 mg-1, and (2.08±0.20) s respectively; there was significantly defferences between the two groups in the three parameters. Conclusion It is stable to get the model with hypoperfusion by occlusion of the bilateral IAC and unilateral VA. CTPI can sensitively reveal the cerebral hemodynamics of the rabbit model with hemoperfusion, which could provide the important information for the early prevention, diagnosis and treatment of cerebral ischemia.
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