首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >Analysis of the 'Endoworm' prototype's ability to grip the bowel in in vitro and ex vivo models
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Analysis of the 'Endoworm' prototype's ability to grip the bowel in in vitro and ex vivo models

机译:分析“卵形”原型在体外抓住肠道肠道的能力

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Access to the small bowel by means of an enteroscope is difficult, even using current devices such as single-balloon or double-balloon enteroscopes. Exploration time and patient discomfort are the main drawbacks. The prototype 'Endoworm' analysed in this paper is based on a pneumatic translation system that, gripping the bowel, enables the endoscope to move forward while the bowel slides back over its most proximal part. The grip capacity is related to the pressure inside the balloon, which depends on the insufflate volume of air. Different materials were used as in vitro and ex vivo models: rigid polymethyl methacrylate, flexible silicone, polyester urethane and ex vivo pig small bowel. On measuring the pressure-volume relationship, we found that it depended on the elastic properties of the lumen and that the frictional force depended on the air pressure inside the balloons and the lumen's elastic properties. In the presence of a lubricant, the grip on the simulated intestinal lumens was drastically reduced, as was the influence of the lumen's properties. This paper focuses on the Endoworm's ability to grip the bowel, which is crucial to achieving effective endoscope forward advance and bowel folding.
机译:即使使用单球囊或双球肠肠镜等电流设备,均易于进入小肠的进入难度。探索时间和患者的不适是主要缺点。本文分析的原型'entoWOWOR'基于气动翻译系统,抓住肠道,使内窥镜能够向前移动,而肠道载于最近似的部分。抓握能力与气球内的压力有关,这取决于空气的不排气量。不同材料用作体外和离体模型:刚性聚甲酯甲基丙烯酸酯,柔性硅氧烷,聚酯氨基甲酸酯和离体猪小肠。在测量压力量关系时,我们发现它依赖于腔的弹性性质,并且摩擦力依赖于气球内的气压和腔的弹性性质。在润滑剂存在下,模拟肠腔的抓地力急剧降低,因为腔性能的影响是腔的影响。本文重点介绍了夹持肠道的能力,这对实现有效内窥镜前进和肠折叠至关重要。

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