Home /Research /Rubbing Against Blood Clots Using Helical Robots: Modeling and In Vitro Experimental Validation
OTHER

Rubbing Against Blood Clots Using Helical Robots: Modeling and In Vitro Experimental Validation

Islam S. M. Khalil, Ahmet Fatih Tabak, K. Sadek, Dalia Mahdy, Nabila Hamdi, Metin Sitti

Year
2017
Citations
80

Abstract

The risk of side effects from thrombolytic agents can be minimized by using smaller doses, assisted by mechanical rubbing against blood clots using helical robots. Quantifying this observation, we study the influence of rubbing against clots on their removal rate in vitro. First, we present a hydrodynamic model of the helical robot based on the resistive-force theory to investigate the rubbing behavior of the clots using robot driven by two rotating dipole fields. Second, we experimentally evaluate the influence of the rubbing on the removal rate of the blood clots. Not only do we find that the removal rate of mechanical rubbing (-0.56 ± 0.27 mm <sup xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">3</sup> /min) is approximately three times greater than the dissolution rate of chemical lysis using streptokinase (-0.17 ± 0.032 mm <sup xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">3</sup> /min), but we also show that this removal rate can be controlled via the rubbing speed of the robot.

Keywords

RubbingIn vitroMaterials scienceRobotBiomedical engineeringSimulationChemistryComputer scienceArtificial intelligenceComposite material

Related papers

Browse all OTHER papers