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Jaeseok Park

Sungkyunkwan University · 医学

研究室紹介

Professor Jaeseok Park's research lab specializes in advancing magnetic resonance imaging (MRI) techniques, with a focus on improving image contrast, spatial resolution, and scan efficiency. The lab develops innovative sequences—such as black-blood 3D turbo spin-echo and contrast-enhanced T1-weighted imaging—to enhance the detection of small brain metastases and coronary anatomy. Key innovations include optimizing parallel imaging methods like GRAPPA for accelerated imaging and addressing challenges in fat suppression and steady-state free precession (SSFP) for cardiac and vascular MRI. The lab’s work bridges clinical needs with technical advancements to enable high-precision, fast, and artifact-resistant MRI.

MRI sequence developmentparallel imagingblack-blood imagingcoronary MRAT1-weighted contrast

Research Overview

Papers
125
Total Citations
1,273
Papers (5y)
38
Primary Field
医学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
38total
2022
2023
2024
2025
2026
Citations per year (5y)
37total
20222023202420252026

Selected Papers

15
1
Article|75 citations·2007
Optimized T1‐weighted contrast for single‐slab 3D turbo spin‐echo imaging with long echo trains: Application to whole‐brain imaging
Jaeseok Park, John P. Mugler, Wilhelm Horger, Berthold Kiefer
SJR Q1Magnetic Resonance in Medicine

T(1)-weighted contrast is conventionally obtained using multislice two-dimensional (2D) spin-echo (SE) imaging. Achieving isotropic, high spatial resolution is problematic with conventional methods due to a long acquisition time, imperfect slice profiles, or high-energy deposition. Single-slab 3D SE imaging was recently developed employing long echo trains with variable low flip angles to address these problems. However, long echo trains may yield suboptimal T(1)-weighted contrast, since T(2) we

Radiology, Nuclear Medicine and ImagingMedicine
2
Article|69 citations·2004
Artifact and noise suppression in GRAPPA imaging using improved k‐space coil calibration and variable density sampling
Jaeseok Park, Qiang Zhang, Vladimı́r Jellús̆, Orlando P. Simonetti, Debiao Li
SJR Q1Magnetic Resonance in Medicine

A parallel imaging technique, GRAPPA (GeneRalized Auto-calibrating Partially Parallel Acquisitions), has been used to improve temporal or spatial resolution. Coil calibration in GRAPPA is performed in central k-space by fitting a target signal using its adjacent signals. Missing signals in outer k-space are reconstructed. However, coil calibration operates with signals that exhibit large amplitude variation while reconstruction is performed using signals with small amplitude variation. Different

Radiology, Nuclear Medicine and ImagingMedicine
3
Article|59 citations·2010
Contrast-enhanced, three-dimensional, whole-brain, black-blood imaging: Application to small brain metastases
Jaeseok Park, Eung Yeop Kim
SJR Q1Magnetic Resonance in MedicineOA

Contrast-enhanced three-dimensional T(1)-weighted imaging based on magnetization-prepared rapid-gradient recalled echo is widely used for detecting small brain metastases. However, since contrast materials remain in both blood and the tumor parenchyma and thus increase the signal intensity of both regions, it is often challenging to distinguish brain tumors from blood. In this work, we develop a T(1)-weighted, black-blood version of single-slab three-dimensional turbo/fast spin echo whole-brain

Radiology, Nuclear Medicine and ImagingMedicine
4
Article|53 citations·2011
Detection of Small Metastatic Brain Tumors
Jaeseok Park, Jinna Kim, Eunhye Yoo, Hyunyeol Lee, Jong Hee Chang, Eung Yeop Kim
SJR Q1Investigative Radiology

Compared with conventional MP-RAGE, the proposed CE BB-ssTSE imaging, which enhances tumors while selectively suppressing blood vessels, leads to significantly better detection of small metastatic brain tumors <5 mm.

