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박제균 교수

Je‐Kyun Park

KAIST 바이오및뇌공학과 · 공학

연구실 소개

박제균 교수의 연구실은 마이크로유체기반 생체분리 및 진단 기술을 핵심으로 하며, 특히 비표지(라벨프리) 및 고속 분리 기반의 암세포 분離, 자기나노입자를 활용한 면역측정, 유체역학적 힘을 이용한 입자 집중 및 분리 기술을 개발하고 있습니다. 다양한 마이크로구조 설계(예: 기울인 장애물, 트레이펄로이드 전극 등)를 통해 생체 샘플의 복잡한 성분을 효율적으로 분리하고, 포인트온케어(POCT)에 적합한 자가작동형 마이크로유체 장치의 개발도 함께 진행하고 있습니다. 이는 진단의 현장 적용성을 높이고, 임상 현장에서의 실용성을 확보하는 데 기여합니다.

비표지 분리마이크로유체기반 분리자기나노입자포인트온케어유체역학적 집중

연구 현황

논문 수
401
총 인용 수
8,911
최근 5년 논문
16
주요 분야
공학

연구 성과 추이

표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.

5개년 연도별 논문 게재 수
16총합
2022
2023
2024
2025
2026
5개년 연도별 피인용 수
106총합
20222023202420252026

주요 논문

15
1
논문|인용수 218·2013
Label-Free Cancer Cell Separation from Human Whole Blood Using Inertial Microfluidics at Low Shear Stress
Myung Gwon Lee, Joong Ho Shin, Chae Yun Bae, Sungyoung Choi, Je‐Kyun Park
SJR Q1Analytical Chemistry

We report a contraction-expansion array (CEA) microchannel device that performs label-free high-throughput separation of cancer cells from whole blood at low Reynolds number (Re). The CEA microfluidic device utilizes hydrodynamic field effect for cancer cell separation, two kinds of inertial effects: (1) inertial lift force and (2) Dean flow, which results in label-free size-based separation with high throughput. To avoid cell damages potentially caused by high shear stress in conventional inert

Biomedical EngineeringEngineering
2
논문|인용수 213·2005
Magnetic force-based multiplexed immunoassay using superparamagnetic nanoparticles in microfluidic channel
Kyu‐Sung Kim, Je‐Kyun Park
SJR Q1Lab on a Chip

This paper describes a novel microfluidic immunoassay utilizing binding of superparamagnetic nanoparticles to beads and deflection of these beads in a magnetic field as the signal for measuring the presence of analyte. The superparamagnetic 50 nm nanoparticles and fluorescent 1 microm polystyrene beads are immobilized with specific antibodies. When target analytes react with the polystyrene beads and superparamagnetic nanoparticles simultaneously, the superparamagnetic nanoparticles can be attac

Molecular BiologyBiochemistry, Genetics and Molecular Biology
3
논문|인용수 198·2007
Continuous blood cell separation by hydrophoretic filtration
Sungyoung Choi, Seungjeong Song, Chulhee Choi, Je‐Kyun Park
SJR Q1Lab on a Chip

We propose a new hydrophoretic method for continuous blood cell separation using a microfluidic device composed of slanted obstacles and filtration obstacles. The slanted obstacles have a larger height and gap than the particles in order to focus them to a sidewall by hydrophoresis. In the successive structure, the height and gap of the filtration obstacles with a filtration pore are set between the diameters of small and large particles, which defines the critical separation diameter. According

Biomedical EngineeringEngineering
4
논문|인용수 189·2005
Microfluidic system for dielectrophoretic separation based on a trapezoidal electrode array
Sungyoung Choi, Je‐Kyun Park
SJR Q1Lab on a Chip

This paper presents a novel microfluidic device for dielectrophoretic separation based on a trapezoidal electrode array (TEA). In this method, particles with different dielectric properties are separated by the device composed of the TEA for the dielectrophoretic deflection of particles under negative dielectrophoresis (DEP) and poly(dimethylsiloxane)(PDMS) microfluidic channel with a sinuous and expanded region. Polystyrene microparticles are exposed to an electric field generated from the TEA

Biomedical EngineeringEngineering
5
리뷰|인용수 173·2020
Towards practical sample preparation in point-of-care testing: user-friendly microfluidic devices
Juhwan Park, Juhwan Park, Dong Hyun Han, Je‐Kyun Park, Je‐Kyun Park
SJR Q1Lab on a Chip

Microfluidic technologies offer a number of advantages for sample preparation in point-of-care testing (POCT), but the requirement for complicated external pumping systems limits their wide use. To facilitate sample preparation in POCT, various methods have been developed to operate microfluidic devices without complicated external pumping systems. In this review, we introduce an overview of user-friendly microfluidic devices for practical sample preparation in POCT, including self- and hand-ope

Biomedical EngineeringEngineering
6
논문|인용수 165·2006
A microfluidic platform for 3-dimensional cell culture and cell-based assays
Minseok S. Kim, Ju Hun Yeon, Je‐Kyun Park
SJR Q2Biomedical Microdevices
Biomedical EngineeringEngineering
7
논문|인용수 161·2007
Continuous hydrophoretic separation and sizing of microparticles using slanted obstacles in a microchannel
Sungyoung Choi, Je‐Kyun Park
SJR Q1Lab on a Chip

