3D Printed Mini Plasma Jet: Application To Hemostatic Treatment For Endoscope

Y. Hayashi, H. Kawano, H. Miyahara, A. Okino, Yudai Nomura, T. Takamatsu, Takeshi Azuma, Syosaku Ota
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Abstract

In the medical field, demand for endoscopes has been increasing not only for examination but also for minimally invasive treatment. For endoscopic hemostasis, clips and plasma devices called Argon Plasma Coagulation (APC) are widely used. Although APC has a short hemostasis time, there is a problem with a tissue that is thermally damaged by high plasma temperature. Meanwhile, promotion of blood coagulation by atmospheric low temperature plasma has been reported. Blood points irradiated with the plasma can clot without thermal damage and stop bleeding. Therefore, applying atmospheric low temperature plasma to endoscopic hemostasis can be expected as a minimally invasive hemostatic method. For that purpose, a mini plasma source that can be inserted into a forceps port of endoscope is required. However, conventional plasma source had been manufactured by machining, there was limitation for miniaturization.
3D打印迷你等离子射流:在内窥镜止血治疗中的应用
在医疗领域,对内窥镜的需求越来越大,不仅用于检查,而且用于微创治疗。对于内窥镜止血,广泛使用夹子和称为氩等离子凝固(APC)的等离子装置。虽然APC止血时间短,但存在一个问题,即组织被高血浆温度热损伤。同时,大气低温血浆促进凝血的研究也有报道。用血浆照射的血点可以凝结而不产生热损伤并止血。因此,将常压低温等离子体应用于内镜下止血,有望成为一种微创止血方法。为此,需要一个可以插入内窥镜钳口的小型等离子体源。然而,传统的等离子体源是通过机械加工制造的,在小型化方面存在局限性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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