...
【24h】

Three-dimensional analysis of renal artery bending motion during respiration.

机译:呼吸过程中肾动脉弯曲运动的三维分析。

获取原文
获取原文并翻译 | 示例
           

摘要

Purpose: To evaluate displacement and bending of the renal arteries during respiration.Methods: Seven men (mean age 59+/-7 years, range 54-71) were imaged with contrast-enhanced magnetic resonance angiography (MRA). Two phases of the MRA were acquired during separate normal inspiration and expiration breath-holds. Displacement of the kidneys and renal ostia and changes in renal branch angle were measured in both coronal and axial views. Arterial curvature and distances between inspiration and expiration renal artery centerlines were computed at 1-mm intervals for the first 2 cm of each branch.Results: Significant kidney displacement was observed in both the coronal and axial views, with maximum displacement on the right side; the right kidney at expiration was 13.2+/-7 mm superior and 6.3+/-3.4 mm posterior of its position during inspiration. By comparison, the renal ostia were relatively fixed, displacing 10-fold less than the kidneys. This displacement differential resulted in significant renal branch angle changes between inspiration and expiration, with the branches being more perpendicular at expiration. Right and left branch angles were significantly different from each other in the axial view, with the right artery taking off more anteriorly. The renal artery centerlines were displaced approximately 2.5 mm at a distance of 1 cm from the ostia, with little displacement change in the second centimeter. The right renal artery was more curved than the left, with more respiratory-induced curvature change near the ostia.Conclusions: Positional change of the kidneys during respiration induces both bending and change in angulation of the renal arteries. This bending can have a complex 3-dimensional shape near the ostia. In the setting of renal artery stenting, this motion may adversely affect the artery and/or the stent, possibly contributing to restenosis.
机译:目的:评估呼吸过程中肾动脉的移位和弯曲。方法:对7名男性(平均年龄59 +/- 7岁,范围54-71)进行对比增强磁共振血管造影(MRA)成像。在分别的正常吸气和呼气屏气期间获得了MRA的两个阶段。在冠状和轴向视图中都测量了肾脏和肾脏口的移位以及肾脏分支角的变化。在每个分支的前2 cm以1 mm的间隔计算动脉曲率以及吸气和呼气肾动脉中心线之间的距离。结果:在冠状和轴向视图中均观察到明显的肾脏移位,右侧最大移位;呼气时右肾在其位置上方13.2 +/- 7 mm,后部6.3 +/- 3.4 mm。相比之下,肾孔口相对固定,位移比肾脏少10倍。这种位移差异导致吸气和呼气之间肾脏分支角度发生明显变化,呼气时分支更加垂直。在轴向视图中,左右分支角彼此之间存在显着差异,其中右动脉的位置更靠前。距动脉口1 cm处,肾动脉中心线位移约2.5 mm,第二厘米的位移变化很小。右肾动脉比左肾更弯曲,在口附近有更多的呼吸诱发的曲率变化。结论:呼吸过程中肾脏的位置变化既引起弯曲,也引起肾动脉的角度改变。这种弯曲可以在靠近口处具有复杂的3维形状。在肾动脉支架置入的情况下,该运动可能会对动脉和/或支架产生不利影响,可能导致再狭窄。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号