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Plos One|May 14, 2024
Delivering biochemicals with precision using bioelectronic devices enhanced with feedback controlGiovanny Marquez, Harika Dechiraju, Prabhat Baniya, et al.
Biomedical Materials & Devices (New York, N.Y.)|July 28, 2025
Bioelectronic Delivery of Potassium Ions Controls Membrane Voltage and Growth Dynamics in Bacteria BiofilmsHarika Dechiraju, Yixiang Li, Colin Comerci, et al.
Bioengineering (Basel, Switzerland)|July 29, 2025
Controlling Cell Migratory Patterns Under an Electric Field Regulated by a Neural Network-Based Feedback ControllerGiovanny Marquez, Mohammad Jafari, Manasa Kesapragada, et al.
Bioengineering (Basel, Switzerland)|July 29, 2025
Accelerating Wound Healing Through Deep Reinforcement Learning: A Data-Driven Approach to Optimal TreatmentFan Lu, Ksenia Zlobina, Prabhat Baniya, et al.
Npj Biomedical Innovations|April 24, 2026
A multi therapy bioelectronic wound dressingKaelan Schorger, Hsin-Ya Yang, Sujung Kim, 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.
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.
Wound Repair and Regeneration : Official Publication of the Wound Healing Society [And] the European Tissue Repair Society|May 25, 2024
A pro-reparative bioelectronic device for controlled delivery of ions and biomoleculesNarges Asefifeyzabadi, Tiffany Nguyen, Houpu Li, et al.
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