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Sinsuk Park

Korea University · Engineering

About the Lab

Professor Sinsuk Park's research lab specializes in intelligent robotic systems and advanced medical technologies, with a strong focus on enhancing human-robot interaction in healthcare and emergency response. The lab develops innovative solutions in surgical robotics, gait rehabilitation, and disaster response robotics, emphasizing miniaturized actuators, real-time control, and augmented reality for improved precision and safety. Key research directions include the integration of biomedical sensing, artificial intelligence, and compliant robotic designs to address clinical and operational challenges.

surgical roboticsrehabilitation roboticsdisaster response roboticsultrasonic actuatorsaugmented reality in surgery

Research Overview

Papers
122
Total Citations
1,753
Papers (5y)
15
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
15total
2022
2023
2024
2025
2026
Citations per year (5y)
43total
20222023202420252026

Selected Papers

15
1
Book Chapter|141 citations·2001
Virtual Fixtures for Robotic Cardiac Surgery
Shinsuk Park, Robert D. Howe, David F. Torchiana
SJR Q2Lecture notes in computer science
Biomedical EngineeringEngineering
2
Article|118 citations·2017
Prediction of Driver’s Intention of Lane Change by Augmenting Sensor Information Using Machine Learning Techniques
Il Hwan Kim, Jae-Hwan Bong, Jooyoung Park, Shinsuk Park
SJR Q1SensorsOA

Driver assistance systems have become a major safety feature of modern passenger vehicles. The advanced driver assistance system (ADAS) is one of the active safety systems to improve the vehicle control performance and, thus, the safety of the driver and the passengers. To use the ADAS for lane change control, rapid and correct detection of the driver's intention is essential. This study proposes a novel preprocessing algorithm for the ADAS to improve the accuracy in classifying the driver's int

Automotive EngineeringEngineering
3
Article|50 citations·1999
Hip muscle co-contraction: evidence from concurrent in vivo pressure measurement and force estimation
Shinsuk Park, David E. Krebs, Robert W. Mann
SJR Q1Gait & Posture
SurgeryMedicine
4
Article|49 citations·2017
Endoscopic navigation system with extended field of view using augmented reality technology
Jae Hwan Bong, Hyun‐jong Song, Yoojin Oh, Namji Park, Hyungmin Kim, Shinsuk Park
SJR Q2International Journal of Medical Robotics and Computer Assisted Surgery

BACKGROUND: While endoscopic skull base surgery (ESBS) has emerged as an alternative surgical option, the limited field of view of the endoscope may lead to the surgeon's fatigue and discomfort. METHODS: The developed navigation system includes extended augmented reality (AR), which can provide an extended viewport to a conventional endoscopic view by overlaying 3D anatomical models generated from preoperative medical images onto endoscope images. To enhance the accuracy of the developed system,

Computer Vision and Pattern RecognitionComputer Science
5
Article|43 citations·2007
Control of multi-dof ultrasonic actuator for dexterous surgical instrument
Kenjiro Takemura, Shinsuk Park, Takashi Maéno
SJR Q1Journal of Sound and Vibration
Control and Systems EngineeringEngineering
6
Article|39 citations·2017
Disaster response and recovery from the perspective of robotics
Shinsuk Park, Yoojin Oh, Daehie Hong
SJR Q2International Journal of Precision Engineering and Manufacturing
Biomedical EngineeringEngineering
7
Article|19 citations·2010
Control of impulsive contact force between mobile manipulator and environment using effective mass and damping controls
Sungchul Kang, K. Komoriya, Kazuhito Yokoi, Tetsuo Koutoku, Byungchan Kim, Shinsuk Park
SJR Q2International Journal of Precision Engineering and Manufacturing
Control and Systems EngineeringEngineering
8
Article|13 citations·2006
Development of Safe Mechanism for Surgical Robots Using Equilibrium Point Control Method
Shinsuk Park, Hokjin Lim, Byeong-Sang Kim, Jae-Bok Song
SJR Q2Lecture notes in computer scienceOA
Cognitive NeuroscienceNeuroscience
9
Article|13 citations·2004
Study on Multi-DOF Ultrasonic Actuator for Laparoscopic Instrument
Shinsuk Park, Kenjiro Takemura, Takashi Maéno
JSME International Journal Series COA

