Ultrasound-guided prostate percutaneous intervention robot system and calibration by informative particle swarm optimization

Author:

Yan Jiawen,Pan Bo,Fu Yili

Abstract

AbstractApplying a robot system in ultrasound-guided percutaneous intervention is an effective approach for prostate cancer diagnosis and treatment. The limited space for robot manipulation restricts structure volume and motion. In this paper, an 8-degree-of-freedom robot system is proposed for ultrasound probe manipulation, needle positioning, and needle insertion. A novel parallel structure is employed in the robot system for space saving, structural rigidity, and collision avoidance. The particle swarm optimization method based on informative value is proposed for kinematic parameter identification to calibrate the parallel structure accurately. The method identifies parameters in the modified kinematic model stepwise according to parameter discernibility. Verification experiments prove that the robot system can realize motions needed in targeting. By applying the calibration method, a reasonable, reliable forward kinematic model is built, and the average errors can be limited to 0.963 and 1.846 mm for insertion point and target point, respectively.

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering

Cited by 5 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. A Highly-Accurate Robot Calibration Method with Line Constraint;2023 IEEE International Conference on Networking, Sensing and Control (ICNSC);2023-10-25

2. A Novel Industrial Robot Calibration Method Based on Multi-Planar Constraints;2023 IEEE International Conference on Systems, Man, and Cybernetics (SMC);2023-10-01

3. Ultrasound-guide prostate biopsy robot and calibration based on dynamic kinematic error model with POE formula;Robotics and Autonomous Systems;2023-08

4. Kernel extreme learning machine‐based general solution to forward kinematics of parallel robots;CAAI Transactions on Intelligence Technology;2023-01-16

5. Image-guided prostate biopsy robots: A review;Mathematical Biosciences and Engineering;2023

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