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A Novel Bipolar Cautery Tool for Minimally-Invasive Neuroendoscopic Procedures

机译:用于微创神经内镜手术的新型双极谨慎工具

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Electrosurgery is used in the operating room on a daily basis as a means to cut tissue and maintain hemostasis. The principle of this technology lies in the transfer of electricity from an electrosurgical unit to the operating site on a patient’s body and modifying the waveform of that electricity to achieve the desired surgical effect. Bipolar cautery uses two electrodes, an active and a return, both at the surgical site to perform electrosurgery. Bipolar cautery can be very useful in helping surgeons to operate; however, current designs are not well suited to a 2.1 mm working channel in endoscopic procedures due to their rigid structure, limited range of motion, and bulky design. This paper describes a novel approach to designing a minimally- invasive bipolar cautery tool suitable for flexible neuroendoscopy. The system features 1.9 mm diameter bipolar tips which resemble grasping forceps, making it easier for surgeons to hold tissue while performing electrosurgery. The electrode wires also function as the actuating cables used to open and close the tips, which require 2.10 mm to open the tips to 30.9 °. The results show that the tool can safely cauterize a porcine brain specimen at various settings on the electrosurgical unit, and increasing the setting increases the area of tissue affected by the electricity. Repeatability was demonstrated and exhaustion was reached after the tool was opened and closed 73 times. Future work will involve improving the current design to increase the number of cycles the tool can survive before losing function.
机译:每天在手术室中使用电外科手术是一种切除组织和维持止血的方法。该技术的原理在于将电从电外科单元传输到患者身体上的手术部位,并修改该电波形以实现所需的手术效果。双极电烙术在手术部位使用两个电极,即活动电极和回路电极,以进行电外科手术。双极电烙术在帮助外科医生手术方面可能非常有用。然而,由于其刚性结构,有限的运动范围和笨重的设计,当前的设计不适用于内窥镜手术中的2.1 mm工作通道。本文介绍了一种设计适用于柔性神经内镜的微创双极电灼工具的新颖方法。该系统具有直径为1.9 mm的双极尖端,类似于抓钳,使外科医生在进行电外科手术时更容易握住组织。电极线还用作用于打开和关闭吸头的致动电缆,需要2.10毫米才能将吸头打开至30.9°。结果表明,该工具可以在电外科单元上的各种设置下安全地烧灼猪脑标本,增大设置会增加受电影响的组织面积。在打开和关闭工具73次之后,结果表明了重复性并达到了精疲力尽。未来的工作将涉及改进当前的设计,以增加工具在失去功能之前可以生存的周期数。

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