遥操作
计算机视觉
人工智能
计算机科学
任务(项目管理)
摄像机自动校准
可视化
运动学
侵入性外科
形势意识
立体摄像机
机械臂
职位(财务)
智能摄像头
控制(管理)
摄像机切除
摄像机
遥控机器人学
机器人
机械手
模拟
人机交互
控制器(灌溉)
机械人手术
方向(向量空间)
可用性
作者
Elisa Iovene,Hanna Kossowsky,Yarden Sharon,Uri Netz,Alex Geftler,Giancarlo Ferrigno,Elena De Momi,Ilana Nisky
标识
DOI:10.1109/iros60139.2025.11247181
摘要
In robot-assisted minimally invasive surgery, optimal camera positioning is crucial for effective visualization and manipulation of tissues, which impacts the success of procedures. Traditional camera control can increase cognitive workload, lead to suboptimal camera viewpoints, and complicate surgical tasks. We propose an autonomous camera system that uses situational awareness and real-time prediction of user intent from kinematic data, and adjusts the camera position dynamically during a simulated suturing task. Such a system reduces the need to manually adjust the camera, allowing users to stay focused on the procedure. We demonstrated the framework in a user study with eight non-expert participants. They used the da Vinci Research Kit to control a simulated camera and instruments in a suturing task. We compared the performances in the suturing task with the autonomous and the teleoperated camera control. The autonomous system reduced execution time by 43% , shortened path length by 30% , and decreased completion cost by 35%. These results serve as a proof of concept for a situationally aware camera system and suggest that autonomous camera control can improve efficiency and simplify surgical workflow.
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