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Robotic needle steering in deformable tissues with extreme learning machines

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arxiv 2104.06510 v1 pith:T6XIK2XH submitted 2021-04-02 cs.RO cs.AIcs.NE

classification cs.ROcs.AIcs.NE
keywords needleroboticcontrolsteeringcommandsextremefasterinverse
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Control strategies for robotic needle steering in soft tissues must account for complex interactions between the needle and the tissue to achieve accurate needle tip positioning. Recent findings show faster robotic command rate can improve the control stability in realistic scenarios. This study proposes the use of Extreme Learning Machines to provide fast commands for robotic needle steering. A synthetic dataset based on the inverse finite element simulation control framework is used to train the model. Results show the model is capable to infer commands 66% faster than the inverse simulation and reaches acceptable precision even on previously unseen trajectories.

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