Regenerative strategies in facial plastic surgery increasingly incorporate platelet-rich fibrin, platelet-rich plasma, fat grafting, and emerging biologic agents. Despite widespread adoption, outcomes remain variable, in part due to limited control of upstream processes such as perfusion, extracellular matrix remodeling, and stem cell niche stability. To review the mechanistic basis and emerging clinical evidence supporting bioelectric modulation as a systems-level regulator of regenerative pathways relevant to facial rejuvenation, wound healing, and hair restoration. Bioelectric modulation represents a plausible investigational adjunct to biologic therapies in facial plastic surgery. Further studies are required to define efficacy, optimize treatment parameters, and evaluate long-term safety.
Bioelectric Modulation as a Systems-Level Adjunct to Regenerative Therapies in Facial Plastic Surgery and Hair Restoration.
TL;DR
Regenerative strategies in facial plastic surgery increasingly incorporate platelet-rich fibrin, platelet-rich plasma, fat grafting, and emerging biologic agents. Despite widespread adoption, outcomes remain variable, in part due to limited control of upstream processes such as perfusion, extracellular matrix remodeling, and stem cell niche stability. To review the mechanistic basis and emerging clinical evidence supporting bioelectric modulation as a systems-level regulator of regenerative path
Credibility Assessment
Preliminary — 38/100
Study Design
Rigor of the research methodology
5/20
Sample Size
Whether the study was sufficiently powered
7/20
Peer Review
Review status and journal reputation
10/20
Replication
Has this finding been independently reproduced?
6/20
Transparency
Funding disclosure and data availability
10/20
Overall
Sum of all five dimensions
38/100
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