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Ahmet Fatih Tabak

6 accepted papers

2018

Independent Actuation of Two-Tailed Microrobots

RA-L 2018

A soft two-tailed microrobot in low Reynolds number fluids does not achieve forward locomotion by identical tails regardless to its wiggling frequency. If the tails are nonidentical, zero forward locomotion is also observed at specific oscillation frequencies (which we refer to as the reversal frequ

Cited by 42SourceScholar
2018

Mechanical Rubbing of Blood Clots Using Helical Robots Under Ultrasound Guidance

RA-L 2018

A simple way to mitigate the potential negative side-effects associated with chemical lysis of a blood clot is to tear its fibrin network via mechanical rubbing using a helical robot. Here, we achieve mechanical rubbing of blood clots under ultrasound guidance and using external magnetic actuation.

Cited by 61SourceScholar
2017

Near-surface effects on the controlled motion of magnetotactic bacteria

ICRA 2017poster

Magnetotactic bacteria have the potential to controllably reach stagnant fluids inside the human body and achieve targeted drug delivery. In this application, motion of the magnetotactic bacteria is influenced by the near-surface effects such as the background flows and surface interactions. Here, w…

Cited by 13SourceScholar
2017

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

RA-L 2017

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 hydrod

Cited by 64SourceScholar
2017

Swimming in low reynolds numbers using planar and helical flagellar waves

IROS 2017poster

In travelling towards the oviducts, sperm cells undergo transitions between planar to helical flagellar propulsion by a beating tail based on the viscosity of the environment. In this work, we aim to model and mimic this behaviour in low Reynolds number fluids using externally actuated soft robotic…

Cited by 5SourceScholar
2016

Sperm-shaped magnetic microrobots: Fabrication using electrospinning, modeling, and characterization

ICRA 2016

We use electrospinning to fabricate sperm-shaped magnetic microrobots with a range of diameters from 50 μm to 500 μm. The variables of the electrospinning operation (voltage, concentration of the solution, dynamic viscosity, and distance between the syringe needle and collector) to achieve beading e

Cited by 28SourceScholar