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Kyeongha Kwon

Korea Advanced Institute of Science and Technology · 工学

研究室紹介

Professor Kyeongha Kwon's research lab specializes in the development of soft, wearable, and implantable electronic systems for biomedical applications. The lab focuses on creating miniaturized, multifunctional sensors and neuromodulation interfaces that enable continuous, real-time monitoring of physiological signals such as pressure, temperature, mechanical forces, and electrical activity in living tissues. Key research directions include the design of bio-integrated microsystems for chronic wound healing, neural interface technologies using 3D spheroid models, and smart prosthetic socket monitoring systems to improve patient comfort and prevent complications. The lab emphasizes innovation in materials science, microfabrication, and wireless sensing to advance personalized and preventive healthcare solutions.

wearable sensorsbio-integrated electronicsimplantable microsystemsbiomedical monitoringsoft electronics

Research Overview

Papers
71
Total Citations
2,548
Papers (5y)
39
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
39total
2022
2023
2024
2025
2026
Citations per year (5y)
939total
20222023202420252026

Selected Papers

15
1
Article|276 citations·2021
Three-dimensional, multifunctional neural interfaces for cortical spheroids and engineered assembloids
Yoonseok Park, Colin K. Franz, Hanjun Ryu, Haiwen Luan, Kristen Y. Cotton, Jong Uk Kim, Ted S. Chung, Shiwei Zhao, Abraham Vázquez‐Guardado, Da Som Yang, Kan Li, Raudel Avila
SJR Q1Science AdvancesOA

Three-dimensional (3D), submillimeter-scale constructs of neural cells, known as cortical spheroids, are of rapidly growing importance in biological research because these systems reproduce complex features of the brain in vitro. Despite their great potential for studies of neurodevelopment and neurological disease modeling, 3D living objects cannot be studied easily using conventional approaches to neuromodulation, sensing, and manipulation. Here, we introduce classes of microfabricated 3D fram

Cellular and Molecular NeuroscienceNeuroscience
2
Article|225 citations·2021
An on-skin platform for wireless monitoring of flow rate, cumulative loss and temperature of sweat in real time
Kyeongha Kwon, Jong Uk Kim, Yujun Deng, Siddharth Krishnan, Jungil Choi, Hokyung Jang, KunHyuck Lee, Chun-Ju Su, Injae Yoo, Yixin Wu, Lindsay Lipschultz, Jae-Hwan Kim
SJR Q1Nature Electronics
Biomedical EngineeringEngineering
3
Article|210 citations·2019
Multimodal Sensing with a Three-Dimensional Piezoresistive Structure
Sang Min Won, Heling Wang, Bong Hoon Kim, KunHyuck Lee, Hokyung Jang, Kyeongha Kwon, Mengdi Han, Kaitlyn E. Crawford, Haibo Li, Yechan Lee, Xuebo Yuan, Sung Bong Kim
SJR Q1ACS Nano

Sensors that reproduce the complex characteristics of cutaneous receptors in the skin have important potential in the context of artificial systems for controlled interactions with the physical environment. Multimodal responses with high sensitivity and wide dynamic range are essential for many such applications. This report introduces a simple, three-dimensional type of microelectromechanical sensor that incorporates monocrystalline silicon nanomembranes as piezoresistive elements in a configur

Biomedical EngineeringEngineering
4
Article|207 citations·2023
A battery-less wireless implant for the continuous monitoring of vascular pressure, flow rate and temperature
Kyeongha Kwon, Jong Uk Kim, Sang Min Won, J. Z. Zhao, Raudel Avila, Heling Wang, Keum San Chun, Hokyung Jang, Kun Hyuck Lee, Jae-Hwan Kim, Seonggwang Yoo, Youn J. Kang
SJR Q1Nature Biomedical Engineering
Electrical and Electronic EngineeringEngineering
5
Article|192 citations·2021
Battery-free, wireless soft sensors for continuous multi-site measurements of pressure and temperature from patients at risk for pressure injuries
Yong Suk Oh, Jae-Hwan Kim, Zhaoqian Xie, Seokjoo Cho, Hyeonseok Han, Sung Woo Jeon, Minsu Park, Myeong Namkoong, Raudel Avila, Zhen Song, Sung‐Uk Lee, Kabseok Ko
SJR Q1Nature CommunicationsOA

