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Endovascular stents in pulmonary valve and artery in swine: feasibility study of MR imaging-guided deployment and postinterventional assessment.

机译:猪肺动脉瓣和动脉的血管内支架:MR成像引导部署和介入后评估的可行性研究。

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PURPOSE: To assess the feasibility of using magnetic resonance (MR) imaging to guide stent deployment in the pulmonary valve and artery and evaluate, after stent deployment, the position and morphology of and blood flow through the stent. MATERIALS AND METHODS: Angiography and 1.5-T MR imaging were performed in a dual-imaging suite. Nitinol stents were placed in the pulmonary valve and main pulmonary artery in five pigs by using MR imaging guidance. For interactive MR imaging monitoring of catheter manipulation and stent delivery, balanced fast field-echo and T1-weighted turbo field-echo sequences were used. Visualization of the delivery system was based on T2* (with air as the contrast material) or T1 (with gadodiamide as the contrast material). After stent deployment, the position and morphology of and flow through the stent were verified with multiphase multisection balanced fast field-echo and velocity-encoded cine MR imaging. Findings at angiography and postmortem examination also helped verify stent placement. The paired Student t test was used for data analysis. RESULTS: The stent was successfully deployed in all animals. The stent was placed distal to the pulmonary valve in four animals and across the pulmonary valve in one animal. The position and morphology of the stent were clearly depicted on balanced fast field-echo images. In the animal with the stent placed across the pulmonary valve, the pulmonary regurgitant fraction was 37%; this was not seen in the animals with stents placed distal to the pulmonary valve. No complication (eg, stent migration, intramural injury, or vascular perforation) was noted during the intervention. Findings at angiography and postmortem examination confirmed the position of the stents. CONCLUSION: MR imaging has the potential to guide stent placement in the pulmonary valve or artery and to evaluate flow volume within the stent lumen after the intervention.
机译:目的:评估使用磁共振(MR)成像技术指导支架在肺动脉瓣和动脉中的部署的可行性,并在支架部署后评估支架的位置和形态以及血流通过支架的情况。材料与方法:血管造影和1.5-T MR成像在双成像套件中进行。在MR成像指导下,将镍钛诺支架放置在五只猪的肺动脉瓣和主肺动脉中。为了对导管操作和支架输送进行交互式MR成像监视,使用了平衡的快速场回波和T1加权涡轮场回波序列。输送系统的可视化基于T2 *(以空气作为对比材料)或T1(以gadodiamide作为对比材料)。支架展开后,通过多相多节平衡快速场回波和速度编码电影MR成像验证了支架的位置和形态以及通过支架的流量。血管造影和验尸检查的结果也有助于验证支架的位置。配对的Student t检验用于数据分析。结果:该支架已成功部署在所有动物中。在四只动物中将支架放置在肺动脉瓣的远端,在一只动物中将支架横穿肺动脉瓣。在平衡的快速场回波图像上清楚地描绘了支架的位置和形态。在支架跨过肺动脉瓣放置的动物中,肺返流率为37%;在将支架放置在肺动脉瓣远端的动物中没有看到这种情况。干预期间未发现并发症(例如支架迁移,壁内损伤或血管穿孔)。血管造影和验尸检查的结果证实了支架的位置。结论:MR成像有可能指导支架在肺动脉瓣或动脉中的放置,并评估介入后支架腔内的流量。

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