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Jun Hee Choi

Showing results (1-10 of 43) with videos related to

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Nanotechnology|October 1, 2015
A measurement of the maximal forces in plasmonic tweezersJung-Dae Kim, Jun-Hee Choi, Yong-Gu Lee
Cells|January 8, 2025
Immature Skeletal Myotubes Are an Effective Source for Improving the Terminal Differentiation of Skeletal MuscleSeung Yeon Jeong, Jun Hee Choi, Paul D Allen, et al.
Biomolecules|August 27, 2021
Pathological Mechanism of a Constitutively Active Form of Stromal Interaction Molecule 1 in Skeletal MuscleJi Hee Park, Seung Yeon Jeong, Jun Hee Choi, et al.
Small (Weinheim an Der Bergstrasse, Germany)|June 12, 2025
Polyethylene Glycol Nanofiller for Robust Lyophilization of Graphically Encoded Hydrogel MicroparticlesWookyoung Jang, Ji Won Byun, Jun Hee Choi, et al.
Analytical Chemistry|April 25, 2024
Real-Time Signal Analysis with Wider Dynamic Range and Enhanced Sensitivity in Multiplex Colorimetric Immunoassays Using Encoded Hydrogel MicroparticlesYong Jun Lim, Jun Hee Choi, Seok Joon Mun, et al.
ACS Sensors|July 25, 2023
Highly Flexible Deep-Learning-Based Automatic Analysis for Graphically Encoded Hydrogel MicroparticlesJun Hee Choi, Wookyoung Jang, Yong Jun Lim, et al.
American Journal of Physiology. Cell Physiology|November 14, 2022
Tripartite motif-containing protein 32 regulates Ca<sup>2+</sup> movement in skeletal muscleJun Hee Choi, Seung Yeon Jeong, Jooho Kim, et al.
RSC Advances|August 14, 2024
Air-through-precursor suction-augmented replica molding for fabrication of anisotropic microparticles in gas-impermeable moldsSeok Joon Mun, Wookyoung Jang, Jun Hee Choi, et al.
Cells|August 26, 2023
Tripartite Motif-Containing Protein 32 (TRIM32): What Does It Do for Skeletal Muscle?Seung Yeon Jeong, Jun Hee Choi, Jooho Kim, et al.
Physical Chemistry Chemical Physics : PCCP|July 30, 2014
Electrical percolation characteristics of metallic single-walled carbon nanotube networks by vacancy evolutionDo-Hyun Kim, Jun Eon Jin, Mingxing Piao, et al.
Pageof 5

Showing results (1-10 of 43) with videos related to

Sort By:
Pageof 5
Nanotechnology|October 1, 2015
A measurement of the maximal forces in plasmonic tweezersJung-Dae Kim, Jun-Hee Choi, Yong-Gu Lee
Cells|January 8, 2025
Immature Skeletal Myotubes Are an Effective Source for Improving the Terminal Differentiation of Skeletal MuscleSeung Yeon Jeong, Jun Hee Choi, Paul D Allen, et al.
Biomolecules|August 27, 2021
Pathological Mechanism of a Constitutively Active Form of Stromal Interaction Molecule 1 in Skeletal MuscleJi Hee Park, Seung Yeon Jeong, Jun Hee Choi, et al.
Small (Weinheim an Der Bergstrasse, Germany)|June 12, 2025
Polyethylene Glycol Nanofiller for Robust Lyophilization of Graphically Encoded Hydrogel MicroparticlesWookyoung Jang, Ji Won Byun, Jun Hee Choi, et al.
Analytical Chemistry|April 25, 2024
Real-Time Signal Analysis with Wider Dynamic Range and Enhanced Sensitivity in Multiplex Colorimetric Immunoassays Using Encoded Hydrogel MicroparticlesYong Jun Lim, Jun Hee Choi, Seok Joon Mun, et al.
ACS Sensors|July 25, 2023
Highly Flexible Deep-Learning-Based Automatic Analysis for Graphically Encoded Hydrogel MicroparticlesJun Hee Choi, Wookyoung Jang, Yong Jun Lim, et al.
American Journal of Physiology. Cell Physiology|November 14, 2022
Tripartite motif-containing protein 32 regulates Ca<sup>2+</sup> movement in skeletal muscleJun Hee Choi, Seung Yeon Jeong, Jooho Kim, et al.
RSC Advances|August 14, 2024
Air-through-precursor suction-augmented replica molding for fabrication of anisotropic microparticles in gas-impermeable moldsSeok Joon Mun, Wookyoung Jang, Jun Hee Choi, et al.
Cells|August 26, 2023
Tripartite Motif-Containing Protein 32 (TRIM32): What Does It Do for Skeletal Muscle?Seung Yeon Jeong, Jun Hee Choi, Jooho Kim, et al.
Physical Chemistry Chemical Physics : PCCP|July 30, 2014
Electrical percolation characteristics of metallic single-walled carbon nanotube networks by vacancy evolutionDo-Hyun Kim, Jun Eon Jin, Mingxing Piao, et al.
Pageof 5