首页> 外文期刊>European Journal of Radiology >High spatial resolution magnetic resonance imaging of experimental cerebral venous thrombosis with a blood pool contrast agent.
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High spatial resolution magnetic resonance imaging of experimental cerebral venous thrombosis with a blood pool contrast agent.

机译:血池造影剂对实验性脑静脉血栓形成的高空间分辨率磁共振成像。

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PURPOSE: The purpose of this study was to investigate the feasibility of clot visualization in small sinus and cortical veins with contrast enhanced MRA in a cerebral venous thrombosis animal model using a blood pool contrast agent, Gadofosveset, and high spatial resolution imaging. MATERIAL AND METHODS: For induction of cerebral venous thrombosis a recently developed combined interventional and microsurgical model was used. Cerebral sinus and cortical vein thrombosis was induced in six pigs. Two further pigs died during the procedure. Standard structural, time-of-flight- and phase contrast-angiograms were followed by fast time resolved high resolution 3D MRA (4D MRA) and subsequent high spatial resolution 3D MRA in the equilibrium phase with and without addition of parallel imaging. Visualization of the clots using the different sequences was subjectively compared and contrast-to-noise ratio (CNR) was assessed. RESULTS: In the remaining six animals the procedure and MR-imaging protocol including administration of Gadofosveset was successfully completed. The 3D high resolution MRA in the equilibrium phase without the addition of parallel imaging was superior to all the other applied MR measurement techniques in terms of visualization of the clots. Only applying this sequence bridging vein thromboses were also seen as a small filling defect with a high CNR of >18. CONCLUSION: Only the non-accelerated high spatial resolution 3D MRA in the equilibrium in conjunction with the blood pool agent Gadofosveset allows for high-contrast visualization of very small clots in the cerebral sinus and cortical veins. STATEMENT CLINICAL IMPACT: Detection of cortical vein thrombosis is of high clinical impact. Conventional MRI sequences often fail to visualize the clot. We could demonstrate that, in contrast to conventional sequences, with high spatial resolution 3D MRA in the equilibrium in conjunction with the blood pool agent Gadofosveset very small clots in the cerebral sinus and cortical veins could be successfully visualized. We think that with the presented approach cortical vein thrombosis might also be sufficiently visualized in patients.
机译:目的:本研究的目的是研究使用血池造影剂,Gadofosveset和高空间分辨率成像技术在脑静脉血栓形成动物模型中对比增强MRA的小窦和皮层静脉血凝块可视化的可行性。材料和方法:为了诱导脑静脉血栓形成,使用了最近开发的介入和显微手术相结合的模型。在六只猪中诱发了脑窦和皮质静脉血栓形成。手术过程中又有两只猪死亡。在进行标准结构,飞行时间和相衬造影造影后,需要进行快速时间分辨的高分辨率3D MRA(4D MRA),以及随后在平衡相中进行高空间分辨率的3D MRA,无论是否添加平行成像。主观比较使用不同序列的凝块的可视化,并评估对比噪声比(CNR)。结果:在其余六只动物中,包括加多福斯韦塞特的给药在内的程序和MR成像方案均已成功完成。在凝块的可视化方面,不添加平行成像的平衡阶段的3D高分辨率MRA优于所有其他应用的MR测量技术。仅应用该序列,桥接静脉血栓也被认为是小的充盈缺损,CNR大于18。结论:只有平衡状态下未加速的高空间分辨率3D MRA与血池试剂Gadofosveset才能对脑窦和皮层静脉中的微小凝块进行高对比度可视化。声明的临床影响:皮质静脉血栓的检测具有很高的临床影响。传统的MRI序列通常无法使凝块可视化。我们可以证明,与常规序列相比,在高空间分辨率下结合血池药剂Gadofosveset在平衡状态下使用3D MRA可以成功地看到脑窦和皮层静脉中非常小的凝块。我们认为,采用本文提出的方法,患者的皮质静脉血栓形成也可能得到足够的可视化。

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