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Development of a Haptic Interface for Natural Orifice Translumenal Endoscopic Surgery Simulation

机译:天然孔腔内镜手术模拟的触觉界面的开发。

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摘要

Natural orifice translumenal endoscopic surgery (NOTES) is a minimally invasive procedure, which utilizes the body’s natural orifices to gain access to the peritoneal cavity. The NOTES procedure is designed to minimize external scarring and patient trauma, however flexible endoscopy based pure NOTES procedures require critical scope handling skills. The delicate nature of the NOTES procedure requires extensive training, thus to improve access to training while reducing risk to patients we have designed and developed the VTEST©, a virtual reality NOTES simulator. As part of the simulator, a novel decoupled 2-DOF haptic device was developed to provide realistic force feedback to the user in training. A series of experiments were performed to determine the behavioral characteristics of the device. The device was found capable of rendering up to 5.62N and 0.190Nm of continuous force and torque in the translational and rotational DOF, respectively. The device possesses 18.1Hz and 5.7Hz of force bandwidth in the translational and rotational DOF, respectively. A feedforward friction compensator was also successfully implemented to minimize the negative impact of friction during the interaction with the device. In this work we have presented the detailed development and evaluation of the haptic device for the VTEST©.
机译:天然孔腔内镜手术(NOTES)是一种微创手术,它利用人体的天然孔进入腹膜腔。 NOTES程序旨在最大程度地减少外部疤痕和患者的创伤,但是,基于灵活的内窥镜检查的纯NOTES程序需要关键的示波器处理技能。 NOTES程序的微妙性质需要进行广泛的培训,因此,在设计和开发虚拟现实NOTES模拟器VTEST ©的同时,为了提高培训的接受程度,同时降低患者的风险。作为模拟器的一部分,开发了一种新颖的解耦式2自由度触觉设备,以向用户提供逼真的训练力反馈。进行了一系列实验以确定设备的行为特征。发现该装置能够在平移和旋转自由度中分别产生高达5.62N和0.190Nm的连续力和扭矩。该器件在平移和旋转自由度中分别具有18.1Hz和5.7Hz的力带宽。还成功实现了前馈摩擦补偿器,以最小化与设备交互过程中摩擦的负面影响。在这项工作中,我们介绍了用于VTEST ©的触觉设备的详细开发和评估。

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