We report a microfluidic separation and sizing method of microparticles with hydrophoresis--the movement of suspended particles under the influence of a microstructure-induced pressure field. By exploiting slanted obstacles in a microchannel, we can generate a lateral pressure gradient so that microparticles can be deflected and arranged along the lateral flows induced by the gradient. Using such movements of particles, we completely separated polystyrene microbeads with 9 and 12 microm diameter

Biomedical EngineeringEngineering
8
논문|인용수 141·2010
Inertial separation in a contraction–expansion array microchannel
Myung Gwon Lee, Sungyoung Choi, Je‐Kyun Park
SJR Q1Journal of Chromatography A
Biomedical EngineeringEngineering
9
논문|인용수 131·2012
Reliable permeability assay system in a microfluidic device mimicking cerebral vasculatures
Ju Hun Yeon, Dokyun Na, Kyungsun Choi, Seung‐Wook Ryu, Chulhee Choi, Je‐Kyun Park
SJR Q2Biomedical Microdevices
NeurologyNeuroscience
10
논문|인용수 124·2012
Label-Free Cell Separation Using a Tunable Magnetophoretic Repulsion Force
Fengshan Shen, Hyundoo Hwang, Young Ki Hahn, Je‐Kyun Park
SJR Q1Analytical Chemistry

This paper describes a new label-free cell separation method using a magnetic repulsion force resulting from the magnetic susceptibility difference between cells and a paramagnetic buffer solution in a microchannel. The difference in the magnetic forces acting on different-sized cells is enhanced by adjusting the magnetic susceptibility of the surrounding medium, which depends on the concentration of paramagnetic salts, such as biocompatible gadolinium diethylenetriamine pentaacetic acid (Gd-DTP

Biomedical EngineeringEngineering
11
논문|인용수 121·2009
Three-dimensional hydrodynamic focusing with a single sheath flow in a single-layer microfluidic device
Myung Gwon Lee, Sungyoung Choi, Je‐Kyun Park
SJR Q1Lab on a Chip

We report a contraction-expansion array (CEA) microchannel that allows three-dimensional hydrodynamic focusing with a single sheath flow in a single-layer device. The CEA microchannel exploits centrifugal forces acting on fluids travelling along the contraction and expansion regions of the microchannel. Around an entrance of the contraction region, the centrifugal forces induce a secondary flow field where two counter-rotating vortices enable to envelop a sample flow with a sheath flow in three

Biomedical EngineeringEngineering
12
논문|인용수 114·2016
Pressed Paper-Based Dipstick for Detection of Foodborne Pathogens with Multistep Reactions
Juhwan Park, Joong Ho Shin, Je‐Kyun Park, Je‐Kyun Park, Je‐Kyun Park
SJR Q1Analytical Chemistry

This paper presents a pressed paper-based dipstick that enables detection of foodborne pathogens with multistep reactions by exploiting the delayed fluid flow and channel partition formation on nitrocellulose (NC) membrane. Fluid behaviors are easily modified by controlling the amount of pressure and the position of pressed region on the NC membrane. Detection region of the dipstick is optimized by controlling flow rate and delayed time based on Darcy's law. All the reagents required for assay a

Biomedical EngineeringEngineering
13
논문|인용수 103·2017
Lateral flow assay-based bacterial detection using engineered cell wall binding domains of a phage endolysin
Minsuk Kong, Joong Ho Shin, Sunggi Heu, Je‐Kyun Park, Sangryeol Ryu
SJR Q1Biosensors and Bioelectronics
EcologyEnvironmental Science
14
리뷰|인용수 100·2010
Optoelectrofluidic platforms for chemistry and biology
Hyundoo Hwang, Je‐Kyun Park
SJR Q1Lab on a Chip

Extraordinary advances in lab on a chip systems have been made on the basis of the development of micro/nanofluidics and its fusion with other technologies based on electrokinetics and optics. Optoelectrofluidic technology, which has been recently introduced as a new manipulation scheme, allows programmable manipulation of particles or fluids in microenvironments based on optically induced electrokinetics. Herein, the behaviour of particles or fluids can be controlled by inducing or perturbing e

Biomedical EngineeringEngineering
15
논문|인용수 99·2008
Sheathless Focusing of Microbeads and Blood Cells Based on Hydrophoresis
Sungyoung Choi, Seungjeong Song, Chulhee Choi, Je‐Kyun Park
SJR Q1Small

This paper presents a microfluidic device for sheathless focusing of microbeads and blood cells based on a hydrophoretic platform comprising a V-shaped obstacle array (VOA). The VOA generates lateral pressure gradients that induce helical recirculations. Following the focusing flow particles passing through the VOA are focused in the center of the channel. In the device, the focusing pattern can be modulated by varying the gap height of the VOA. To achieve complete focusing within 4.4% coefficie

Biomedical EngineeringEngineering

대표 연구 분야

Biomedical EngineeringMolecular BiologyElectrical and Electronic EngineeringAtomic and Molecular Physics, and OpticsBioengineeringSurgery

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