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Doory Kim

Hanyang University · 生化学・遺伝学・分子生物学

研究室紹介

Professor Doory Kim's research lab specializes in advanced super-resolution fluorescence microscopy and correlative imaging techniques, focusing on nanoscale visualization of biomolecular structures and dynamic cellular processes. The lab develops innovative imaging protocols that integrate stochastic optical reconstruction microscopy (STORM) with electron microscopy and single-molecule spectroscopy to study cellular ultrastructure, protein dynamics, and molecular mechanisms at the nanometer scale. Key research directions include the development of correlative super-resolution and electron microscopy methods, understanding molecular reaction pathways through single-molecule spectroscopy, and applying deep learning to enhance super-resolution image analysis. The lab's work bridges biophysics, cell biology, and materials science, with applications in cancer therapeutics, platelet biology, and functional nanomaterials.

super-resolution microscopycorrelative imagingsingle-molecule spectroscopydeep learning in imagingnanoscale biology

Research Overview

Papers
59
Total Citations
1,615
Papers (5y)
31
Primary Field
生化学・遺伝学・分子生物学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
31total
2022
2023
2024
2025
2026
Citations per year (5y)
345total
20222023202420252026

Selected Papers

15
1
Article|98 citations·2015
Correlative Stochastic Optical Reconstruction Microscopy and Electron Microscopy
Doory Kim, Thomas J. Deerinck, Yaron M. Sigal, Hazen P. Babcock, Mark H. Ellisman, Xiaowei Zhuang
SJR Q1PLoS ONEOA

Correlative fluorescence light microscopy and electron microscopy allows the imaging of spatial distributions of specific biomolecules in the context of cellular ultrastructure. Recent development of super-resolution fluorescence microscopy allows the location of molecules to be determined with nanometer-scale spatial resolution. However, correlative super-resolution fluorescence microscopy and electron microscopy (EM) still remains challenging because the optimal specimen preparation and imagin

BiophysicsBiochemistry, Genetics and Molecular Biology
2
Article|67 citations·2017
Spectrally Resolved Super-Resolution Microscopy Unveils Multipath Reaction Pathways of Single Spiropyran Molecules
Doory Kim, Zhengyang Zhang, Ke Xu
SJR Q1Journal of the American Chemical Society

By recording both the images and emission spectra of thousands of single fluorescent molecules stochastically generated from the ring-opening reaction of a spiropyran, we provide mechanistic insights into its multipath reaction pathways. Through statistics of the measured single-molecule spectra, we identify two spectrally distinct isomers, presumably TTC and TTT cis-trans isomers, for the open-ring merocyanine product, and discover a strong solvent polarity-dependence for the relative populatio

Materials ChemistryMaterials Science
3
Review|65 citations·2021
Recent Developments in Lanthanide-Doped Alkaline Earth Aluminate Phosphors with Enhanced and Long-Persistent Luminescence
Doory Kim
SJR Q1NanomaterialsOA

Lanthanide-activated alkaline earth aluminate phosphors are excellent luminescent materials that are designed to overcome the limitations of conventional sulfide-based phosphors. The increasing research attention on these phosphors over the past decade has led to a drastic improvement in their phosphorescence efficiencies and resulted in a wide variety of phosphorescence colors, which can facilitate applications in various areas. This review article discusses the development of lanthanide-activa

Materials ChemistryMaterials Science
4
Article|59 citations·2022
Visualizing extracellular vesicle biogenesis in gram-positive bacteria using super-resolution microscopy
Dokyung Jeong, Minjeong Kim, Yejin Park, Jinkyoung Chung, Hee‐Seok Kweon, Nae‐Gyu Kang, Seung Jin Hwang, Sung Hun Youn, Bo Kyoung Hwang, Doory Kim
SJR Q1BMC BiologyOA

BACKGROUND: Recently, bacterial extracellular vesicles (EVs) have been considered to play crucial roles in various biological processes and have great potential for developing cancer therapeutics and biomedicine. However, studies on bacterial EVs have mainly focused on outer membrane vesicles released from gram-negative bacteria since the outermost peptidoglycan layer in gram-positive bacteria is thought to preclude the release of EVs as a physical barrier. RESULTS: Here, we examined the ultrast

