Skip to main content

Junbeom Bae

Korea University · Engineering

About the Lab

Professor Junbeom Bae's research lab specializes in flexible and stretchable electronics, with a focus on developing wearable sensors and human-machine interfaces for healthcare and rehabilitation applications. The lab pioneers the use of liquid metal-based conductive inks—particularly eutectic gallium-indium (eGaIn)—in direct ink writing (DIW) techniques to fabricate soft, lightweight, and highly sensitive sensors and haptic feedback systems. Key research directions include wearable motion tracking, hand exoskeletons for motor rehabilitation, and mobile gait monitoring systems that enable real-time, quantitative assessment of human movement. The lab emphasizes the integration of advanced materials with smart, portable medical devices to enhance patient outcomes in clinical and home settings.

liquid metalwearable sensorsdirect ink writinghaptic feedbackrehabilitation robotics

Research Overview

Papers
177
Total Citations
4,212
Papers (5y)
41
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
41total
2022
2023
2024
2025
2026
Citations per year (5y)
335total
20222023202420252026

Selected Papers

15
1
Article|164 citations·2020
A Liquid Metal Based Multimodal Sensor and Haptic Feedback Device for Thermal and Tactile Sensation Generation in Virtual Reality
Jinhyeok Oh, Suin Kim, Sangyeop Lee, Seong‐Min Jeong, Seung Hwan Ko, Joonbum Bae
SJR Q1Advanced Functional Materials

Abstract Virtual reality (VR) has been widely used for training, gaming, and entertainment, and the value of VR is continually increasing as a contact‐free technology. For an immersive VR experience, measuring finger movements and providing appropriate feedback to the hand are as important as visual information, given the necessity of the hands for activities in daily life. Thus, a hand‐worn VR device with motion sensors and haptic feedback is desirable. In this paper, a multimodal sensing and f

Cognitive NeuroscienceNeuroscience
2
Article|102 citations·2011
Gait phase analysis based on a Hidden Markov Model
Joonbum Bae, Masayoshi Tomizuka
SJR Q1Mechatronics
Biomedical EngineeringEngineering
3
Article|91 citations·2019
Direct Wiring of Eutectic Gallium–Indium to a Metal Electrode for Soft Sensor Systems
Suin Kim, Jihye Oh, Dahee Jeong, Joonbum Bae
SJR Q1ACS Applied Materials & Interfaces

For wider applications of liquid metal-based stretchable electronics, electrical interface has remained a crucial issue due to its fragile electromechanical stability and complex fabrication steps. In this study, a direct writing-based technique is introduced to form the writing paths of conductive liquid metal (eutectic gallium–indium, eGaIn) and electrical connections to off-the-shelf metal electrodes in a single process. Specifically, by extending eGaIn wires written on a silicone substrate,

Electrical and Electronic EngineeringEngineering
4
Article|75 citations·2016
Design and control of a wearable and force-controllable hand exoskeleton system
Inseong Jo, Joonbum Bae
SJR Q1MechatronicsOA
Biomedical EngineeringEngineering
5
Article|72 citations·2017
A Soft Sensor-Based Three-Dimensional (3-D) Finger Motion Measurement System
Wookeun Park, Kyongkwan Ro, Suin Kim, Joonbum Bae
SJR Q1SensorsOA

In this study, a soft sensor-based three-dimensional (3-D) finger motion measurement system is proposed. The sensors, made of the soft material Ecoflex, comprise embedded microchannels filled with a conductive liquid metal (EGaln). The superior elasticity, light weight, and sensitivity of soft sensors allows them to be embedded in environments in which conventional sensors cannot. Complicated finger joints, such as the carpometacarpal (CMC) joint of the thumb are modeled to specify the location

Control and Systems EngineeringEngineering
6
Article|69 citations·2018
Consistent and Reproducible Direct Ink Writing of Eutectic Gallium–Indium for High-Quality Soft Sensors
Suin Kim, Jinhyeok Oh, Dahee Jeong, Wookeun Park, Joonbum Bae
SJR Q1Soft Robotics

Given the need for stretchable sensors, many studies have been conducted on eutectic gallium-indium, which has superior properties as a conductive ink. However, it has remained a challenge to manufacture sensors in a consistent and reproducible manner because conventional mold-based fabrication still depends highly on manual techniques. To overcome this limitation, the direct ink writing was used in this study, focusing on improving the stability of writing by exploring issues related to failure

Biomedical EngineeringEngineering
7
Article|65 citations·2019
A portable and spring-guided hand exoskeleton for exercising flexion/extension of the fingers
Inseong Jo, Yeongyu Park, Jeongsoo Lee, Joonbum Bae
SJR Q1Mechanism and Machine TheoryOA

