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Autonomous Retroflexion of a Magnetic Flexible Endoscope

机译:磁性柔性内窥镜的自主回射

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Retroflexion during colonoscopy is typically only practiced in the wider proximal and distal ends of the large intestine owing to the stiff nature of the colonoscope. This inability to examine the proximal side of the majority of colon folds contributes to today's suboptimal colorectal cancer detection rates. We have developed an algorithm for autonomous retroflexion of a flexible endoscope that is actuated magnetically from the tip. The magnetic wrench applied on the tip of the endoscope is optimized in real time with data from pose detection to compute motions of the actuating magnet. This is the first example of a completely autonomous maneuver by a magnetic endoscope for exploration of the gastrointestinal tract. The proposed approach was validated in plastic tubes of various diameters with a success rate of 98.8% for separation distances up to 50 mm. Additionally, a set of trials was conducted in an excised porcine colon observing a success rate of 100% with a mean time of 19.7 s. In terms of clinical safety, the maximum stress that is applied on the colon wall with our methodology is an order of magnitude below what would damage tissue.
机译:由于结肠镜的刚性,通常仅在大肠的较宽的近端和远端进行结肠镜检查期间的后屈。这种无法检查大多数结肠褶皱的近端的因素导致了当今次优的结直肠癌检出率。我们已经开发了一种算法,用于从尖端以磁性方式致动的柔性内窥镜自动后屈。内窥镜尖端上的电磁扳手利用来自姿态检测的数据进行实时优化,以计算致动磁体的运动。这是通过内窥镜探查胃肠道的完全自主操纵的第一个示例。所提出的方法已在各种直径的塑料管中得到验证,分离距离最大为50 mm时成功率为98.8%。另外,在切除的猪结肠中进行了一组试验,观察成功率为100%,平均时间为19.7 s。在临床安全性方面,我们的方法在结肠壁上施加的最大应力比损伤组织的应力低一个数量级。

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