MicrobiologyImmunology and Microbiology
5
Article|49 citations·2021
Super-resolution imaging of platelet-activation process and its quantitative analysis
Jinkyoung Chung, Dokyung Jeong, Geun-ho Kim, Seokran Go, Jaewoo Song, Eunyoung Moon, Yang Hoon Huh, Doory Kim
SJR Q1Scientific ReportsOA

Understanding the platelet activation molecular pathways by characterizing specific protein clusters within platelets is essential to identify the platelet activation state and improve the existing therapies for hemostatic disorders. Here, we employed various state-of-the-art super-resolution imaging and quantification methods to characterize the platelet spatiotemporal ultrastructural change during the activation process due to phorbol 12-myristate 13-acetate (PMA) stimuli by observing the cyto

BiophysicsBiochemistry, Genetics and Molecular Biology
6
Review|34 citations·2022
Development of Deep-Learning-Based Single-Molecule Localization Image Analysis
Yoonsuk Hyun, Doory Kim
SJR Q1International Journal of Molecular SciencesOA

Recent developments in super-resolution fluorescence microscopic techniques (SRM) have allowed for nanoscale imaging that greatly facilitates our understanding of nanostructures. However, the performance of single-molecule localization microscopy (SMLM) is significantly restricted by the image analysis method, as the final super-resolution image is reconstructed from identified localizations through computational analysis. With recent advancements in deep learning, many researchers have employed

BiophysicsBiochemistry, Genetics and Molecular Biology
7
Review|31 citations·2022
Recent Developments in Correlative Super-Resolution Fluorescence Microscopy and Electron Microscopy
Dokyung Jeong, Doory Kim
SJR Q1Molecules and CellsOA

The recently developed correlative super-resolution fluorescence microscopy (SRM) and electron microscopy (EM) is a hybrid technique that simultaneously obtains the spatial locations of specific molecules with SRM and the context of the cellular ultrastructure by EM. Although the combination of SRM and EM remains challenging owing to the incompatibility of samples prepared for these techniques, the increasing research attention on these methods has led to drastic improvements in their performanc

BiophysicsBiochemistry, Genetics and Molecular Biology
8
Review|31 citations·2020
Direct Visualization of Actin Filaments and Actin-Binding Proteins in Neuronal Cells
Minkyo Jung, Doory Kim, Ji Young Mun
SJR Q1Frontiers in Cell and Developmental BiologyOA

Actin networks and actin-binding proteins (ABPs) are most abundant in the cytoskeleton of neurons. The function of ABPs in neurons is nucleation of actin polymerization, polymerization or depolymerization regulation, bundling of actin through crosslinking or stabilization, cargo movement along actin filaments, and anchoring of actin to other cellular components. In axons, ABP-actin interaction forms a dynamic, deep actin network, which regulates axon extension, guidance, axon branches, and synap

BiophysicsBiochemistry, Genetics and Molecular Biology
9
Review|27 citations·2023
Recent development of computational cluster analysis methods for single-molecule localization microscopy images
Yoonsuk Hyun, Doory Kim
SJR Q1Computational and Structural Biotechnology JournalOA

With the development of super-resolution imaging techniques, it is crucial to understand protein structure at the nanoscale in terms of clustering and organization in a cell. However, cluster analysis from single-molecule localization microscopy (SMLM) images remains challenging because the classical computational cluster analysis methods developed for conventional microscopy images do not apply to pointillism SMLM data, necessitating the development of distinct methods for cluster analysis from

