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Implicit Gaze-Assisted Adaptive Motion Scaling for Highly Articulated Instrument Manipulation

机译:用于高度铰接仪器操纵的隐式凝视辅助自适应运动缩放

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摘要

Traditional robotic surgical systems rely entirely on robotic arms to triangulate articulated instruments inside the human anatomy. This configuration can be ill-suited for working in tight spaces or during single access approaches, where little to no triangulation between the instrument shafts is possible. The control of these instruments is further obstructed by ergonomic issues: The presence of motion scaling imposes the use of clutching mechanics to avoid the workspace limitations of master devices, and forces the user to choose between slow, precise movements, or fast, less accurate ones. This paper presents a bi-manual system using novel self-triangulating 6-degrees-of-freedom (DoF) tools through a flexible elbow, which are mounted on robotic arms. The control scheme for the resulting 9-DoF system is detailed, with particular emphasis placed on retaining maximum dexterity close to joint limits. Furthermore, this paper introduces the concept of gaze-assisted adaptive motion scaling. By combining eye tracking with hand motion and instrument information, the system is capable of inferring the user's destination and modifying the motion scaling accordingly. This safe, novel approach allows the user to quickly reach distant locations while retaining full precision for delicate manoeuvres. The performance and usability of this adaptive motion scaling is evaluated in a user study, showing a clear improvement in task completion speed and in the reduction of the need for clutching.
机译:传统的机器人外科手术系统完全依靠机器人手臂对人体解剖结构内的关节器械进行三角测量。这种配置可能不适合在狭窄空间中或在单进出通道中使用,在这种情况下,仪器轴之间几乎没有三角剖分。人体工程学问题进一步阻碍了对这些仪器的控制:运动缩放的存在迫使使用离合机制来避免主设备的工作空间限制,并迫使用户在缓慢,精确的运动或快速,不太精确的运动之间进行选择。 。本文介绍了一种双向系统,该系统使用新颖的自三角6自由度(DoF)工具通过柔性肘部安装在机器人手臂上。详细介绍了最终9自由度系统的控制方案,尤其着重于保持接近关节极限的最大灵活性。此外,本文介绍了凝视辅助自适应运动缩放的概念。通过将眼动追踪与手部动作和器械信息相结合,该系统能够推断出用户的目的地并相应地修改动作比例。这种安全,新颖的方法使用户可以快速到达遥远的位置,同时保持精确的操作精度。在用户研究中评估了这种自适应运动缩放的性能和可用性,显示出任务完成速度的明显提高以及对离合需求的减少。

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