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Active Locomotive Intestinal Capsule Endoscope (ALICE) System: A Prospective Feasibility Study

机译:主动型机车胶囊内窥镜(ALICE)系统:前瞻性可行性研究

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Owing to the limitations of the conventional flexible endoscopes used in gastrointestinal diagnostic procedures, which cause discomfort and pain in patients, a wireless capsule endoscope has been developed and commercialized. Despite the many advantages of the wireless capsule endoscope, its restricted mobility has limited its use to diagnosis of the esophagus and small intestine only. Therefore, to extend the diagnostic range of the wireless capsule endoscope into the stomach and colon, additional mobility, such as 3-D locomotion, and steering of the capsule endoscope, is necessary. Previously, several researchers reported on the development of mobility mechanisms for the capsule endoscope, but they were unable to achieve adequate degrees of freedom or sufficiently diverse capsule motions. Therefore, we proposed a novel electromagnetic actuation system that can realize 3-D locomotion and steering within the digestive organs. The proposed active locomotion intestinal capsule endoscope (ALICE) consists of five pairs of solenoid components and a capsule endoscope with a permanent magnet. With the magnetic field generated by the solenoid components, the capsule endoscope can perform various movements necessary to the diagnosis of the gastrointestinal tract, such as propulsion in any direction, steering, and helical motion. From the results of a basic locomotion test, ALICE showed a propulsion angle error of less than 4° and a propulsion force of 70 mN. To further validate the feasibility of ALICE as a diagnostic tool, we executed testing using small intestine extracted from a cow. Through the basic mobility test and the test, we verified ALICE's usefulness as a medical capsule endoscopic system.
机译:由于在胃肠道诊断程序中使用的传统柔性内窥镜的局限性会导致患者不适和疼痛,因此无线胶囊型内窥镜已被开发并商业化。尽管无线胶囊内窥镜具有许多优点,但其受限的移动性限制了其仅用于食道和小肠的诊断。因此,为了将无线胶囊型内窥镜的诊断范围扩展到胃和结肠,需要附加的可移动性,例如3-D运动和胶囊内窥镜的操纵。以前,一些研究人员报道了胶囊内窥镜移动机制的发展,但是他们无法实现足够的自由度或足够多样的胶囊运动。因此,我们提出了一种新颖的电磁致动系统,该系统可实现消化器官内的3-D运动和转向。提出的主动运动型肠内窥镜(ALICE)由五对螺线管组件和一个带有永磁体的内窥镜组成。借助螺线管部件产生的磁场,胶囊型内窥镜可以执行诊断胃肠道所需的各种运动,例如沿任何方向的推进,转向和螺旋运动。从基本运动测试的结果来看,驴友的推进角误差小于4°,推进力为70 mN。为了进一步验证ALICE作为诊断工具的可行性,我们使用从母牛身上提取的小肠进行了测试。通过基本的流动性测试和测试,我们验证了ALICE作为医疗胶囊内窥镜系统的有用性。

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