STORM Lab, Department of Mechanical Engineering, Vanderbilt University, Nashville, TN 37235-1592, USA.
Physiol Meas. 2014 Jul;35(7):1197-214. doi: 10.1088/0967-3334/35/7/1197. Epub 2014 May 22.
Active locomotion of wireless capsule endoscopes has the potential to improve the diagnostic yield of this painless technique for the diagnosis of gastrointestinal tract disease. In order to design effective locomotion mechanisms, a quantitative measure of the propelling force required to effectively move a capsule inside the gastrointestinal tract is necessary. In this study, we introduce a novel wireless platform that is able to measure the force opposing capsule motion, without perturbing the physiologic conditions with physical connections to the outside of the gastrointestinal tract. The platform takes advantage of a wireless capsule that is magnetically coupled with an external permanent magnet. A secondary contribution of this manuscript is to present a real-time method to estimate the axial magnetic force acting on a wireless capsule manipulated by an external magnetic field. In addition to the intermagnetic force, the platform provides real-time measurements of the capsule position, velocity, and acceleration. The platform was assessed with benchtop trials within a workspace that extends 15 cm from each side of the external permanent magnet, showing average error in estimating the force and the position of less than 0.1 N and 10 mm, respectively. The platform was also able to estimate the dynamic behavior of a known resistant force with an error of 5.45%. Finally, an in vivo experiment on a porcine colon model validated the feasibility of measuring the resistant force in opposition to magnetic propulsion of a wireless capsule.
无线胶囊内窥镜的主动运动有可能提高这种无痛技术对胃肠道疾病诊断的诊断效果。为了设计有效的运动机制,有必要对有效移动胃肠道内胶囊所需的推进力进行定量测量。在这项研究中,我们引入了一种新颖的无线平台,该平台能够测量与胃肠道外部的物理连接相抗衡的胶囊运动的力,而不会干扰生理条件。该平台利用与外部永磁体磁耦合的无线胶囊。本文的另一个贡献是提出了一种实时方法来估计由外部磁场操纵的无线胶囊上的轴向磁力。除了互磁力外,该平台还实时测量胶囊的位置、速度和加速度。该平台在工作空间内进行了台式试验,该工作空间从外部永磁体的每一侧延伸 15 厘米,估计力和位置的平均误差分别小于 0.1 N 和 10 mm。该平台还能够以 5.45%的误差估计已知阻力的动态行为。最后,在猪结肠模型上进行的体内实验验证了测量无线胶囊磁推进阻力的可行性。