Generalized Framework for Control of Redundant Manipulators in Robot-Assisted Minimally Invasive Surgery - 23/05/18
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Abstract |
Background |
During a Robot-Assisted Minimally Invasive Surgery (RA-MIS), a robot inserts a surgical tool into the patient's body through a surgical device placed at the incision position, known as the trocar. A kinematic constraint, known as Remote Center of Motion (RCM) constraint, is then generated since the tool axis must always pass through the trocar position while the tool-tip executes the surgical task. When a serial manipulator is used, the RCM constraint must be guaranteed by the control system. In this paper, we provide a generalized framework for the dynamic control of redundant manipulators used for RA-MIS. Moreover, we consider the event of desired or unexpected collisions between the robot's body and its environment, e.g. medical staff or operating room equipments.
Methods |
In order to guarantee the accomplishment of the surgical task in the event of collisions, we propose a joint compliance strategy, by exploiting the Jacobian null-space. The proposed control framework deals simultaneously with the surgical tool-tip trajectory, the RCM constraint and collisions in the robot's body.
Results |
Simulations were conducted to validate the effectiveness of the proposed formulation, using the dynamic model of a Kuka LBR 7 iiwa R800 robot arm. Results showed that the distance between the tool axis and the trocar position never increases more than 0.5 mm, even in case of collisions.
Conclusions |
The results showed the capacity of the proposed framework to simultaneously comply the three tasks: the tool-tip trajectory, the RCM constraint and joint compliance in case of collisions in the robot's body, always respecting the priority order between the tasks.
Il testo completo di questo articolo è disponibile in PDF.Graphical abstract |
Highlights |
• | A generalized Framework for RA-MIS using serial redundant robots is proposed. |
• | A strict priority torque-controller allows to simultaneously execute the tasks. |
• | Performance of the surgical task is preserved during contact with the robot's body. |
Keywords : Robot-Assisted Minimally Invasive Surgery, RCM constraint, Redundant robot, Torque-control
Mappa
Vol 39 - N° 3
P. 160-166 - giugno 2018 Ritorno al numeroBenvenuto su EM|consulte, il riferimento dei professionisti della salute.
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