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Prevention of Vessel Desiccation and Maintenance of Normal Morphology During Endovascular Harvesting Using Humidified Warmed Gas

机译:使用湿热气体预防血管干燥并在血管内采集过程中保持正常形态

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Background and Objectives: Endoscopic vessel harvesting (EVH) traditionally uses carbon dioxide (CO2) gas for insufflation. The CO2 based on government regulations is bone dry and room temperature. All previous EVH studies use this type of unconditioned gas. It is hypothesized that by changing the quality of CO2 gas differences may occur that are attributable to dry gas versus wet gas exposure. Methods: A comparison of the effect(s) of traditional dry CO2 gas compared to humidified exposure was done using a porcine model and evaluated in a double-blind randomized controlled fashion. Results: Vessels exposed to traditional dry cold gas had morphologic and structural changes noted on histologic evaluation. This included desiccation changes of the tunica adventitia desiccation and tunica media collagen and elastin. Vessels exposed to dry gas showed 10% to 12% contraction and constriction with tortuous changes to the intima and endothelial lining that were progressive with increasing volumes of gas exposure. No desiccation or morphologic changes were seen with humidified warmed gas produced using the VesselGuardian. Conclusions: Traditional dry cold CO2 caused vascular tissue damage extending from the adventitia to intima, changing the vessel in morphologic and structural configuration. With the VesselGuardian humidified warmed, gas maintained vessel morphology and integrity by preventing desiccation. Changing the quality of CO2 from dry and cold to wet and warm may offer clinical utility for a better quality conduit for coronary artery bypass graft procedures.
机译:背景与目的:传统的内窥镜血管收集术(EVH)使用二氧化碳(CO 2 )气体进行吹入。根据政府法规,CO 2 是骨骼干燥和室温。以前所有的EVH研究都使用这种类型的未调节气体。假设通过改变CO 2 的质量,可能会出现干气与湿气暴露的差异。方法:使用猪模型比较传统的干式CO 2 气体与加湿暴露的效果,并以双盲随机对照方式进行评估。结果:暴露于传统干冷气体的容器在组织学评估中注意到形态和结构变化。这包括外膜干燥的干燥变化以及中膜胶原和弹性蛋白的干燥。暴露于干燥气体中的容器显示出10%至12%的收缩和收缩,内膜和内皮衬的曲折变化随着暴露气体的增加而逐渐发展。使用VesselGuardian产生的加湿温热气体未见干燥或形态变化。结论:传统的干冷CO 2 引起血管组织损伤,从外膜扩展到内膜,改变了血管的形态和结构。使用VesselGuardian进行加湿加温后,气体可以防止干燥,从而保持容器的形态和完整性。将CO 2 的质量从干冷变化为湿热变化可能为临床上为冠状动脉旁路移植术提供更好质量的导管提供实用性。

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