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The Journal of Investigative Dermatology|November 29, 2014
Electrical stimulation enhances epidermal proliferation in human cutaneous wounds by modulating p53-SIVA1 interactionAnil Sebastian, Syed A Iqbal, James Colthurst, et al.
Wound Repair and Regeneration : Official Publication of the Wound Healing Society [And] the European Tissue Repair Society|July 16, 2015
Noninvasive device readouts validated by immunohistochemical analysis enable objective quantitative assessment of acute wound healing in human skinSara Ud-Din, Nicholas S Greaves, Anil Sebastian, et al.
The Journal of Hand Surgery|February 14, 2006
The heritability of Dupuytren's disease: familial aggregation and its clinical significanceSandip Hindocha, Sally John, John K Stanley, et al.
Future Microbiology|March 14, 2017
Cutaneous wound biofilm and the potential for electrical stimulation in management of the microbiomeMohammed Ashrafi, Mohamed Baguneid, Teresa Alonso-Rasgado, et al.
Journal of Biophotonics|April 25, 2018
Photobiomodulation of a flowable matrix in a human skin ex vivo model demonstrates energy-based enhancement of engraftment integration and remodelingLia M G Neves, Nivaldo A Parizotto, Marcia R Cominetti, et al.
The Journal of Investigative Dermatology|March 31, 2016
The Aldo-Keto Reductase AKR1B10 Is Up-Regulated in Keloid Epidermis, Implicating Retinoic Acid Pathway Dysregulation in the Pathogenesis of Keloid DiseaseNatalie Jumper, Tom Hodgkinson, Guyan Arscott, et al.
The Journal of Investigative Dermatology|November 19, 2016
Enhanced Neurogenic Biomarker Expression and Reinnervation in Human Acute Skin Wounds Treated by Electrical StimulationAnil Sebastian, Susan W Volk, Poonam Halai, et al.
The Journal of Hand Surgery|January 6, 2009
Identification of biomarkers in Dupuytren's disease by comparative analysis of fibroblasts versus tissue biopsies in disease-specific phenotypesBarbara Shih, Dulharie Wijeratne, Daniel J Armstrong, et al.
Wound Repair and Regeneration : Official Publication of the Wound Healing Society [And] the European Tissue Repair Society|July 22, 2014
Skin equivalent tensional force alters keloid fibroblast behavior and phenotypeEdna Suarez, Farhatullah Syed, Teresa A Rasgado, et al.
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