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Wound Repair and Regeneration : Official Publication of the Wound Healing Society [And] the European Tissue Repair Society|March 26, 2026
A Flow Cytometry Workflow for Identifying Myeloid Subsets in Porcine Wound TissueShannon M Clayton, Craig Collins, Hsin-Ya Yang, et al.Scientific Data|October 10, 2025
A high-resolution temporal transcriptomic and imaging dataset of porcine wound healingKsenia Zlobina, Hsin-Ya Yang, Manasa Kesapragada, et al.JID Innovations : Skin Science From Molecules to Population Health|March 19, 2026
Characterization of cutaneous wound healing in swineHsin-Ya Yang, Kan Zhu, Anthony Gallegos, et al.Npj Biomedical Innovations|April 24, 2026
A multi therapy bioelectronic wound dressingKaelan Schorger, Hsin-Ya Yang, Sujung Kim, et al.Stem Cells Translational Medicine|July 29, 2020
Combination product of dermal matrix, human mesenchymal stem cells, and timolol promotes diabetic wound healing in miceHsin-Ya Yang, Fernando Fierro, Michelle So, et al.Scientific Reports|September 7, 2023
A system for bioelectronic delivery of treatment directed toward wound healingPrabhat Baniya, Maryam Tebyani, Narges Asefifeyzabadi, et al.Communications Biology|July 5, 2025
A modular fluorescent camera unit for wound imagingMaryam Tebyani, Gordon Keller, Wan Shen Hee, et al.Scientific Reports|November 7, 2025
Development of a wireless bioelectronic actuator for wound healing in a porcine modelPrabhat Baniya, Maryam Tebyani, Wan Shen Hee, et al.Journal of Biomedical Materials Research. Part B, Applied Biomaterials|January 31, 2022
Combination product of dermal matrix, preconditioned human mesenchymal stem cells and timolol promotes wound healing in the porcine wound modelHsin-Ya Yang, Fernando Fierro, Daniel J Yoon, et al.Plos One|June 14, 2024
A bioelectronic device for electric field treatment of wounds reduces inflammation in an in vivo mouse modelCristian O Hernandez, Hao-Chieh Hsieh, Kan Zhu, et al.Pageof 4