Rossi A, Trevisani A, Zanotto V
Department of Innovation in Mechanics and Management, Università di Padova, Italy.
Int J Med Robot. 2005 Jan;1(2):64-75. doi: 10.1002/rcs.17.
Medical robotics and computer assisted surgery are feasible and promising applications of robotic technology, whose main goals are surgical augmentation, information enhancement and improved surgical action. Neurosurgery probably presents the most major challenges, and can considerably benefit from the introduction of computers and robots to guide surgical procedures. This paper presents an innovative master-slave haptic robotic system for minimally invasive neurosurgery, which can help surgeons overcome human shortcomings and perform more accurate, repeatable, and reliable stereotactic neurosurgery. The system, named LANS, consists of a slave mechatronic actuator and a haptic master. The slave is designed to move linearly a laser pointer, a biopsy needle or a low-energy X-ray emitter along a pre-planned axis. The tool insertion into the brain is guided by the surgeon through the haptic master which also provides force feedback to the operator. Not only can the haptic master reproduce the contact force between the surgical tool and the treated tissue, but it can also produce virtual forces aimed at assisting surgeons during the operations. Experiments have been conducted to prove the soundness and accuracy of the overall system mechanical design and to assess the effectiveness of the control schemes synthesized for the master and the slave.
医疗机器人技术和计算机辅助手术是机器人技术可行且有前景的应用领域,其主要目标是手术增强、信息增强以及改善手术操作。神经外科手术可能面临最重大的挑战,而引入计算机和机器人来辅助手术过程能带来极大的益处。本文介绍了一种用于微创神经外科手术的创新型主从触觉机器人系统,该系统可帮助外科医生克服人类自身的不足,进行更精确、可重复且可靠的立体定向神经外科手术。这个名为LANS的系统由一个从机电致动器和一个触觉主设备组成。从设备旨在沿着预先规划的轴线性移动激光指示器、活检针或低能量X射线发射器。外科医生通过触觉主设备引导工具插入大脑,触觉主设备同时也向操作员提供力反馈。触觉主设备不仅能再现手术工具与被治疗组织之间的接触力,还能产生虚拟力以在手术过程中协助外科医生。已经进行了实验,以证明整个系统机械设计的合理性和准确性,并评估为主设备和从设备合成的控制方案的有效性。