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Quentin Boehler

12 accepted papers

2026

Orthogonal Pulse-Width-Modulation for Combined Electromagnetic Actuation and Localization

ICRA 2026poster

Electromagnetic Navigation Systems can be used to remotely guide medical devices such as magnetic catheters or guidewires, holding potential in a variety of minimally invasive surgical applications. This paper introduces a method to simultaneously actuate and localize a tethered magnetic device with…

Cited by 0SourceScholar
2025

A Physics-Informed Neural Network for the Calibration of Electromagnetic Navigation Systems

IROS 2025

Electromagnetic Navigation Systems enable remote actuation of untethered micro and nanorobots, as well as the precise control of magnetic surgical tools for minimally invasive medical procedures. Accurate modeling of the magnetic fields generated by the electromagnets composing these systems is esse

Cited by 1SourceScholar
2025

Orthogonal Pulse-Width-Modulation for Combined Electromagnetic Actuation and Localization

RA-L 2025

Electromagnetic Navigation Systems can be used to remotely guide medical devices such as magnetic catheters or guidewires, holding potential in a variety of minimally invasive surgical applications. This paper introduces a method to simultaneously actuate and localize a tethered magnetic device with

Cited by 3SourceScholar
2024

Fast Rotating Magnetic Fields in Open Workspace Using Resonant Magnetic Actuation Systems With Magnetic Decoupling

RA-L 2024

Resonant electromagnetic navigation systems generate controllable oscillating and rotating magnetic fields using resonant electronic networks. This modality holds great potential to control untethered magnetic robots remotely for medical applications using fast rotating magnetic fields. However, the

Cited by 2SourceScholar
2022

Shape memory polymer variable stiffness magnetic catheters with hybrid stiffness control

IROS 2022poster

Variable stiffness catheters typically rely on thermally induced stiffness transitions with a transition temperature above body temperature. This imposes considerable safety limitations for medical applications. In this work, we present a variable stiffness catheter using a hybrid control strategy c…

Cited by 11SourceScholar
2022

Using Magnetic Fields to Navigate and Simultaneously Localize Catheters in Endoluminal Environments

RA-L 2022

Remote magnetic navigation offers an ideal platform for automated catheter navigation. Magnetically guided catheters show great dexterity and can reach locations that are otherwise challenging to access. By automating aspects of catheterization procedures, we can simplify and expedite the procedure

Cited by 29SourceScholar
2020

Modeling Electromagnetic Navigation Systems for Medical Applications using Random Forests and Artificial Neural Networks

ICRA 2020poster

Electromagnetic Navigation Systems (eMNS) can be used to control a variety of multiscale devices within the human body for remote surgery. Accurate modeling of the magnetic fields generated by the electromagnets of an eMNS is crucial for the precise control of these devices. Existing methods assume…

Cited by 16SourceScholar
2019

A Magnetically Steered Endolaser Probe for Automated Panretinal Photocoagulation

RA-L 2019

The advanced state of diabetic retinopathy, a leading cause of blindness, is treated by panretinal photocoagulation (PRP), a repetitive procedure performed by a surgeon using a handheld laser probe. In its place we propose a soft-robotic flexible probe precisely steered using magnetic fields generat

Cited by 20SourceScholar
2018

Design and Evaluation of a Steerable Magnetic Sheath for Cardiac Ablations

RA-L 2018

Precise catheter control is crucial to the success of radiofrequency cardiac arrhythmia ablations. Remote control using external magnetic fields to directly steer the catheter tip is a promising strategy to accurately and easily perform cardiac catheter steering. Magnetic catheters must be flexible

Cited by 39SourceScholar
2018

Kinematic Analysis of Magnetic Continuum Robots Using Continuation Method and Bifurcation Analysis

RA-L 2018

Magnetic continuum robots (m-CR) have grown interest in several applicative contexts that take benefits from their high flexibility and remote control. When submitted to external magnetic fields, m-CR exhibit large elastic deformations, which may lead to a highly nonlinear and complex behavior that

Cited by 22SourceScholar
2016

Design and evaluation of a novel variable stiffness spherical joint with application to MR-compatible robot design

ICRA 2016

In this paper, the design of a new variable stiffness spherical joint for MR-compatible robotics is presented. It is based on the use of prestressed cable-driven mechanisms in singular configurations to provide large stiffness variation ranges, including zero stiffness configuration as required by t

Cited by 12SourceScholar