In this paper, we developed a portable and spring-guided hand exoskeleton system for exercising flexion/extension of the fingers. The exoskeleton was designed with a simple structure to aid finger motion with one degree of freedom (DOF). The desired joint trajectory of the exoskeleton was determined based on the user joint ROM and general finger motion obtained by the hand flexion/extension experiments. The design of the linkage structure was optimized to maximally satisfy the desired trajectory

RehabilitationMedicine
8
Article|64 citations·2013
A tele-monitoring system for gait rehabilitation with an inertial measurement unit and a shoe-type ground reaction force sensor
Joonbum Bae, Masayoshi Tomizuka
SJR Q1Mechatronics
RehabilitationMedicine
9
Article|60 citations·2011
A Mobile Gait Monitoring System for Abnormal Gait Diagnosis and Rehabilitation: A Pilot Study for Parkinson Disease Patients
Joonbum Bae, Kyoungchul Kong, Nancy N. Byl, Masayoshi Tomizuka
SJR Q3Journal of Biomechanical Engineering

Conventional gait rehabilitation treatment does not provide quantitative information on abnormal gait kinematics, and the match of the intervention strategy to the underlying clinical presentation may be limited by clinical expertise and experience. Also the effect of rehabilitation treatment may be reduced as the rehabilitation treatment is achieved only in a clinical setting. In this paper, a mobile gait monitoring system (MGMS) is proposed for the diagnosis of abnormal gait and rehabilitation

Biomedical EngineeringEngineering
10
Article|48 citations·2009
A mobile gait monitoring system for gait analysis
Joonbum Bae, Kyoungchul Kong, Nancy N. Byl, Masayoshi Tomizuka

Conventional gait rehabilitation treatment does not provide quantitative and graphical information on abnormal gait kinematics, and the match of the intervention strategy to the underlying clinical presentation may be limited by clinical expertise and experience. In this paper, a mobile gait monitoring system (MGMS) is proposed, which helps patients self correct their gait without restriction of time and place. The proposed MGMS consists of Smart Shoes, a data acquisition board, a mobile display

Biomedical EngineeringEngineering
11
Article|41 citations·2012
Network-Based Rehabilitation System for Improved Mobility and Tele-Rehabilitation
Joonbum Bae, Wenlong Zhang, Masayoshi Tomizuka
SJR Q1IEEE Transactions on Control Systems Technology

In this brief, a network-based rehabilitation system, which takes advantage of the Internet, wireless communication, and control, is proposed to increase the mobility of a rehabilitation system and to enable tele-rehabilitation. In the proposed system, control algorithms and rehabilitation strategies are distributed at the central location (physiotherapist) and the local site (patient) by communicating over the Internet, and the rehabilitation device is controlled wirelessly by the controller at

RehabilitationMedicine
12
Article|40 citations·2017
Analysis of Finger Muscular Forces using a Wearable Hand Exoskeleton System
Suin Kim, Jeong‐Soo Lee, Joonbum Bae
SJR Q1Journal of Bionic Engineering
Biomedical EngineeringEngineering
13
Article|39 citations·2021
Marangoni effect inspired robotic self-propulsion over a water surface using a flow-imbibition-powered microfluidic pump
Bokeon Kwak, Soyoung Choi, Jiyeon Maeng, Joonbum Bae
SJR Q1Scientific ReportsOA

Certain aquatic insects rapidly traverse water by secreting surfactants that exploit the Marangoni effect, inspiring the development of many self-propulsion systems. In this research, to demonstrate a new way of delivering liquid fuel to a water surface for Marangoni propulsion, a microfluidic pump driven by the flow-imbibition by a porous medium was integrated to create a novel self-propelling robot. After triggered by a small magnet, the liquid fuel stored in a microchannel is autonomously tra

Condensed Matter PhysicsPhysics and Astronomy
14
Article|39 citations·2012
A gait rehabilitation strategy inspired by an iterative learning algorithm
Joonbum Bae, Masayoshi Tomizuka
SJR Q1Mechatronics
Biomedical EngineeringEngineering
15
Article|38 citations·2018
A Dual-cable Hand Exoskeleton System for Virtual Reality
Yeongyu Park, Inseong Jo, Jeongsoo Lee, Joonbum Bae
SJR Q1MechatronicsOA
RehabilitationMedicine

Research Areas

Biomedical EngineeringMechanical EngineeringControl and Systems EngineeringRehabilitationCognitive NeuroscienceAerospace Engineering

Dive deeper into Junbeom Bae's research on Nubint

Open this lab's papers in the app to read with AI, summarize, and cite in your writing.