Title of article :
Needle insertion modeling and simulation
Author/Authors :
S.P.، DiMaio, نويسنده , , S.E.، Salcudean, نويسنده ,
Issue Information :
دوماهنامه با شماره پیاپی سال 2003
Pages :
12
From page :
864
To page :
875
Abstract :
A methodology for estimating the force distribution that occurs along a needle shaft during insertion is described. An experimental system for measuring planar tissue phantom deformation during needle insertions has been developed and is presented. A twodimensional linear elastostatic material model, discretised using the finite element method, is used to derive contact force information that is not directly measurable. This approach provides a method for quantifying the needle forces and soft tissue deformations that occur during general needle trajectories in multiple dimensions. The needle force distribution is used for graphical and haptic real-time simulations of needle insertion. Since the force displacement relationship is required only along the needle, a condensation technique is shown to achieve very fast interactive simulations. Stiffness matrix changes corresponding to changes in boundary conditions and material coordinate frames are performed using lowrank matrix updates.
Keywords :
waveguide transition , millimeter wave , rectangular waveguide (RWG) , low-temperature co-fired ceramic (LTCC) , Laminated waveguide
Journal title :
I E E E Transactions on Robotics and Automation
Serial Year :
2003
Journal title :
I E E E Transactions on Robotics and Automation
Record number :
86821
Link To Document :
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