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A novel device for ablation of abnormal esophageal mucosa (with video).

机译:消融异常食管粘膜的新型装置(带视频)。

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BACKGROUND: Current ablation devices for Barrett's esophagus are effective but have significant limitations. OBJECTIVE: To evaluate a new ablation device. DESIGN AND SETTING: Laboratory and animal model evaluation of the CryoBalloon, a compliant balloon that is simultaneously inflated and cooled by liquid nitrous oxide delivered by using a small, disposable, handheld unit. INTERVENTION: Cryoablation of esophageal mucosa was performed in 11 swine. Multiple ablations were created in each animal at various ablation times. MAIN OUTCOME MEASUREMENTS: Animals were euthanized at 4 days (n = 6) or 28 days (n = 5), and histological assessments were performed. At 4 days, the percentage of esophageal mucosa successfully ablated was measured. At 28 days, the circumference of the esophagus at the center of the ablation zone was measured to assess for stricture formation. RESULTS: The CryoBalloon was simple to operate, and balloon contact with tissue was easily maintained. As the ablation time was increased from 6 to 12 seconds, the percentage of mucosa ablated increased from below 60% to above 90%. Maximal effect on the mucosa was reached at 12 seconds. Ablation of up to 14 seconds resulted in minimal luminal narrowing. As the ablation duration increased from 14 to 22 seconds, there was progressive stricture formation evident at 28 days. All of the animals tolerated the treatments without difficulty and, regardless of ablation duration, were able to continue oral intake and gain weight after the procedure. LIMITATIONS: Ablation of normal porcine squamous mucosa may differ from that of human Barrett's esophagus. CONCLUSION: The CryoBalloon device enables circumferential mucosal ablation in a 1-step process by using a novel, through-the-scope balloon. The maximal effect on the mucosa is achieved with a 12-second application time. Because of its ease of use, this new device merits further study so that we can find its possible role in the treatment of Barrett's esophagus.
机译:背景:目前用于巴雷特食管的消融装置是有效的,但有很大的局限性。目的:评估一种新的消融设备。设计与设置:CryoBalloon的实验室和动物模型评估,这是一种顺应性的气球,同时使用小型的一次性手持式装置递送的液态一氧化二氮同时对其进行充气和冷却。干预:在11只猪中进行了食管粘膜的冷冻消融。每只动物在不同的消融时间产生多次消融。主要观察指标:在第4天(n = 6)或28天(n = 5)对动物实施安乐死,并进行组织学评估。在第4天,测量成功切除的食道粘膜的百分比。在第28天,测量在消融区中心的食道周长以评估狭窄的形成。结果:CryoBalloon操作简单,气球与组织的接触易于保持。随着消融时间从6秒增加到12秒,粘膜消融的百分比从60%以下增加到90%以上。在12秒时达到对粘膜的最大作用。长达14秒的消融导致最小的腔狭窄。随着消融持续时间从14秒增加到22秒,在28天时明显出现进行性狭窄。所有的动物都能毫不费力地耐受治疗,并且无论消融时间长短,都能够在手术后继续口服并增加体重。局限性:正常猪鳞状上皮粘膜的消融可能与人巴雷特食管的消融不同。结论:CryoBalloon装置通过使用新型的,可观察到的球囊,可在1步过程中进行圆周黏膜消融。在12秒的应用时间内即可达到对粘膜的最大作用。由于其易于使用,因此该新设备值得进一步研究,以便我们发现其在治疗Barrett食道中的可能作用。

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