January 2021 in “Hair transplant forum international” The T-Fast multi-implanter makes hair transplant surgeries quicker and cheaper.
15 citations
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February 2021 in “Cells” Transfected cells with VEGF and FGF2 genes improve skin wound healing by enhancing blood flow and regeneration.
December 2015 in “European Journal of Pediatric Dermatology” Newborns can experience temporary hair loss in bands, unrelated to sleeping position.
66 citations
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October 2006 in “Journal of Surgical Oncology” Different scalp reconstruction methods work well, but the best one depends on the patient's unique needs.
Using regulatory T cells and Rapamycin together improves chronic graft-versus-host disease treatment outcomes in mice.
June 2025 in “British Journal of Dermatology” An AI device for skin cancer was successfully integrated into the NHS, improving diagnosis accuracy and service capacity.
3 citations
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October 2023 in “Plastic & Reconstructive Surgery Global Open” Nanofat injections before hair transplantation improve eyebrow restoration in burn scars.
A new imaging method helps see and study touch nerve endings in mouse skin.
4 citations
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February 2017 in “Archives of Aesthetic Plastic Surgery” Double-layer scalp wound closure is better than single-layer closure after strip hair transplant surgery.
1 citations
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April 2016 in “PubMed” Epidermis and dermis cells together can regenerate hair follicles.
January 2016 in “Methods in molecular biology” HAP stem cells in hair follicles could help repair nerves and spinal cords.
2 citations
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October 2024 in “Phenomics”
December 2020 in “Journal of The American Academy of Dermatology” Artificial intelligence can accurately predict hair growth and treatment results in female pattern hair loss patients, with age of onset and duration being key factors.
September 2013 in “Science” Special astrocytes improved learning and memory in rats after a stroke.
Bio-nanovesicles could improve hair and skin regeneration by delivering important molecules to repair and heal.
42 citations
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January 2021 in “Journal of Clinical Medicine” Microneedle arrays with nanotechnology show promise for painless drug delivery through the skin but need more research on safety and effectiveness.
5 citations
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May 2024 in “Journal of Cosmetic Dermatology” Engineered nanovesicles from hair follicle stem cells can effectively treat UVB-induced skin aging.
Hypoxic preconditioning reduces nanofat's ability to form blood vessels.
July 2025 in “ACS Applied Materials & Interfaces” Ultrasound-activated gel with stem cell vesicles improves skin healing and regeneration.
17 citations
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June 2019 in “BMC genomics” Non-coding RNAs help control hair growth in cashmere goats.
3 citations
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February 2024 in “arXiv (Cornell University)” Google Search ads effectively gathered a diverse dermatology image dataset for research and AI development.
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May 2025 in “Scientific Reports” The study identified key genes and pathways that influence goat wool quality and growth.
109 citations
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November 2011 in “Nature Neuroscience”
March 2025 in “Frontiers in Cell and Developmental Biology” Improving nerve and immune interactions may help heal chronic wounds.
8 citations
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February 2019 in “Scientific Reports” Immunofluorescence tomography is a cost-effective method for creating detailed 3-D images of tissues.
June 2020 in “Applied sciences” A new semi-automatic hair implanter could make hair transplants easier, more successful, and more accessible.
February 2026 in “Journal of Integrative Neuroscience” NGF-modified hair follicle stem cells may help treat Alzheimer's by improving brain function and reducing harmful proteins.
May 2023 in “Journal of the Dermatology Nurses' Association” The DNA convention was a valuable opportunity for learning and networking, especially after COVID-19.
January 2021 in “Faculty Opinions – Post-Publication Peer Review of the Biomedical Literature” GDNF helps grow hair and heal skin wounds by acting on specific stem cells.
January 2024 in “PloS one” Rat hair-follicle stem cells can become heart cells with specific supplements.