Pulmonary and Respiratory MedicineMedicine
5
Article|30 citations·2005
4D radial coronary artery imaging within a single breath‐hold: Cine angiography with phase‐sensitive fat suppression (CAPS)
Jaeseok Park, Andrew C. Larson, Qiang Zhang, Orlando P. Simonetti, Debiao Li
SJR Q1Magnetic Resonance in Medicine

Coronary artery data acquisition with steady-state free precession (SSFP) is typically performed in a single frame in mid-diastole with a spectrally selective pulse to suppress epicardial fat signal. Data are acquired while the signal approaches steady state, which may lead to artifacts from the SSFP transient response. To avoid sensitivity to cardiac motion, an accurate trigger delay and data acquisition window must be determined. Cine data acquisition is an alternative approach for resolving t

Radiology, Nuclear Medicine and ImagingMedicine
6
Article|24 citations·2012
Correlation of metallurgical analysis & higher harmonic ultrasound response for long term isothermally aged and crept FM steel for USC TPP turbine rotors
Jaeseok Park, Minsu Kim, Byungha Chi, Changheui Jang
SJR Q1NDT & E International
Mechanical EngineeringEngineering
7
Article|20 citations·2004
Feasibility and performance of breath‐hold 3D true‐FISP coronary MRA using self‐calibrating parallel acquisition
Jaeseok Park, Richard McCarthy, Debiao Li
SJR Q1Magnetic Resonance in MedicineOA

Spatial resolution in 3D breath-hold coronary MR angiography (MRA) is limited by imaging time. The purpose of this work was to investigate the feasibility of improving the spatial resolution of coronary MRA using generalized autocalibrating partially parallel acquisition (GRAPPA) and fast imaging with steady state precession (True-FISP) data acquisition. Coronary data were acquired in 10 healthy volunteers. In five volunteers, the data were fully acquired in k-space and decimated for GRAPPA with

Radiology, Nuclear Medicine and ImagingMedicine
8
Article|18 citations·2017
R2-TSV: A Repairable and Reliable TSV Set Structure Reutilizing Redundancies
Jaeseok Park, Minho Cheong, Sungho Kang
SJR Q1IEEE Transactions on Reliability

Recently, three-dimensional integrated circuit (3-D IC) design has attracted much attention, and the reliability of these systems has become increasingly important. In this paper, a new repairable and reliable through-silicon via (TSV) set structure is proposed. This proposed TSV set structure can be applied to the previous TSV repair structures which require TSV redundancies, and detects a defect or error reutilizing residual TSV redundancies for high reliability of 3-D ICs. Both online test an

Electrical and Electronic EngineeringEngineering
9
Article|16 citations·2009
Reduction of B1 sensitivity in selective single‐slab 3d turbo spin echo imaging with very long echo trains
Jaeseok Park, John P. Mugler, Timothy Hughes
SJR Q1Magnetic Resonance in MedicineOA

Single-slab 3D turbo/fast spin echo (SE) imaging with very long echo trains was recently introduced with slab selection using a highly selective excitation pulse and short, nonselective refocusing pulses with variable flip angles for high imaging efficiency. This technique, however, is vulnerable to image degradation in the presence of spatially varying B(1) amplitudes. In this work we develop a B(1) inhomogeneity-reduced version of single-slab 3D turbo/fast SE imaging based on the hypothesis th

Radiology, Nuclear Medicine and ImagingMedicine
10
Article|16 citations·2020
Rapid three‐dimensional steady‐state chemical exchange saturation transfer magnetic resonance imaging
Hoonjae Lee, Seung Hong Choi, Chul‐Ho Sohn, Seong‐Gi Kim, Joonyeol Lee, Jaeseok Park
SJR Q1Magnetic Resonance in Medicine

PURPOSE: To make clinically feasible whole-brain chemical exchange saturation transfer (CEST) magnetic resonance imaging (MRI) by enhancing imaging efficiency. METHODS: A novel, whole-brain three-dimensional (3D) steady-state CEST MRI method was introduced by utilizing a time-efficient, fat-suppressed excitation followed by rapid, segmented 3D echo-planar-imaging with incoherent undersampling in k-ω space. Missing signals and CEST-specific spectral images were then jointly estimated directly fro

