Share:
Share this content in WeChat
X
Clinical Article
3D CE-MRA for lower extremity arteriosclerosis obliterans collateral circulation
GUO Juan  WANG Xiao-chun  ZHANG Hui  WANG Le  QIN Jiang-bo 

DOI:10.3969/j.issn.1674-8034.2012.03.009.


[Abstract] Objective: To evaluate three-dimensional dynamic contrast-enhanced magnetic resonance angiography (3D CE-MRA) in the display of lower extremity collateral circulation of arteriosclerosis obliterans (ASO).Materials and Methods: Twenty-nine patients with ASO were recruited with analysis of 3D CE-MRA. The arteries included bilateral common iliac artery, internal and external iliac artery, common femoral artery, deep and superficial femoral artery, popliteal arteries, anterior and posterior tibial artery and peroneal artery were analyzed and compared with that of the controls.Results: There were 318 lesions including 113 collateral circulation, 15 external iliac arteries, 15 common femoral arteries, 27 deep femoral arteries, 31 superficial femoral arteries, and 25 anterior tibial arteries.Conclusion: 3D CE-MRA is helpful to display the collateral circulation in ASO of lower extremity.
[Keywords] Lower extremity;Arteriosclerosis obliterans;Collateral circulation;Magnetic resonance imaging

GUO Juan Department of MR, Shanxi Academy of Medical Sciences/Shanxi DA Hosptial, Taiyuan 030032, China

WANG Xiao-chun Department of Radiology, the First Affiliated Hosptial of Shanxi Medical University, Taiyuan 030001, China

ZHANG Hui * Department of Radiology, the First Affiliated Hosptial of Shanxi Medical University, Taiyuan 030001, China

WANG Le Department of Radiology, the First Affiliated Hosptial of Shanxi Medical University, Taiyuan 030001, China

QIN Jiang-bo Department of Radiology, the First Affiliated Hosptial of Shanxi Medical University, Taiyuan 030001, China

*Correspondence to: ZHANG H, E-mial:zhanghui_mr@163.com

Conflicts of interest   None.

Received  2011-10-11
Accepted  2011-12-30
DOI: 10.3969/j.issn.1674-8034.2012.03.009
DOI:10.3969/j.issn.1674-8034.2012.03.009.

[1]
吴在德,吴肇汉. 外科学. 6版. 北京: 人民卫生出版社, 2004: 632.
[2]
Hideki Ota, Vasily L, Yarny KH, et al. Carotid intraplaque hemorrhage imaging at 3.0-T MR imaging: comparison of the diagnostic performance of three T1-weighted sequences. Radiology, 2010, 2(254): 551-563.
[3]
安靖,孙治国,张琼. 无对比剂增强的磁共振血管成像技术. 磁共振成像, 2011, 2(1): 65-68.
[4]
李剑英,彭琨,冯艳林, 等. 3D CE-MRA对诊断下肢血管病变的应用. 实用医学影像杂志, 2008, 9(6): 361-363.
[5]
陈曌,郭友,郑晓林, 等. 动态移床3D CE-MRA对糖尿病患者下肢动脉病变诊断的探讨. 影像诊断与介入放射学, 2008, 17(4): 188-190.
[6]
王翠艳,赵斌,王光斌, 等. 三维增强MR血管成像在周围型动脉闭塞症分级中的应用价值. 中华放射学杂志, 2007, 41(6): 598-601.
[7]
Haider CR, Glockner JF, Stanson AW, et al. Peripheral vasculature: high-temporal-and high-spatial-resolution three-dimensional contrast-enhanced MR angiography. Radiology, 2009, 10(253): 831-843.
[8]
杨春山,张松,刘士远, 等. 三维高时间分辨率动态增强MR血管成像在临床的初步应用. 中华放射学杂志, 2007, 41(3): 304-307.
[9]
张艺,邓力刚,靳二虎, 等. 全下肢动脉磁共振血管成像技术的临床应用. CT理论与应用研究, 2010, 19(3): 75-81.
[10]
胡骥琼,王道明,司春强, 等. 下肢动脉硬化闭塞症侧支循环流出道的解剖学特点及临床应用初探. 中国修复重建外科杂志, 2008, 22(5): 571-574.
[11]
Gustav A, Thomas P, Keistin G, et al. Peripheral Arteries in Diabetic Patients: Standerd Bolus-chase and Time-resolved MR Angigraphy. Radiology, 2007, 24(2): 610-620.
[12]
Fenchel M, Requardt M, Tomaschko K, et al. Whole-body MR angiography using a novel 32-receiving-channel MR system with surface coil techology:firstclinical experience. J Magn Reson Imaging, 2005, 21(3): 596-603.

PREV 3D MRI investigation on fetal surface malformations
NEXT Measurement of unilateral glomerular filtration rate with dynamic contrast-enhanced MRI in swine renal dysfunctional model
  



Tel & Fax: +8610-67113815    E-mail: editor@cjmri.cn