Zhou Mingda, Bao Guanqun, Pahlavan Kaveh
Annu Int Conf IEEE Eng Med Biol Soc. 2014;2014:5591-4. doi: 10.1109/EMBC.2014.6944894.
Wireless Capsule Endoscope (WCE) provides a noninvasive way to inspect the entire Gastrointestinal (GI) tract, including large intestine, where intestinal diseases most likely occur. As a critical component of capsule endoscopic examination, physicians need to know the precise position of the endoscopic capsule in order to identify the position of detected intestinal diseases. Knowing how the capsule moves inside the large intestine would greatly complement the existing wireless localization systems by providing the motion information. Since the most recently released WCE can take up to 6 frames per second, it's possible to estimate the movement of the capsule by processing the successive image sequence. In this paper, a computer vision based approach without utilizing any external device is proposed to estimate the motion of WCE inside the large intestine. The proposed approach estimate the displacement and rotation of the capsule by calculating entropy and mutual information between frames using Fibonacci method. The obtained results of this approach show its stability and better performance over other existing approaches of motion measurements. Meanwhile, findings of this paper lay a foundation for motion pattern of WCEs inside the large intestine, which will benefit other medical applications.
无线胶囊内窥镜(WCE)提供了一种非侵入性的方式来检查整个胃肠道,包括最容易发生肠道疾病的大肠。作为胶囊内窥镜检查的关键组成部分,医生需要知道内窥镜胶囊的精确位置,以便确定检测到的肠道疾病的位置。了解胶囊在大肠内的移动方式,通过提供运动信息,将极大地补充现有的无线定位系统。由于最新发布的WCE每秒最多可拍摄6帧图像,因此通过处理连续的图像序列来估计胶囊的运动是可行的。本文提出了一种基于计算机视觉的方法,无需使用任何外部设备来估计WCE在大肠内的运动。所提出的方法通过使用斐波那契方法计算帧之间的熵和互信息来估计胶囊的位移和旋转。该方法获得的结果表明,与其他现有的运动测量方法相比,它具有稳定性和更好的性能。同时,本文的研究结果为WCE在大肠内的运动模式奠定了基础,这将有利于其他医学应用。