Capabilities for continuous monitoring of pressures and temperatures at critical skin interfaces can help to guide care strategies that minimize the potential for pressure injuries in hospitalized patients or in individuals confined to the bed. This paper introduces a soft, skin-mountable class of sensor system for this purpose. The design includes a pressure-responsive element based on membrane deflection and a battery-free, wireless mode of operation capable of multi-site measurements at strat

Biomedical EngineeringEngineering
6
Article|189 citations·2023
Bioresorbable, wireless, and battery-free system for electrotherapy and impedance sensing at wound sites
Joseph W. Song, Hanjun Ryu, Wubin Bai, Zhaoqian Xie, Abraham Vázquez‐Guardado, Khizar R. Nandoliya, Raudel Avila, Geumbee Lee, Zhen Song, Jihye Kim, Min‐Kyu Lee, Yugang Liu
SJR Q1Science AdvancesOA

Chronic wounds, particularly those associated with diabetes mellitus, represent a growing threat to public health, with additional notable economic impacts. Inflammation associated with these wounds leads to abnormalities in endogenous electrical signals that impede the migration of keratinocytes needed to support the healing process. This observation motivates the treatment of chronic wounds with electrical stimulation therapy, but practical engineering challenges, difficulties in removing stim

Molecular BiologyBiochemistry, Genetics and Molecular Biology
7
Article|163 citations·2020
Wireless sensors for continuous, multimodal measurements at the skin interface with lower limb prostheses
Jean Won Kwak, Mengdi Han, Zhaoqian Xie, Ha Uk Chung, Jong Yoon Lee, Raudel Avila, Jessica Yohay, Xuexian Chen, Cunman Liang, Manish Patel, Inhwa Jung, Jong-Won Kim
SJR Q1Science Translational MedicineOA

Precise form-fitting of prosthetic sockets is important for the comfort and well-being of persons with limb amputations. Capabilities for continuous monitoring of pressure and temperature at the skin-prosthesis interface can be valuable in the fitting process and in monitoring for the development of dangerous regions of increased pressure and temperature as limb volume changes during daily activities. Conventional pressure transducers and temperature sensors cannot provide comfortable, irritatio

Biomedical EngineeringEngineering
8
Article|149 citations·2023
A wireless and battery-less implant for multimodal closed-loop neuromodulation in small animals
Wei Ouyang, Wei Lu, Yamin Zhang, Yiming Liu, Jong Uk Kim, Haixu Shen, Yunyun Wu, Haiwen Luan, Keith Kilner, Stephen P. Lee, Yinsheng Lu, Yiyuan Yang
SJR Q1Nature Biomedical Engineering
Cellular and Molecular NeuroscienceNeuroscience
9
Article|111 citations·2021
Differential cardiopulmonary monitoring system for artifact-canceled physiological tracking of athletes, workers, and COVID-19 patients
Hyoyoung Jeong, Jong Yoon Lee, KunHyuck Lee, Youn J. Kang, Jin‐Tae Kim, Raudel Avila, Andreas Tzavelis, Joohee Kim, Hanjun Ryu, Sung Soo Kwak, Jong Uk Kim, Aaron Banks
SJR Q1Science AdvancesOA

Soft, skin-integrated electronic sensors can provide continuous measurements of diverse physiological parameters, with broad relevance to the future of human health care. Motion artifacts can, however, corrupt the recorded signals, particularly those associated with mechanical signatures of cardiopulmonary processes. Design strategies introduced here address this limitation through differential operation of a matched, time-synchronized pair of high-bandwidth accelerometers located on parts of th

Biomedical EngineeringEngineering
10
Article|95 citations·2021
Wireless, implantable catheter-type oximeter designed for cardiac oxygen saturation
Wei Lu, Wubin Bai, Hao Zhang, Chenkai Xu, Antonio Maria Chiarelli, Abraham Vázquez‐Guardado, Zhaoqian Xie, Haixu Shen, Khizar R. Nandoliya, Hangbo Zhao, KunHyuck Lee, Yixin Wu
SJR Q1Science AdvancesOA

Accurate, real-time monitoring of intravascular oxygen levels is important in tracking the cardiopulmonary health of patients after cardiothoracic surgery. Existing technologies use intravascular placement of glass fiber-optic catheters that pose risks of blood vessel damage, thrombosis, and infection. In addition, physical tethers to power supply systems and data acquisition hardware limit freedom of movement and add clutter to the intensive care unit. This report introduces a wireless, miniatu

