商用胶囊内窥镜静态磁定位的差异化:不同环形和圆柱形磁体的评价

IF 0.6 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
S. Zeising, Lu Chen, A. Thalmayer, Georg Fischer, J. Kirchner
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引用次数: 0

摘要

摘要胶囊内窥镜检查是一种很有前途的诊断整个胃肠道的工具。由于病人吞下胶囊,它们的大小必须足够小。主要的内置组件是相机、氧化银电池、发光二极管和用于传输视频的天线。为了进行诊断和治疗,需要对特定视频帧的胶囊进行精确定位。最近,用集成永磁体对这些胶囊进行静态磁定位显示出了有希望的结果。然而,在最先进的技术中,使用了与小胶囊相比相对较大的磁体。因此,在这篇扩展的论文中,评估了最近提出的一种优化的差分静态磁定位方法对不同尺寸的圆盘和环形磁体的定位性能。环形磁铁是为与商业胶囊的两个电池组集成而设计的。磁体在静态和动态场景中进行了评估,以评估该方法在患者日常生活中的性能。结果显示,平均位置和方向误差不超过5 mm和4∘,适用于除1.5和3以外的所有应用磁体 mm长的圆盘磁铁。此外,结果表明,当胶囊内窥镜的铁磁电池集中在径向环形磁体内时,它们提高了定位性能。总体而言,研究表明,即使与以前的工作相比磁体体积显著减少,优化微分方法的定位性能也明显优于现有技术。因此,得出的结论是 mm长的圆盘磁体或环形磁体是集成到用于磁性定位的商业胶囊中的优秀候选者,并且产生作为无源磁源的优点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Towards Differential Static Magnetic Localization of Commercial Capsule Endoscopes: An Evaluation Using Different Ring and Cylindrical Magnets
Abstract. Capsule endoscopy is a promising diagnostic tool for the entire gastrointestinal tract. Since a patient swallows the capsules, their size must be sufficiently small. The principal built-in components are cameras, silver-oxide batteries, light emitting diodes, and an antenna for transmitting the video. For diagnosis and treatment, the precise localization of the capsules for specific video frames is required. Recently, static magnetic localization of these capsules with an integrated permanent magnet showed promising results. However, in the state-of-the-art, relatively large magnets compared to the small capsules were used. Therefore, in this extended paper, the localization performance of a recently proposed optimized differential static magnetic localization method for different sized disc and ring magnets was evaluated. The ring magnets were designed for integration with the two batteries of commercial capsules. The magnets were evaluated in static and dynamic scenarios to evaluate the performance of the method in a patient's daily life. It was revealed that the mean position and orientation errors did not exceed 5 mm and 4∘, respectively, for all applied magnets except for the 1.5 and 3 mm long disc magnets. Moreover, the results indicated that the ferromagnetic batteries of capsule endoscopes increase the localization performance when they are centered within a diametrical ring magnet. Overall, it was revealed that the localization performance of the optimized differential method is significantly better than the state-of-the-art even when the magnet volume is significantly reduced compared to previous work. Therefore, it was concluded that 5 mm long disc magnet or a ring magnet are excellent candidates for integration into a commercial capsule for magnetic localization and yield the advantage of being passive magnetic sources.
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来源期刊
Advances in Radio Science
Advances in Radio Science ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
0.90
自引率
0.00%
发文量
3
审稿时长
45 weeks
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