Department of Industrial and Systems Engineering, The Hong Kong Polytechnic University, Kowloon, Hong Kong.
Bio-Medical Engineering (HK) Limited, Cyperport, Hong Kong.
Ann Biomed Eng. 2017 Sep;45(9):2211-2221. doi: 10.1007/s10439-017-1865-x. Epub 2017 Jun 5.
A new approach to a surgical robotic platform for single incision laparoscopic or natural orifice transluminal endoscopic surgery is presented in this paper This platform allows insertion of up to four instruments including the robotic arms and the camera through a single cannula at the same footprint. After insertion of all instruments, a large central channel of 15 mm diameter is kept clear for the passage of additional laparoscopic instruments, such as passage or retrieval of suture needles, and/or suction irrigators which greatly facilitates the performance of complex surgical procedures. Phantom and animal trials have been performed to evaluate the insertion and retrieval sequences. These important features were made possible by internally-motorized robotic arms with 7 degrees of freedom and with no external mechanical device connections. The whole platform, together with the 3 degrees of freedom from the swivel system that support the cannula, has altogether 10 degrees of freedom to allow the operation of complex surgeries and access to all quadrants of the abdominal cavity. This new single-port robotic platform paves a new development direction for future non-invasive surgery.
本文提出了一种用于单切口腹腔镜或自然腔道内镜手术的新型手术机器人平台方法。该平台允许通过单个套管插入多达四个器械,包括机械臂和摄像头。所有器械插入后,保持一个 15 毫米直径的大中央通道畅通,以便通过其他腹腔镜器械,如通过或取出缝合针,以及/或抽吸冲洗器,这极大地促进了复杂手术的进行。已经进行了幻影和动物试验来评估插入和取出的顺序。这些重要功能是通过具有 7 个自由度且没有外部机械装置连接的内部驱动机械臂实现的。整个平台,连同支撑套管的旋转系统的 3 个自由度,共有 10 个自由度,可实现复杂手术的操作和进入腹部的所有象限。这种新型的单端口机器人平台为未来的非侵入性手术开辟了新的发展方向。