Configuration of Hardware for Medical Plasma Based Surgical Device and Features

Deniz Reçber, Batuhan Kayserilioğlu, I. Kocum, Dilek Cokeliler Serdaroglu
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Abstract

This research, covers the evaluation of the performance of harware of plasma-based (gas plasma, plasma jet) surgical prototype device which will be used in microsurgery, identification of active device operating conditions with the appropriate engineering models Microsurgery is by taking advantage of the magnifying effect of the special operation microscope, very small structures that can hardly be seen with the naked eye and surgery using very thin instrument. It is necessary to emphasize, the plasma technique using on directly liver cell for the treatment is the novel study. The examples of portable commercial devices in the world have started to increase in the recent past, but they are still few. The project has three main design in general; primarily high voltage power supply, bipolar plasma probe, gas supply control unit made it. High voltage power supply made with transformator and mosfets connecting with push-pull. Bipolar plasma probe, made 2 tungsten rod which mounted on the board mechanism and used teflon wire for connection with high voltage power supply. For the gas supply control unit, used microprocessor controlled and transistor amplifier selenoid valve. Thus, it is aimed to trigger the solenoid valve and adjust the gas flow in the adjustable frequency range. In the first tests made, the formation of radiation of the high voltage circuit was observed. The integration with the tungsten probe system was completed and tried to test the relation between angle and distance and radiation. In addition, the completed parts of the gas supply control unit designed together with the solenoid valve and the microprocessor have been tested. etc.] in its style sheet. As a result, the distance parameter of radiation formation is determined by high voltage circuit tests. Radiation-angle tests were performed and later turned into a prototype with the outer design of the device.
医用等离子外科设备硬件配置及特点
本研究涵盖了将用于显微外科手术的等离子体(气体等离子体、等离子体射流)手术原型装置的硬件性能评估,以及用合适的工程模型确定有效装置的工作条件。显微外科是利用特殊手术显微镜的放大效果,利用肉眼难以看到的非常小的结构和使用非常薄的仪器进行手术。需要强调的是,直接对肝细胞进行等离子体治疗是一项新的研究。近年来,世界上便携式商用设备的例子开始增加,但它们仍然很少。本项目总体上有三个主要设计;主要有高压电源、双极等离子体探头、供气控制单元等。高压电源由变压器和mosfet与推挽连接而成。双极等离子体探头,制作2根钨棒,安装在板机构上,用铁氟龙丝与高压电源连接。供气控制单元采用微处理器控制和晶体管放大硒酸钠阀。因此,其目的是触发电磁阀,在可调频率范围内调节气体流量。在第一次试验中,观察到高压电路辐射的形成。完成了与钨探针系统的集成,并尝试测试了角度、距离和辐射的关系。此外,还对与电磁阀和微处理器一起设计的供气控制单元的完成部分进行了测试。等等]在其样式表中。因此,辐射形成的距离参数是通过高压电路试验确定的。进行了辐射角测试,后来制成了带有设备外部设计的原型。
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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