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基于无电池纹身机制的功能性有源胶囊内镜。

Battery-Free Tattooing Mechanism-Based Functional Active Capsule Endoscopy.

作者信息

Hoang Manh-Cuong, Park Jong-Oh, Kim Jayoung

机构信息

Korea Institute of Medical Microrobotics, Gwangju 61186, Republic of Korea.

出版信息

Micromachines (Basel). 2022 Nov 29;13(12):2111. doi: 10.3390/mi13122111.

Abstract

This paper presents a novel tattooing capsule endoscope (TCE) for delivering a certain amount of ink to the submucosal layer of digestive tract organs. A dual-function permanent magnet is used for locomotion and injection activation. The developed capsule endoscope can move actively in 5 DOF due to the interaction between the permanent magnet and a controllable external magnetic field produced by an electromagnet actuation system. In addition, the permanent magnet is involved in a specially designed mechanism to activate a process that creates a squeezing motion to eject the liquid from the storage room to the target. The dimension of the prototype is 12.5 mm in diameter and 34.6 mm in length. The proposed TCE is tested ex vivo using a fresh porcine small-intestine segment. We were able to direct the TCE to the target and deliver the tattoo agent into the tissue. The proposed mechanism can be used for drug delivery or lesion tattooing, as well as to accelerate the realization of the functional capsule endoscope in practice.

摘要

本文介绍了一种新型纹身胶囊内窥镜(TCE),用于向消化道器官的粘膜下层输送一定量的墨水。一种双功能永磁体用于运动和注射激活。由于永磁体与电磁驱动系统产生的可控外部磁场之间的相互作用,所开发的胶囊内窥镜能够在5个自由度上主动移动。此外,永磁体参与了一个专门设计的机构,以激活一个产生挤压运动的过程,将液体从储存室喷射到目标部位。原型的尺寸为直径12.5毫米,长度34.6毫米。所提出的TCE在体外使用新鲜猪小肠段进行了测试。我们能够将TCE引导至目标部位,并将纹身剂输送到组织中。所提出的机制可用于药物输送或病变纹身,也有助于在实践中加速功能性胶囊内窥镜的实现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f46/9786073/c49e5fd27027/micromachines-13-02111-g0A1.jpg

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