In surgical robots, compact manipulators with multi-degree-of-freedom (DOF) are essential owing to a small work volume in the patient body. Conventional single-DOF actuators such as electromagnetic motors require a multiple number of actuators to generate multi-DOF motion, which in turn results in bulky mechanism combined with transmission device. Our previous work has developed a compact ultrasonic motor capable of generating a multi-DOF rotation of a spherical rotor utilizing three natural vib

Biomedical EngineeringEngineering
10
Article|13 citations·2006
Safety Strategies for Human-Robot Interaction in Surgical Environment
Shinsuk Park
2006 SICE-ICASE International Joint Conference

Over past decade, robots have been appearing in the operating room. Robots enhance surgery by improving precision, repeatability, stability, and dexterity. These qualities coupled with the human surgeon's judgment capabilities make a formidable combination. There are, however, many limitations to the application of robotics to surgery. In practice, these robotic systems can be difficult to use because of the limited dexterity and sensory feedback, as well as the major issue of safety. We may be

Biomedical EngineeringEngineering
11
Article|12 citations·2024
Machine-learning-based coordination of powered ankle–foot orthosis and functional electrical stimulation for gait control
Suhun Jung, Jae Hwan Bong, Keri Kim, Shinsuk Park
SJR Q1Frontiers in Bioengineering and BiotechnologyOA

This study proposes a novel gait rehabilitation method that uses a hybrid system comprising a powered ankle-foot orthosis (PAFO) and FES, and presents its coordination control. The developed system provides assistance to the ankle joint in accordance with the degree of volitional participation of patients with post-stroke hemiplegia. The PAFO adopts the desired joint angle and impedance profile obtained from biomechanical simulation. The FES patterns of the tibialis anterior and soleus muscles a

Biomedical EngineeringEngineering
12
Article|12 citations·2017
Disaster Response and Recovery from the Perspective of Robotics
박신석, 오유진, 홍대희

As we witnessed in recent major disasters, the functionalities of robots in disaster environments do not appear to meet the high level of expectation from the public. This paper reviews robotic operations in disaster situations and open issues with the current robotic technologies. We particularly address fundamental problems with teleoperated ground robots for disaster response and recovery: design of robot platforms and balance between human supervisory control and robotic anatomy. In attempt

13
Article|11 citations·2022
Force feedback haptic interface for bilateral teleoperation of robot manipulation
Jae Hwan Bong, Sunwoong Choi, Jin Tae Hong, Shinsuk Park
SJR Q3Microsystem Technologies
Mechanical EngineeringEngineering
14
Article|10 citations·2009
Estimation of carrying angle based on CT images in preoperative surgical planning for cubitus deformities.
Shinsuk Park, Eugene Kim
PubMed

Conventionally, the carrying angle of the elbow is measured using simple two-dimensional radiography or goniometry, which has questionable reliability. This study proposes a novel method for estimating carrying angles using computed tomography that can enhance the reliability of the angle measurement. Data of CT scans from 25 elbow joints were processed to build segmented three-dimensional models. The cross-sectional centerlines of the ulna and the humerus were traced from the 3D models, and the

RehabilitationMedicine
15
Article|9 citations·2021
DNN-Based FES Control for Gait Rehabilitation of Hemiplegic Patients
Suhun Jung, Jae Hwan Bong, Seung‐Jong Kim, Shinsuk Park
SJR Q2Applied SciencesOA

In this study, we proposed a novel machine-learning-based functional electrical stimulation (FES) control algorithm to enhance gait rehabilitation in post-stroke hemiplegic patients. The electrical stimulation of the muscles on the paretic side was controlled via deep neural networks, which were trained using muscle activity data from healthy people during gait. The performance of the developed system in comparison with that of a conventional FES control method was tested with healthy human subj

Biomedical EngineeringEngineering

Research Areas

Biomedical EngineeringControl and Systems EngineeringCognitive NeuroscienceAerospace EngineeringComputer Vision and Pattern RecognitionBuilding and Construction

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