Aim To evaluate the effect of root canal taper on irrigant flow inside a prepared root canal during final irrigation with a syringe and two types of needles, using a Computational Fluid Dynamics (CFD) model. Methodology A validated CFD model was used to simulate irrigant flow from either a side-vented or a flat 30G needle positioned inside size 30, .02 taper, 30, .04, 30, .06, ProTaper F3 or size 60, .02 taper root canals, at 3 mm short of working length (WL). Velocity, pressure and shear stress in the root canal were evaluated. Results The side-vented needle could not achieve irrigant replacement to the WL in any of the cases. Significant irrigant replacement was evident further than 2 mm apically to the tip of the flat needle in the si...
Aim (i) To evaluate the effect of needle type and insertion depth, root canal size and irrigant flow...
Aim: To compare using computational fluid dynamics (CFD) the flow pattern, irrigant velocity, apical...
Aim(i) To evaluate the effect of needle type and insertion depth, root canal size and irrigant flow ...
Aim To evaluate the effect of root canal taper on irrigant flow inside a prepared root canal during...
Aim To evaluate the effect of apical preparation size on irrigant flow inside a root canal during f...
Introduction: The aim of this study was to evaluate the effect of needle tip design on the irrigant ...
Introduction The aim of this study was to evaluate the effect of needle tip design on the irrigant f...
Introduction: The aim of this study was to evaluate the effect of needle-insertion depth on the irri...
Introduction The aim of this study was to evaluate the effect of needle-insertion depth on the irrig...
Introduction The aim of this study was to evaluate the effect of needle-insertion depth on the irrig...
Fluid dynamics generated by irrigation needles have not been deeply analyzed in root canal irregular...
Supervisor: Prof. M. BussmannAbstract Aim: Despite more than a century of technological improvemen...
Aim To compare the results of a Computational Fluid Dynamics (CFD) simulation of the irrigant flow ...
Aim To compare the results of a Computational Fluid Dynamics (CFD) simulation of the irrigant flow ...
Aim To analyze the influence of the needle type, insertion depth, and irrigant flow rate on irrigant...
Aim (i) To evaluate the effect of needle type and insertion depth, root canal size and irrigant flow...
Aim: To compare using computational fluid dynamics (CFD) the flow pattern, irrigant velocity, apical...
Aim(i) To evaluate the effect of needle type and insertion depth, root canal size and irrigant flow ...
Aim To evaluate the effect of root canal taper on irrigant flow inside a prepared root canal during...
Aim To evaluate the effect of apical preparation size on irrigant flow inside a root canal during f...
Introduction: The aim of this study was to evaluate the effect of needle tip design on the irrigant ...
Introduction The aim of this study was to evaluate the effect of needle tip design on the irrigant f...
Introduction: The aim of this study was to evaluate the effect of needle-insertion depth on the irri...
Introduction The aim of this study was to evaluate the effect of needle-insertion depth on the irrig...
Introduction The aim of this study was to evaluate the effect of needle-insertion depth on the irrig...
Fluid dynamics generated by irrigation needles have not been deeply analyzed in root canal irregular...
Supervisor: Prof. M. BussmannAbstract Aim: Despite more than a century of technological improvemen...
Aim To compare the results of a Computational Fluid Dynamics (CFD) simulation of the irrigant flow ...
Aim To compare the results of a Computational Fluid Dynamics (CFD) simulation of the irrigant flow ...
Aim To analyze the influence of the needle type, insertion depth, and irrigant flow rate on irrigant...
Aim (i) To evaluate the effect of needle type and insertion depth, root canal size and irrigant flow...
Aim: To compare using computational fluid dynamics (CFD) the flow pattern, irrigant velocity, apical...
Aim(i) To evaluate the effect of needle type and insertion depth, root canal size and irrigant flow ...