Follow
Joseph Woojin Song
Joseph Woojin Song
Verified email at u.northwestern.edu
Title
Cited by
Cited by
Year
Microphysiological engineering of self-assembled and perfusable microvascular beds for the production of vascularized three-dimensional human microtissues
J Paek, SE Park, Q Lu, KT Park, M Cho, JM Oh, KW Kwon, Y Yi, JW Song, ...
ACS nano 13 (7), 7627-7643, 2019
1732019
Stretchable, dynamic covalent polymers for soft, long-lived bioresorbable electronic stimulators designed to facilitate neuromuscular regeneration
YS Choi, YY Hsueh, J Koo, Q Yang, R Avila, B Hu, Z Xie, G Lee, Z Ning, ...
Nature communications 11 (1), 5990, 2020
1662020
Stretchable, multiplexed pH sensors with demonstrations on rabbit and human hearts undergoing ischemia
HJ Chung, MS Sulkin, JS Kim, C Goudeseune, HY Chao, JW Song, ...
Advanced healthcare materials 3 (1), 59-68, 2014
1492014
Bioresorbable, wireless, and battery-free system for electrotherapy and impedance sensing at wound sites
JW Song, H Ryu, W Bai, Z Xie, A Vázquez-Guardado, K Nandoliya, ...
Science Advances 9 (8), eade4687, 2023
492023
Transparent, compliant 3D mesostructures for precise evaluation of mechanical characteristics of organoids
H Ryu, Y Park, H Luan, G Dalgin, K Jeffris, HJ Yoon, TS Chung, JU Kim, ...
Advanced Materials 33 (25), 2100026, 2021
302021
High performance dual-electrolyte magnesium–iodine batteries that can harmlessly resorb in the environment or in the body
I Huang, Y Zhang, HM Arafa, S Li, A Vazquez-Guardado, W Ouyang, F Liu, ...
Energy & Environmental Science 15 (10), 4095-4108, 2022
162022
A bioinspired microfluidic model of liquid plug-induced mechanical airway injury
JW Song, J Paek, KT Park, J Seo, D Huh
Biomicrofluidics 12 (4), 2018
122018
A Miniaturized, Battery‐Free, Wireless Wound Monitor That Predicts Wound Closure Rate Early
NT Garland*, JW Song*, T Ma, YJ Kim, A Vázquez‐Guardado, ...
Advanced Healthcare Materials 12 (28), 2301280, 2023
102023
Materials and design approaches for a fully bioresorbable, electrically conductive and mechanically compliant cardiac patch Technology
H Ryu, X Wang, Z Xie, J Kim, Y Liu, W Bai, Z Song, JW Song, Z Zhao, ...
Advanced Science 10 (27), 2303429, 2023
92023
Soft robotic constrictor for in vitro modeling of dynamic tissue compression
J Paek, JW Song, E Ban, Y Morimitsu, CO Osuji, VB Shenoy, DD Huh
Scientific reports 11 (1), 16478, 2021
82021
Bioresorbable Multilayer Photonic Cavities as Temporary Implants for Tether-Free Measurements of Regional Tissue Temperatures
R HaneyChad, WS Min, A AmeerGuillermo, A RogersJohn
BME frontiers, 2021
62021
Materials and Device Designs for Wireless Monitoring of Temperature and Thermal Transport Properties of Wound Beds during Healing (Adv. Healthcare Mater. 5/2024)
H Ryu, JW Song, H Luan, Y Sim, SS Kwak, H Jang, YJ Jo, HJ Yoon, ...
Advanced Healthcare Materials 13 (5), 2470035, 2024
2024
Materials and Device Designs for Wireless Monitoring of Temperature And Thermal Transport Properties of Wound Beds During Healing
H Ryu*, JW Song*, H Luan, Y Sim, SS Kwak, H Jang, YJ Jo, HJ Yoon, ...
Advanced Healthcare Materials, 2302797, 2023
2023
Materials and Design Approaches for a Fully Bioresorbable, Electrically Conductive and Mechanically Compliant Cardiac Patch Technology (Adv. Sci. 27/2023)
H Ryu, X Wang, Z Xie, J Kim, Y Liu, W Bai, Z Song, JW Song, Z Zhao, ...
Advanced Science 10 (27), 2023
2023
3D Microstructures: Transparent, Compliant 3D Mesostructures for Precise Evaluation of Mechanical Characteristics of Organoids (Adv. Mater. 25/2021)
H Ryu, Y Park, H Luan, G Dalgin, K Jeffris, HJ Yoon, TS Chung, JU Kim, ...
Advanced Materials 33 (25), 2170196, 2021
2021
The system can't perform the operation now. Try again later.
Articles 1–15