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Modeling of needle steering via duty-cycled spinning
Davneet S Minhas1, Johnathan A Engh, Michele M Fenske
1Biomedical Engineering Department, Carnegie Mellon University, Pittsburgh, PA 15213, USA. dminhas@cmu.edu
Abstract:
As flexible bevel tip needles are inserted into tissue, a deflection force causes the needle to bend with a curvature dependent on relative stiffness and bevel angle. By constantly spinning the needle during insertion, the bevel angle is essentially negated and a straight trajectory can be achieved. Incorporating duty-cycled spinning during needle insertion provides proportional control of the curvature of the needle trajectory through tissue. This paper proposes a kinematic model for needle steering via duty-cycled spinning. Validation using experimental results is also presented.
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