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Tae-Hyun Shin

Showing results (21-30 of 31) with videos related to

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Nature Materials|February 7, 2017
Distance-dependent magnetic resonance tuning as a versatile MRI sensing platform for biological targetsJin-Sil Choi, Soojin Kim, Dongwon Yoo, et al.
Scientific Reports|May 7, 2024
Analysis on efficacy of magnetic resonance lymphangiography using INV-001 in healthy beagle dogsJi Sung Jang, Nari Kim, Mi-Hyun Kim, et al.
Nanoscale Advances|April 18, 2024
Ultrasmall Mn-doped iron oxide nanoparticles with dual hepatobiliary and renal clearances for <i>T</i><sub>1</sub> MR liver imagingSanghoon Lee, Arim Byun, Juhee Jo, et al.
Scientific Reports|February 20, 2026
Lymphatic‑specific magnetic resonance lymphangiography biomarkers for grading lymphedema in animal modelsHwayeong Cheon, Dong-Cheol Woo, Yeon Ji Chae, et al.
Angewandte Chemie (International Ed. in English)|November 27, 2014
Size-controlled construction of magnetic nanoparticle clusters using DNA-binding zinc finger proteinYiseul Ryu, Zongwen Jin, Joong-jae Lee, et al.
ACS Nano|April 24, 2014
Design considerations of iron-based nanoclusters for noninvasive tracking of mesenchymal stem cell homingXinglu Huang, Fan Zhang, Yu Wang, et al.
Nano Letters|February 3, 2018
Design of Magnetically Labeled Cells (Mag-Cells) for in Vivo Control of Stem Cell Migration and DifferentiationSeokhwan Yun, Tae-Hyun Shin, Jae-Hyun Lee, et al.
Nature Biomedical Engineering|March 9, 2021
High-resolution T<sub>1</sub> MRI via renally clearable dextran nanoparticles with an iron oxide shellTae-Hyun Shin, Pan Ki Kim, Sunghwi Kang, et al.
Nature Communications|February 10, 2019
Megahertz-wave-transmitting conducting polymer electrode for device-to-device integrationTaehoon Kim, Gwangmook Kim, Hyeohn Kim, et al.
Molecular Imaging and Biology|April 29, 2024
Comparison of the Pharmacokinetics of Gadolinium-Based and Iron Oxide-Based Contrast Agents inside the Lymphatic Structure using Magnetic Resonance LymphangiographyYeon Ji Chae, Kyung Won Kim, Mi-Hyun Kim, et al.
Pageof 4

Showing results (21-30 of 31) with videos related to

Sort By:
Pageof 4
Nature Materials|February 7, 2017
Distance-dependent magnetic resonance tuning as a versatile MRI sensing platform for biological targetsJin-Sil Choi, Soojin Kim, Dongwon Yoo, et al.
Scientific Reports|May 7, 2024
Analysis on efficacy of magnetic resonance lymphangiography using INV-001 in healthy beagle dogsJi Sung Jang, Nari Kim, Mi-Hyun Kim, et al.
Nanoscale Advances|April 18, 2024
Ultrasmall Mn-doped iron oxide nanoparticles with dual hepatobiliary and renal clearances for <i>T</i><sub>1</sub> MR liver imagingSanghoon Lee, Arim Byun, Juhee Jo, et al.
Scientific Reports|February 20, 2026
Lymphatic‑specific magnetic resonance lymphangiography biomarkers for grading lymphedema in animal modelsHwayeong Cheon, Dong-Cheol Woo, Yeon Ji Chae, et al.
Angewandte Chemie (International Ed. in English)|November 27, 2014
Size-controlled construction of magnetic nanoparticle clusters using DNA-binding zinc finger proteinYiseul Ryu, Zongwen Jin, Joong-jae Lee, et al.
ACS Nano|April 24, 2014
Design considerations of iron-based nanoclusters for noninvasive tracking of mesenchymal stem cell homingXinglu Huang, Fan Zhang, Yu Wang, et al.
Nano Letters|February 3, 2018
Design of Magnetically Labeled Cells (Mag-Cells) for in Vivo Control of Stem Cell Migration and DifferentiationSeokhwan Yun, Tae-Hyun Shin, Jae-Hyun Lee, et al.
Nature Biomedical Engineering|March 9, 2021
High-resolution T<sub>1</sub> MRI via renally clearable dextran nanoparticles with an iron oxide shellTae-Hyun Shin, Pan Ki Kim, Sunghwi Kang, et al.
Nature Communications|February 10, 2019
Megahertz-wave-transmitting conducting polymer electrode for device-to-device integrationTaehoon Kim, Gwangmook Kim, Hyeohn Kim, et al.
Molecular Imaging and Biology|April 29, 2024
Comparison of the Pharmacokinetics of Gadolinium-Based and Iron Oxide-Based Contrast Agents inside the Lymphatic Structure using Magnetic Resonance LymphangiographyYeon Ji Chae, Kyung Won Kim, Mi-Hyun Kim, et al.
Pageof 4