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首页> 外文期刊>Biomedical Engineering, IEEE Transactions on >Magnetic Control System Targeted for Capsule Endoscopic Operations in the Stomach—Design, Fabrication, and in vitro and ex vivo Evaluations
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Magnetic Control System Targeted for Capsule Endoscopic Operations in the Stomach—Design, Fabrication, and in vitro and ex vivo Evaluations

机译:针对胃内胶囊内窥镜手术的磁控制系统—设计,制造以及体外和离体评估

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摘要

This paper presents a novel solution of a hand-held external controller to a miniaturized capsule endoscope in the gastrointestinal (GI) tract. Traditional capsule endoscopes move passively by peristaltic wave generated in the GI tract and the gravity, which makes it impossible for endoscopists to manipulate the capsule endoscope to the diagnostic disease areas. In this study, the main objective is to present an endoscopic capsule and a magnetic field navigator (MFN) that allows endoscopists to remotely control the locomotion and viewing angle of an endoscopic capsule. The attractive merits of this study are that the maneuvering of the endoscopic capsule can be achieved by the external MFN with effectiveness, low cost, and operation safety, both from a theoretical and an experimental point of view. In order to study the magnetic interactions between the endoscopic capsule and the external MFN, a magnetic-analysis model is established for computer-based finite-element simulations. In addition, experiments are conducted to show the control effectiveness of the MFN to the endoscopic capsule. Finally, several prototype endoscopic capsules and a prototype MFN are fabricated, and their actual capabilities are experimentally assessed via in vitro and ex vivo tests using a stomach model and a resected porcine stomach, respectively. Both in vitro and ex vivo test results demonstrate great potential and practicability of achieving high-precision rotation and controllable movement of the capsule using the developed MFN.
机译:本文提出了一种新型的手持式外部控制器解决方案,用于胃肠道(GI)小型胶囊内窥镜。传统的胶囊内窥镜通过胃肠道和重力产生的蠕动波被动移动,这使得内窥镜医师无法将胶囊内窥镜操纵到诊断疾病区域。在这项研究中,主要目的是提出一种内窥镜胶囊和一个磁场导航器(MFN),该导航器使内窥镜医师可以远程控制内窥镜胶囊的运动和视角。这项研究的吸引人的优点是,无论是从理论上还是从实验的角度来看,都可以通过外部MFN来实现内窥镜胶囊的操纵,并且具有有效性,低成本和操作安全性。为了研究内窥镜囊和外部MFN之间的磁性相互作用,建立了基于计算机的有限元模拟的磁性分析模型。另外,进行实验以显示MFN对内窥镜胶囊的控制有效性。最后,制造了几个原型内窥镜胶囊和一个原型MFN,并分别通过使用胃模型和切除的猪胃通过体外和离体测试对它们的实际功能进行了实验评估。体外和离体测试结果均表明,使用发达的MFN可以实现胶囊的高精度旋转和可控运动,具有巨大的潜力和实用性。

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