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Comparison of fluid leakage across endotracheal tube cuffs using a three-dimensional printed model of the human trachea

机译:使用人体气管的三维打印模型比较气管插管袖带内的液体渗漏

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摘要

The objective of this study was to compare fluid leakage across endotracheal tube cuffs using a three-dimensional (3D)-printed human tracheal model that anatomically simulates the human trachea. We made two models based on computed tomography data of the neck and chest. Using a Mallinckrodt Hi-Lo (TM) (HL), ThinCuff(A (R)) (TC), and Mallinckrodt TaperGuard (TM) (TG), we sequentially measured the amount of fluid leakage across each endotracheal tube cuff after applying saline or viscous liquid above the cuff. The TG allowed significantly less leakage than the HL and TC with both saline and the viscous liquid. Our study, using a 3D-printed tracheal model, indicated that a conical-shaped endotracheal tube cuff significantly reduces fluid leakage across the cuff compared with conventional cylindrical-shaped cuffs made of polyurethane or polyvinylchloride, contrary to the results of a previous study using a solid cylindrical structure.
机译:这项研究的目的是使用三维(3D)打印的人体气管模型,通过解剖学模拟人的气管,比较跨气管插管的漏液情况。我们基于颈部和胸部的CT数据制作了两个模型。使用Mallinckrodt Hi-Lo(HL),ThinCuff(A(R))(TC)和Mallinckrodt TaperGuard(TM)(TG),我们在应用生理盐水后依次测量了每个气管插管的漏液量或袖带上方的粘性液体。与盐水和粘性液体相比,TG所允许的泄漏明显少于HL和TC。我们的研究使用3D打印的气管模型表明,与传统的聚氨酯或聚氯乙烯圆柱形袖带相比,圆锥形气管插管袖带显着减少了整个袖带的漏液量,这与之前使用聚氨酯或聚氯乙烯制成的圆筒形袖带的结果相反实心圆柱结构。

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