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Jeonghun Park

Korea Advanced Institute of Science and Technology · Engineering

About the Lab

Professor Jeonghun Park's research lab specializes in advanced optical technologies for imaging and manipulating light through highly scattering biological tissues and complex media. The lab focuses on wavefront shaping, polarization control, and wavelength-dependent focusing using turbid media as dynamic optical elements, enabling non-invasive, high-resolution in vivo imaging and potential clinical applications. Key research directions include exploiting the optical properties of disordered materials and developing novel wavefront engineering techniques for biomedical diagnostics and therapeutic applications.

wavefront shapingoptical imaging through turbid mediapolarization controlturbid media opticsnon-invasive imaging

Research Overview

Papers
400
Total Citations
5,551
Papers (5y)
83
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
83total
2022
2023
2024
2025
2026
Citations per year (5y)
561total
20222023202420252026

Selected Papers

15
1
Article|188 citations·2013
Subwavelength light focusing using random nanoparticles
Jung‐Hoon Park, Chunghyun Park, Hyeonseung Yu, Jimin Park, Seungyong Han, Jonghwa Shin, Seung Hwan Ko, Ki Tae Nam, Yong‐Hoon Cho, YongKeun Park, Yong‐Hoon Cho, YongKeun Park
SJR Q1Nature Photonics
Acoustics and UltrasonicsPhysics and Astronomy
2
Article|165 citations·2015
High-resolution in vivo imaging of mouse brain through the intact skull
Jung‐Hoon Park, Wei Sun, Meng Cui
SJR Q1Proceedings of the National Academy of SciencesOA

Multiphoton microscopy is the current method of choice for in vivo deep-tissue imaging. The long laser wavelength suffers less scattering, and the 3D-confined excitation permits the use of scattered signal light. However, the imaging depth is still limited because of the complex refractive index distribution of biological tissue, which scrambles the incident light and destroys the optical focus needed for high resolution imaging. Here, we demonstrate a wavefront-shaping scheme that allows clear

BiophysicsBiochemistry, Genetics and Molecular Biology
3
Article|125 citations·2017
Large-field-of-view imaging by multi-pupil adaptive optics
Jung‐Hoon Park, Lingjie Kong, Yifeng Zhou, Meng Cui
SJR Q1Nature Methods
BiophysicsBiochemistry, Genetics and Molecular Biology
4
Article|89 citations·2012
Dynamic active wave plate using random nanoparticles
Jung‐Hoon Park, Chunghyun Park, Hyunseung Yu, Yong‐Hoon Cho, YongKeun Park
SJR Q1Optics ExpressOA

Current non-invasive imaging and manipulation of biological systems heavily rely on using light as the probing tool. However, light propagation through highly turbid media such as biological tissue undergo multiple light scattering which results in significant scrambling of light paths and polarization information. Here we demonstrate the full control of polarization dependent light paths through a highly scattering medium by only shaping the incoming wavefront. The resulting polarized state is

Acoustics and UltrasonicsPhysics and Astronomy
5
Article|87 citations·2018
Perspective: Wavefront shaping techniques for controlling multiple light scattering in biological tissues: Toward in vivo applications
Jung‐Hoon Park, Zhipeng Yu, KyeoReh Lee, Puxiang Lai, YongKeun Park
SJR Q1APL PhotonicsOA

Multiple light scattering has been regarded as a barrier in imaging through complex media such as biological tissues. Owing to recent advances in wavefront shaping techniques, optical imaging through intact biological tissues without invasive procedures can now be used for direct experimental studies, presenting promising application opportunities in in vivo imaging and diagnosis. Although most of the recent proof of principle breakthroughs have been achieved in the laboratory setting with speci

Acoustics and UltrasonicsPhysics and Astronomy
6
Article|85 citations·2012
Active spectral filtering through turbid media
Jung‐Hoon Park, Chunghyun Park, Hyunseung Yu, Yong‐Hoon Cho, YongKeun Park
SJR Q1Optics Letters

We demonstrate controlled wavelength-dependent light focusing through turbid media using wavefront shaping. Due to the dispersion caused by multiple light scattering, light propagation through turbid media can be independently controlled between different wavelengths. Foci with various wavelengths can be generated by applying different optimized wavefronts to a highly scattering layer. Given the linearity of the transmission matrix, multiple foci with different wavelengths can also be simultaneo

