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Physiological Factors of the Small Intestine in Design of Active Capsule Endoscopy

机译:主动胶囊内镜设计中小肠的生理因素

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Wireless capsule endoscope is a device used to examine the diseases in the small intestine. At present, the capsule endoscope moves through the gastrointestinal tract by natural propulsion of peristalsis. In order to achieve real-time diagnosis and treatment-related procedure, the capsule endoscope is required to be self-actuated and controlled. Different from solid environment, the small intestine is an extremely flexible tube. The unique structure and tissue cause many challenges for the capsule actuation. In this paper, the features, motility, and frictional force of the small intestine are analyzed for determining the design strategy. In-vitro experiment results show the power of magnetic force needed for driving the capsule and the factors that affect the magnitude of the driving force as well. Based on the analysis of the small intestine, a scheme of magnetically-actuated active endoscopy is proposed in the end
机译:无线胶囊内窥镜是用于检查小肠疾病的设备。目前,胶囊内窥镜通过蠕动的自然推进而穿过胃肠道。为了实现与诊断和治疗相关的实时过程,需要胶囊内窥镜是自驱动和可控制的。与固体环境不同,小肠是一种非常柔软的管子。独特的结构和组织给胶囊致动带来许多挑战。本文通过分析小肠的特征,运动性和摩擦力来确定设计策略。体外实验结果显示了驱动胶囊所需的磁力以及影响驱动力大小的因素。在对小肠进行分析的基础上,最后提出了一种磁控主动内窥镜检查方案。

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