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Intestinal Tattooing Mechanism Integrated with Active Wireless Capsule Endoscope

机译:主动无线胶囊内窥镜集成的肠道纹身机制

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摘要

Recently, a wireless capsule endoscope with active locomotion has become an effective endoscopic method for diagnosis and treatment of diseases of gastrointestinal (GI) tract. Various modules such as biopsy and drug delivery were developed for the wireless capsule endoscope (WCE) to extend its application. In this paper, we present a marking module socalled tattooing module for WCE to localize the lesions and tumors in digestive organs before the laparoscopic surgery. The WCE with tattooing module is manipulated by an Electromagnetic Actuation (EMA) system, where a moderate magnetic field intensity is generated to drive the WCE reaching to a target of the digestive organs. The tattooing module is capable of stowing the needle inside the WCE's body to avoid pathway organs damage during locomotion and extruding to puncture the target for tattooing. The magnetic field is controlled to activate the micro-reed switch and triggers a chemical reaction that generates gas pressure. The produced gas increases the pressure in the propellant room and pushes the piston to eject the ink into the target. The prototype of the tattooing capsule endoscope is fabricated with dimension of 13 mm in diameter and 33 mm in length. The working principle and the mechanism of the tattooing module are suggested and the feasibility test with the prototype is demonstrated through in-vitro experiments.
机译:近来,具有主动运动的无线胶囊内窥镜已经成为诊断和治疗胃肠道(GI)疾病的有效内窥镜方法。为无线胶囊内窥镜(WCE)开发了各种模块,例如活检和药物输送,以扩展其应用范围。在本文中,我们提出了一种标记模块,即WCE的纹身模块,以在腹腔镜手术之前定位消化器官中的病变和肿瘤。带纹身的WCE模块由电磁致动(EMA)系统控制,在该系统中产生适度的磁场强度,以驱动WCE到达消化器官的目标。纹身模块能够将针头存放在WCE的体内,避免运动过程中通路器官的损伤,并通过挤压刺破目标进行纹身。控制磁场以激活微簧片开关并触发产生气压的化学反应。产生的气体增加了推进剂室内的压力,并推动活塞将墨水喷射到目标中。纹身胶囊内窥镜的原型的直径为13毫米,长度为33毫米。提出了纹身模块的工作原理和机理,并通过体外实验证明了该样机的可行性。

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