Bae Suhong, Kwon Junhyoung, Kim Jongyul, Jang Gunhee
Department of Mechanical Convergence Engineering, Hanyang University, Seoul 04763, Republic of Korea.
Department of Mechanical Engineering, Hanyang University, Seoul 04763, Republic of Korea.
Micromachines (Basel). 2024 Aug 14;15(8):1032. doi: 10.3390/mi15081032.
We propose a method to control the motion of a capsule endoscope (CE) in the stomach utilizing either a single external permanent magnet (EPM) or dual EPMs to extend the examination of the upper gastrointestinal tract. When utilizing the conventional magnetic navigational system (MNS) with a single EPM to generate tilting and rotational motions of the CE, undesired translational motion of the CE may prevent accurate examination. We analyzed the motion of the CE by calculating the magnetic torque and magnetic force applied to the CE using the point-dipole approximation model. Using the proposed model, we propose a method to determine the optimal position and orientation of the EPM to generate tilting and rotational motions without undesired translational motion of the CE. Furthermore, we optimized the weight of dual EPMs to develop a lightweight MNS. We prototyped the proposed MNS and experimentally verified that the developed MNS can generate tilting and rotational motions of the CE without any translational motion.
我们提出了一种利用单个外部永磁体(EPM)或双EPM来控制胃中胶囊内窥镜(CE)运动的方法,以扩展对上消化道的检查。当使用传统的带有单个EPM的磁导航系统(MNS)来产生CE的倾斜和旋转运动时,CE不期望的平移运动可能会妨碍准确检查。我们通过使用点偶极近似模型计算施加到CE上的磁转矩和磁力来分析CE的运动。利用所提出的模型,我们提出了一种确定EPM的最佳位置和方向的方法,以产生CE的倾斜和旋转运动而不会出现CE不期望的平移运动。此外,我们优化了双EPM的重量以开发一种轻型MNS。我们制作了所提出的MNS的原型,并通过实验验证了所开发的MNS可以产生CE的倾斜和旋转运动而不会有任何平移运动。