A Horizontal Magnetic Tweezer for Single Molecule Micromanipulations

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Abstract

Magnetic tweezers are able to manipulate cells or biomolecules for various applications and measurements. In this work, a horizontal magnetic tweezer is designed, modeled and controlled for single molecule manipulations. A method is presented for dynamic modeling of horizontal magnetic tweezers. A linear control method is designed to ensure a wide range of operation conditions with zero steady-state error. The horizontal magnetic tweezer is able to generate a wide range of piconewton scale forces on a superparamagnetic microparticle for single molecule separation, and biosensor developments. © 2019 Elsevier B.V., All rights reserved.

Description

Ablay, Gunyaz/0000-0003-2862-6761; Eroglu, Yakup/0000-0003-3184-9317; Boyuk, Mustafa/0000-0002-1196-7634

Keywords

Control, Magnetic Force, Magnetic Tweezers, Micromanipulation, Modeling, Control Engineering, Linear Control Systems, Micromanipulators, Models, Molecules, Magnetic Force, Magnetic Tweezers, Micro Manipulation, Micro Particles, Operation Conditions, Single Molecule Manipulation, Superparamagnetics, Zero Steady State Error, Magnetism

Fields of Science

0301 basic medicine, 0303 health sciences, 03 medical and health sciences

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476

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481
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