BiophysicsBiochemistry, Genetics and Molecular Biology
10
Article|26 citations·2021
Super-resolution imaging reveals cytoskeleton-dependent organelle rearrangement within platelets at intermediate stages of maturation
Seokran Go, Dokyung Jeong, Jinkyoung Chung, Geun-ho Kim, Jaewoo Song, Eunyoung Moon, Yang Hoon Huh, Doory Kim
SJR Q1StructureOA
HematologyMedicine
11
Article|24 citations·2021
Development of a New Approach for Low-Laser-Power Super-Resolution Fluorescence Imaging
Jinkyoung Chung, Uidon Jeong, Dokyung Jeong, Seokran Go, Doory Kim
SJR Q1Analytical Chemistry

The development of super-resolution fluorescence microscopy over the past decade has drastically improved the resolution of light microscopy to ∼10 nm. Stochastic optical reconstruction microscopy (STORM) can be used to achieve subdiffraction-limit resolution by sequentially imaging and localizing individual fluorophores. In principle, the super-resolution of STORM can be obtained by high-accuracy localization of photoswitchable fluorophores, which require fast photoswitching and bright fluoresc

BiophysicsBiochemistry, Genetics and Molecular Biology
12
Article|21 citations·2022
Super-Resolution Fluorescence Imaging for Semiconductor Nanoscale Metrology and Inspection
Duyen Thi Nguyen, Seohyun Mun, Hyunbum Park, Uidon Jeong, Geun‐ho Kim, Seongsil Lee, Chung-Sam Jun, Myung Mo Sung, Doory Kim
SJR Q1Nano Letters

The increase in the number and complexity of process levels in semiconductor production has driven the need for the development of new measurement methods that can evaluate semiconductor devices at the critical dimensions of fine patterns and simultaneously inspect nanoscale contaminants or defects. However, conventional optical inspection methods often fail to resolve device patterns or defects at the level of tens of nanometers required for device development owing to their diffraction-limited

Biomedical EngineeringEngineering
13
Article|21 citations·2022
Super‐resolution fluorescence microscopy‐based single‐molecule spectroscopy
Dokyung Jeong, Doory Kim
SJR Q2Bulletin of the Korean Chemical Society

Abstract The rise of super‐resolution fluorescence microscopy (SRM) has revolutionized our understanding of the nanoscale world. SRM has recently been correlated with spectroscopy techniques to obtain rich spectral information of individual molecules in addition to localization information. This technique ultimately provides multidimensional and functional information of single molecules, which is generally masked in the ensemble averages of previous bulk measurements and creates exciting new op

BiophysicsBiochemistry, Genetics and Molecular Biology
14
Article|20 citations·2022
Polarity Nano-Mapping of Polymer Film Using Spectrally Resolved Super-Resolution Imaging
Yejin Park, Dokyung Jeong, Uidon Jeong, Hyunbum Park, Sung‐Min Yoon, Minjae Kang, Doory Kim
SJR Q1ACS Applied Materials & Interfaces

With the rapid development of the nanofabrication of polymer materials, the local measurement of the chemical properties of polymer nanostructures has become crucial because they can be highly heterogeneous at the nanoscale. We developed a spectroscopic imaging approach to characterize the nanoscale local polarity of polymer films via spectrally resolved super-resolution microscopy. We demonstrate the capability of the recently developed single-molecule sensing and imaging method to probe the po

BiophysicsBiochemistry, Genetics and Molecular Biology
15
Article|18 citations·2016
Effect of Composition and Impurities on the Phosphorescence of Green-Emitting Alkaline Earth Aluminate Phosphor
Doory Kim, Han-Eol Kim, Chang‐Hong Kim
SJR Q1PLoS ONEOA

Recent improvements to SrAl2O4:Eu2+, Dy3+ phosphors have enabled the use of luminescent hosts with a stable crystal structure and high physical and chemical stability, thus overcoming the bottleneck in the applicability of ZnS:Cu phosphors. However, enhancement of afterglow lifetime and brightness in SrAl2O4:Eu2+, Dy3+ phosphors remains a challenging task. Here, we have improved the afterglow characteristics in terms of persistence time and brightness by a systematic investigation of the composi

Materials ChemistryMaterials Science

Research Areas

BiophysicsMolecular BiologyMaterials ChemistryMicrobiologyPublic Health, Environmental and Occupational HealthComputational Theory and Mathematics

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