June 2026 in “Journal of Cutaneous and Aesthetic Surgery” This review proposes an anatomy-based framework for understanding recipient site scalp necrosis in hair transplantation, emphasizing regional vascular vulnerability and surgical factors, but does not provide new clinical results.
December 2025 in “Zenodo (CERN European Organization for Nuclear Research)” This paper introduces the Vertex Overload Framework for androgenetic alopecia, suggesting that chronic mechanical and thermal stress on the vertex contributes to hair follicle miniaturization, with androgens acting as co-mediators of stress adaptation rather than isolated causes.
December 2025 in “Zenodo (CERN European Organization for Nuclear Research)” This study offers a new perspective on androgenetic alopecia, suggesting that hair loss at the vertex and frontal scalp results from mechanical and thermodynamic stress, alongside androgen activity, and proposes that reducing mechanical tension and improving local microcirculation could complement traditional treatments.
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April 2021 in “Biofabrication” This study developed a vascularized full-thickness skin equivalent with a complex vascular network, enhancing its predictiveness for topical and systemic drug applications in dermatology research.
April 2017 in “Plastic and Reconstructive Surgery – Global Open” In this study, researchers developed a 3D-printed vascular model to analyze how different shear stresses influence cell behavior and promote cellular organization around neovessels, offering insights into tissue engineering for wound reconstruction.