Biomedical EngineeringEngineering
11
Article|92 citations·2020
Wireless, skin-interfaced sensors for compression therapy
Yoonseok Park, Kyeongha Kwon, Sung Soo Kwak, Da Som Yang, Jean Won Kwak, Haiwen Luan, Ted S. Chung, Keum San Chun, Jong Uk Kim, Hokyung Jang, Hanjun Ryu, Hyoyoung Jeong
SJR Q1Science AdvancesOA

Therapeutic compression garments (TCGs) are key tools for the management of a wide range of vascular lower extremity conditions. Proper use of TCGs involves application of a minimum and consistent pressure across the lower extremities for extended periods of time. Slight changes in the characteristics of the fabric and the mechanical properties of the tissues lead to requirements for frequent measurements and corresponding adjustments of the applied pressure. Existing sensors are not sufficientl

Biomedical EngineeringEngineering
12
Article|79 citations·2022
Soft skin-interfaced mechano-acoustic sensors for real-time monitoring and patient feedback on respiratory and swallowing biomechanics
Youn J. Kang, Hany Arafa, Jae‐Young Yoo, Çagla Kantarcigil, Jin‐Tae Kim, Hyoyoung Jeong, Seonggwang Yoo, Seyong Oh, Joohee Kim, Changsheng Wu, Andreas Tzavelis, Yunyun Wu
SJR Q1npj Digital MedicineOA

Swallowing is a complex neuromuscular activity regulated by the autonomic nervous system. Millions of adults suffer from dysphagia (impaired or difficulty swallowing), including patients with neurological disorders, head and neck cancer, gastrointestinal diseases, and respiratory disorders. Therapeutic treatments for dysphagia include interventions by speech-language pathologists designed to improve the physiology of the swallowing mechanism by training patients to initiate swallows with suffici

Speech and HearingHealth Professions
13
Article|53 citations·2021
Wireless, soft electronics for rapid, multisensor measurements of hydration levels in healthy and diseased skin
Kyeongha Kwon, Heling Wang, Jaeman Lim, Keum San Chun, Hokyung Jang, Injae Yoo, Derek Wu, Alyssa Jie Chen, Carol Gu, Lindsay Lipschultz, Jong Uk Kim, Jihye Kim
SJR Q1Proceedings of the National Academy of SciencesOA

Precise, quantitative measurements of the hydration status of skin can yield important insights into dermatological health and skin structure and function, with additional relevance to essential processes of thermoregulation and other features of basic physiology. Existing tools for determining skin water content exploit surrogate electrical assessments performed with bulky, rigid, and expensive instruments that are difficult to use in a repeatable manner. Recent alternatives exploit thermal mea

DermatologyMedicine
14
Article|33 citations·2024
A wireless, implantable bioelectronic system for monitoring urinary bladder function following surgical recovery
Jihye Kim, Matthew I. Bury, Kyeongha Kwon, Jae‐Young Yoo, N. Valeska Halstead, Hee‐Sup Shin, Shupeng Li, Sang Min Won, Min‐Ho Seo, Yunyun Wu, Do Yun Park, Mitali Kini
SJR Q1Proceedings of the National Academy of SciencesOA

Partial cystectomy procedures for urinary bladder-related dysfunction involve long recovery periods, during which urodynamic studies (UDS) intermittently assess lower urinary tract function. However, UDS are not patient-friendly, they exhibit user-to-user variability, and they amount to snapshots in time, limiting the ability to collect continuous, longitudinal data. These procedures also pose the risk of catheter-associated urinary tract infections, which can progress to ascending pyelonephriti

UrologyMedicine
15
Article|30 citations·2019
Miniaturized, light-adaptive, wireless dosimeters autonomously monitor exposure to electromagnetic radiation
Kyeongha Kwon, Seung Yun Heo, Injae Yoo, Anthony Banks, Michelle Chan, Jong Yoon Lee, Jun Bin Park, Jeonghyun Kim, John A. Rogers
SJR Q1Science AdvancesOA

Exposure to electromagnetic radiation (EMR) from the sun and from artificial lighting systems represents a modifiable risk factor for a broad range of health conditions including skin cancer, skin aging, sleep and mood disorders, and retinal damage. Technologies for personalized EMR dosimetry could guide lifestyles toward behaviors that ensure healthy levels of exposure. Here, we report a millimeter-scale, ultralow-power digital dosimeter platform that provides continuous EMR dosimetry in an aut

DermatologyMedicine

Research Areas

Biomedical EngineeringElectrical and Electronic EngineeringAutomotive EngineeringDermatologyCellular and Molecular NeuroscienceBiomaterials

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