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Experimental Investigation of the Spiral Structure of a Magnetic Capsule Endoscope

机译:磁胶囊内窥镜螺旋结构的实验研究

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摘要

Fitting a wireless capsule endoscope (WCE) with a navigation feature can maximize its functional benefits. The rotation of a spiral-type capsule can be converted to translational motion. The study investigated how the spiral structure and rotational speed affected the capsule's translation speed. A hand-held instrument, including two permanent magnets, a stepper motor, a controller and a power supplier, were designed to generate rotational magnetic fields. The surfaces of custom-built permanent magnet rings magnetized radially were mounted in spiral lines with different lead angles and diameters, acting as mock-up capsules. The experimental results demonstrate that the rotational speed of the magnetic field and the spiral have significant effects on the translational speed of a capsule. The spiral line with a larger lead angle and the rotating magnetic field with a higher speed can change the capsule's rotation into a translational motion more efficiently in the intestine.
机译:使用导航功能拟合无线胶囊内窥镜(WCE)可以最大限度地提高其功能效益。 螺旋型胶囊的旋转可以转换为平移运动。 该研究调查了螺旋结构和转速如何影响胶囊的翻译速度。 手持仪器,包括两个永磁体,步进电机,控制器和电源供应器,用于产生旋转磁场。 定制的永磁环的表面径向磁化,螺旋线安装在具有不同的引线角和直径的螺旋线上,作为模拟胶囊。 实验结果表明,磁场的转速和螺旋对胶囊的平移速度具有显着影响。 具有较大引线角和具有更高速度的旋转磁场的螺旋线可以更有效地将胶囊的旋转变为肠道中的平移运动。

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