Laser micro-surgery can benefit from tracking and image-based methods that improve precision and safety. Advanced software together with stereo camera feedback allow for motion estimation reduce tracking errors. A highly precise parallel kinematics motion system (Model H-824 from Physik Instrumente) with 6 degrees of freedom was used to evaluate the performance. More information is available in this paper Stereo Vision-Based Tracking of Soft Tissue Motion with Application to Online Ablation Control in Laser Microsurgery by Institute of Mechatronic Systems at the University of Hannover, Germany.


Hexapod 6-axis parallel kinematics positioners are more compact and flexible compared to traditional stacks of single axis stages. Their ability to change the pivot point with a single software command is critical to applications from aligning optics or rotating a scalpel around a certain center of rotation.
Hexapods have been used in bio-medical imaging applications, such as CT. The video above shows a multi-axis motion system consisting of a custom PI Hexapod and PRS200 Rotary stage in a setup with 3D-printed phantoms imaged repeatedly with a cone-beam computer tomography scanner. More information on this research from Johns Hopkins University is available here: https://aiai.jhu.edu/research/#phantom and here: https://jhu.pure.elsevier.com/en/publications/assessment-of-boundary-discrimination-performance-in-a-printed-ph
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