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Design, Implementation, and Fundamental Limits of Image and RF Based Wireless Capsule Endoscopy Hybrid Localization

机译:基于图像和射频的无线胶囊内窥镜混合定位的设计,实现和基本限制

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Precise localization of Wireless Capsule Endoscopy (WCE) inside the curly, long, and compact small intestine remains a challenging problem facing researchers for more than a decade. Conventional Radio Frequency (RF) localization techniques, commonly used in outdoor and indoor area, have demonstrated a few centimeters accuracy when applying to the inside of human body. In this paper, using 3D Posterior Cramer-Rao Lower Bound (PCRLB) as a framework for performance evaluation, we demonstrated that millimetric accuracy can be achieved using hybrid RF and image processing localization technique. This level of accuracy enables precise simultaneous localization and mapping of the WCE movement path inside the small intestine. Using the PCRLB framework, we provided in-depth analysis on hybrid localization performance regarding the effects of WCE movement estimation, the effects of system bandwidth as well as the effects of on-body sensor numbers and placements.
机译:无线胶囊内窥镜(WCE)在卷曲,长而致密的小肠内的精确定位仍然是十多年来研究人员面临的难题。在室外和室内区域常用的常规射频(RF)定位技术在应用于人体内部时已显示出几厘米的精度。在本文中,使用3D后部Cramer-Rao下界(PCRLB)作为性能评估的框架,我们证明了使用混合RF和图像处理定位技术可以实现毫米精度。如此高的精确度可实现小肠内WCE运动路径的精确同时定位和映射。使用PCRLB框架,我们就WCE运动估计的影响,系统带宽的影响以及人体传感器数量和位置的影响,对混合定位性能进行了深入分析。

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