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20202023
most citedShape-adaptive Hysteresis Compensation for Tendon-driven Continuum Manipulators

3 citations · 3 across the 6 of their papers we have counts for

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7 papers · 1 filter

cs.RO2023

AI-based Agents for Automated Robotic Endovascular Guidewire Manipulation

Young-Ho Kim, Èric Lluch, Gulsun Mehmet +2

Endovascular guidewire manipulation is essential for minimally-invasive clinical applications (Percutaneous Coronary Intervention (PCI), Mechanical thrombectomy techniques for acut…

cs.RO2023

Separable Tendon-Driven Robotic Manipulator with a Long, Flexible, Passive Proximal Section

Christian DeBuys, Florin C. Ghesu, Jagadeesan Jayender +2

This work tackles practical issues which arise when using a tendon-driven robotic manipulator (TDRM) with a long, flexible, passive proximal section in medical applications. Tendon…

cs.RO2022

Design and validation of zero-slack separable manipulator for Intracardiac Echocardiography

Christian DeBuy, Florin Ghesu, Reza Langari +1

Clinicians require substantial training and experience to become comfortable with steering Intracardiac echocardiography (ICE) catheter to localize and measure the area of treatmen…

cs.RO2022

Automated Catheter Tip Repositioning for Intra-cardiac Echocardiography

Young-Ho Kim, Jarrod Collins, Zhongyu Li +4

Purpose: Intra-Cardiac Echocardiography (ICE) is a powerful imaging modality for guiding cardiac electrophysiology and structural heart interventions. ICE provides real-time observ…

cs.RO2021★ 3 cited

Shape-adaptive Hysteresis Compensation for Tendon-driven Continuum Manipulators

Young-Ho Kim, Tommaso Mansi

Tendon-driven continuum manipulators (TDCM) are commonly used in minimally invasive surgical systems due to their long, thin, flexible structure that is compliant in narrow or tort…

cs.RO2020

Non-linear Hysteresis Compensation of a Tendon-sheath-driven Robotic Manipulator using Motor Current

Dong-Ho Lee, Young-Ho Kim, Jarrod Collins +3

Tendon-sheath-driven manipulators (TSM) are widely used in minimally invasive surgical systems due to their long, thin shape, flexibility, and compliance making them easily steerab…