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Hand-held robotic device for laparoscopic surgery and training

机译:用于腹腔镜手术和训练的手持式机器人设备

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Laparoscopic surgery (LS) has revolutionized traditional surgical techniques introducing minimally invasive procedures for diagnosis and local therapies. LSs have undeniable advantages, such as small patient incisions, reduced postoperative pain and faster recovery. On the other hand, restricted vision of the anatomical target, difficult handling of the surgical instruments, restricted mobility inside the human body, need of dexterity to hand-eye coordination and inadequate and non-ergonomic surgical instruments may restrict LS only to more specialized surgeons. To overcome the referred limitations, this work presents a new robotic surgical handheld system - the EndoRobot. The EndoRobot was designed to be used in clinical practice or even as a surgical simulator. It integrates an electromechanical system with 3 degrees of freedom. Each degree can be manipulated independently and combined with different levels of sensitivity allowing fast and slow movements. As other features, the EndoRobot has battery power or external power supply, enables the use of bipolar radiofrequency to prevent bleeding while cutting and allows plug-and-play of the laparoscopic forceps for rapid exchange. As a surgical simulator, the system was also instrumented to measure and transmit, in real time, its position and orientation for a training software able to monitor and assist the trainee's surgical movements.
机译:腹腔镜手术(LS)彻底改变了传统手术技术,引入了微创程序进行诊断和局部治疗。 LS具有不可否认的优势,例如患者切口小,术后疼痛减轻和恢复更快。另一方面,解剖目标的视力受限,手术器械的操作困难,人体内部活动受限,对手眼协调的灵活性要求以及不符合人体工程学的非手术器械可能只会将LS限制于更专业的外科医生。为了克服上述限制,这项工作提出了一种新的机器人外科手术手持系统-EndoRobot。 EndoRobot设计用于临床实践,甚至可以用作外科手术模拟器。它集成了具有3个自由度的机电系统。每个度数可以独立操作,并与不同级别的灵敏度结合使用,从而可以快速和缓慢地运动。另外,EndoRobot还具有电池电源或外部电源,可以使用双极射频来防止切割时出血,并允许即插即用的腹腔镜钳快速更换。作为外科手术模拟器,该系统还可以通过仪器实时测量和传输其位置和方向,从而获得能够监视和协助受训者手术运动的培训软件。

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