Acoustics and UltrasonicsPhysics and Astronomy
7
Article|71 citations·2016
Impact of nanostructured anode on low-temperature performance of thin-film-based anode-supported solid oxide fuel cells
Jung Hoon Park, Seung Min Han, Kyung Joong Yoon, Hyoungchul Kim, Jongsup Hong, Byung-Kook Kim, Jong‐Ho Lee, Ji‐Won Son
SJR Q1Journal of Power Sources
Materials ChemistryMaterials Science
8
Article|64 citations·2019
Study on CO2 absorption performance of lab-scale ceramic hollow fiber membrane contactor by gas/liquid flow direction and module design
Hong Joo Lee, Yu Gang Park, Min Kwang Kim, Seung Hwan Lee, Jung Hoon Park
SJR Q1Separation and Purification Technology
Mechanical EngineeringEngineering
9
Article|57 citations·2015
Preparation, characterization and laboratory-scale application of modified hydrophobic aluminum oxide hollow fiber membrane for CO2 capture using H2O as low-cost absorbent
Hong Joo Lee, Edoardo Magnone, Jung Hoon Park
SJR Q1Journal of Membrane Science
Mechanical EngineeringEngineering
10
Article|49 citations·2016
Effect of hydrophobic modification on carbon dioxide absorption using porous alumina (Al2O3) hollow fiber membrane contactor
Hong Joo Lee, Jung Hoon Park
SJR Q1Journal of Membrane Science
Mechanical EngineeringEngineering
11
Review|47 citations·2019
Disordered Optics: Exploiting Multiple Light Scattering and Wavefront Shaping for Nonconventional Optical Elements
Jung‐Hoon Park, Jung‐Hoon Park, Jongchan Park, Jongchan Park, KyeoReh Lee, YongKeun Park
SJR Q1Advanced Materials

Advances in diverse areas such as inspection, imaging, manufacturing, telecommunications, and information processing have been stimulated by novel optical devices. Conventional material ingredients for these devices are typically made of homogeneous refractive or diffractive materials and require sophisticated design and fabrication, which results in practical limitations related to their form and functional figures of merit. To overcome such limitations, recent developments in the application o

Acoustics and UltrasonicsPhysics and Astronomy
12
Article|44 citations·2020
Recent Advances in Non-Traditional Elastic Wave Manipulation by Macroscopic Artificial Structures
Jeong‐Hoon Park, Dongwoo Lee, Junsuk Rho
SJR Q2Applied SciencesOA

Metamaterials are composed of arrays of subwavelength-sized artificial structures; these architectures give rise to novel characteristics that can be exploited to manipulate electromagnetic waves and acoustic waves. They have been also used to manipulate elastic waves, but such waves have a coupling property, so metamaterials for elastic waves uses a different method than for electromagnetic and acoustic waves. Since researches on this type of metamaterials is sparse, this paper reviews studies

Biomedical EngineeringEngineering
13
Article|42 citations·2011
Relationship between microstructure and hydrogen permeation properties in the multiphase Ni21Ti23Nb56 alloy membranes
Edoardo Magnone, Sung Il Jeon, Jung Hoon Park, Éric Fleury
SJR Q1Journal of Membrane Science
Mechanical EngineeringEngineering
14
Article|41 citations·2021
A performance comparison study of five single and sixteen blended amine absorbents for CO2 capture using ceramic hollow fiber membrane contactors
Edoardo Magnone, Hong Joo Lee, Min Chang Shin, Jung Hoon Park
SJR Q1Journal of Industrial and Engineering Chemistry
Mechanical EngineeringEngineering
15
Article|39 citations·2015
Differential dosimetric benefit of proton beam therapy over intensity modulated radiotherapy for a variety of targets in patients with intracranial germ cell tumors
Jeong‐Hoon Park, Younghee Park, Sung Uk Lee, Taeyoon Kim, Yun-Kyung Choi, Joo‐Young Kim
SJR Q1Radiation OncologyOA

PSPT and SSPT provide superior target volume coverage and saved more normal tissue compared with IMRT for ICGCTs in various locations. Future studies should assess whether the extent of normal tissue saved has clinical benefits in children with ICGCTs.

GeneticsMedicine

Research Areas

Materials ChemistryMechanical EngineeringElectrical and Electronic EngineeringRadiationAcoustics and UltrasonicsBiomedical Engineering

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