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Junghwan Back

10 accepted papers

2020

A Vision-Based Soft Somatosensory System for Distributed Pressure and Temperature Sensing

RA-L 2020

Emulating a human-like somatosensory system in instruments such as robotic hands and surgical grippers has the potential to revolutionize these domains. Using a combination of different sensing modalities is problematic due to the limited space and incompatibility of these sensing principles. Theref

Cited by 14SourceScholar
2019

Endoscope Force Generation and Intrinsic Sensing with Environmental Scaffolding

ICRA 2019poster

Endoscopic surgery is an increasingly popular alternative to laparoscopic techniques for many conditions, as the operation site can be reached without skin wounds. In many tasks, sufficient force generation is desired. As endoscopes must be highly flexible and slim, however, the force generation and…

Cited by 4SourceScholar
2019

Motion Control of Cable-Driven Continuum Catheter Robot Through Contacts

RA-L 2019

Catheter-based intervention plays an important role in minimally invasive surgery. For the closed-loop control of catheter robot through contacts, the loss of contact sensing along the entire catheter might result in task failure. To deal with this problem, we propose a decoupled motion control stra

Cited by 51SourceScholar
2018

Combining Contact Forces and Geometry to Recognize Objects During Surface Haptic Exploration

RA-L 2018

Enhancing haptic sensing allows more efficient control of interaction with unstructured and changing environments. Meanwhile, rich haptic information obtained during the interaction is useful for recognizing the environment. The haptic information contains distinctive physical features like friction

Cited by 17SourceScholar
2017

Design of a soft, parallel end-effector applied to robot-guided ultrasound interventions

IROS 2017poster

Medical ultrasound imaging robotics systems often comprise of complex control architectures and hardware integration to enable safe human robot interaction. In this paper, we investigate the applicability of a soft robotic end-effector for ultrasound intervention. A novel, parallel design is derived…

Cited by 33SourceScholar
2017

Intrinsic force sensing capabilities in compliant robots comprising hydraulic actuation

IROS 2017poster

Knowledge of externally applied forces is crucial for compliant robotic manipulators in minimally-invasive and endoluminal robotic surgery for both patient safety and controllability of the device. We developed a novel continuum manipulator which comprises hydraulic actuation. In this work we invest…

Cited by 18SourceScholar
2016

New kinematic multi-section model for catheter contact force estimation and steering

IROS 2016poster

Contact force play is a significant role in success of the cardiac ablation. However, it is still challenging to estimate contact force when a catheter is under large bending and multiple contacts. This paper develops a new multi-section static model of the tendon-driven catheters for both real-time…

Cited by 38SourceScholar
2016

Stiffness-based modelling of a hydraulically-actuated soft robotics manipulator

IROS 2016poster

This work investigates the applicability of stiffness-based modelling in soft robotics manipulation. The methodology is introduced and applied to model a soft robotics manipulator as single 3d Timoshenko beam element. The model is then utilized to solve the forward kinematics problem for the manipul…

Cited by 45SourceScholar
2015

Catheter contact force estimation from shape detection using a real-time Cosserat rod model

IROS 2015poster

This paper proposes a novel Cosserat rod model based method to estimate contact forces based on the shape analysis of the catheter. We simplify the original Cosserat rod model to achieve real-time estimation of the force magnitude and directions applied to the catheter tip. The simplified model cont…

Cited by 58SourceScholar
2015

Feasibility study- novel optical soft tactile array sensing for minimally invasive surgery

IROS 2015poster

The absence of touch of sense is a widely known drawback of robotic minimally invasive surgery (MIS). This paper proposes a design of optic soft tactile arrays which is promising to be adapted for MIS. The proposed design consists of multiple soft material channels. Each channel is designed using th…

Cited by 47SourceScholar