Materials ChemistryMaterials Science
11
Article|15 citations·2011
Adaptive self‐calibrating iterative GRAPPA reconstruction
Suhyung Park, Jaeseok Park
SJR Q1Magnetic Resonance in Medicine

Parallel magnetic resonance imaging in k-space such as generalized auto-calibrating partially parallel acquisition exploits spatial correlation among neighboring signals over multiple coils in calibration to estimate missing signals in reconstruction. It is often challenging to achieve accurate calibration information due to data corruption with noises and spatially varying correlation. The purpose of this work is to address these problems simultaneously by developing a new, adaptive iterative g

Radiology, Nuclear Medicine and ImagingMedicine
12
Article|14 citations·2012
Integration of dual channel timing formatter system for high speed memory test equipment
Jaeseok Park, Ingeol Lee, Young-Seok Park, Sung-Geun Kim, Kyung Ho Ryu, Dong‐Hoon Jung, Kangwook Jo, Choong Keun Lee, Hongil Yoon, Seong‐Ook Jung, Woo‐Young Choi, Sungho Kang

This paper proposes a dual channel timing formatter system for high speed memory test equipment. The proposed architecture supports 256 kinds of waveform with 20ps timing resolution. Moreover, timing problem is reduced because a timing generator is embedded.

Hardware and ArchitectureComputer Science
13
Article|13 citations·2018
A leak detection and 3D source localization method on a plant piping system by using multiple cameras
Se-Oh Kim, Jaeseok Park, Jae-Seok Park, Jong Won Park, Jong Won Park
SJR Q2Nuclear Engineering and TechnologyOA

To reduce the secondary damage caused by leakage accidents in plant piping systems, a constant surveillance system is necessary. To ensure leaks are promptly addressed, the surveillance system should be able to detect not only the leak itself, but also the location of the leak. Recently, research to develop new methods has been conducted using cameras to detect leakage and to estimate the location of leakage. However, existing methods solely estimate whether a leak exists or not, or only provide

Industrial and Manufacturing EngineeringEngineering
14
Article|13 citations·2016
SMS‐HSL: Simultaneous multislice aliasing separation exploiting hankel subspace learning
Suhyung Park, Jaeseok Park
SJR Q1Magnetic Resonance in MedicineOA

PURPOSE: To develop a novel, simultaneous multislice reconstruction method that exploits Hankel subspace learning (SMS-HSL) for aliasing separation in the slice direction. METHODS: An SMS signal model with the Hankel-structured matrix was proposed. To efficiently suppress interslice leakage artifacts from a signal subspace perspective, a null space was learned from the reference data combined over all slices other than a slice of interest using singular value decomposition. Given the fact that t

Radiology, Nuclear Medicine and ImagingMedicine
15
Article|12 citations·2005
High‐resolution steady‐state free precession coronary magnetic resonance angiography within a breath‐hold: Parallel imaging with extended cardiac data acquisition
Jaeseok Park, Andrew C. Larson, Qiang Zhang, Orlando P. Simonetti, Debiao Li
SJR Q1Magnetic Resonance in MedicineOA

Coronary artery imaging data are conventionally acquired in a single imaging frame during mid-diastole. The data acquisition window must be sufficiently short to avoid cardiac motion artifacts. A short data acquisition window results in decreased imaging efficiency and limited spatial resolution. Parallel imaging may lessen these limitations, but requires highly accurate coil sensitivity. The purpose of this work was to increase the imaging efficiency and spatial resolution in coronary artery im

Radiology, Nuclear Medicine and ImagingMedicine

Research Areas

Radiology, Nuclear Medicine and ImagingHardware and ArchitectureElectrical and Electronic EngineeringMaterials ChemistryBiomedical EngineeringPulmonary and Respiratory Medicine

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