103 citations
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March 2015 in “Nature Communications” A genetic region near the PAX1 gene is linked to a higher risk of scoliosis in females.
24 citations
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December 1957 in “Experimental Cell Research” The glassy layer of hair follicles has different fibril sizes and arrangements in guinea pigs and young mice.
January 2018 in “Murdoch Research Repository (Murdoch University)” Improved genetic diagnosis of PCOS can lead to better patient outcomes.
9 citations
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March 2017 in “Dermatologic Surgery” Asian men with hair loss have different follicular densities: East/Southeast 61.1, South 63.5, West 63.6 FU/cm².
November 2025 in “Clinical and Translational Medicine” DNAJB9 cfRNA could help diagnose and treat female hair loss.
67 citations
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December 2009 in “Stem Cells” β-Catenin signaling is involved in brain cell growth after injury and could be a therapy target.
2 citations
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November 2007 in “Hair transplant forum international” The conclusion is that hair transplant surgery should use microscopically dissected natural hair groupings and some new terms were suggested for clarity.
205 citations
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March 2012 in “Science Translational Medicine” PGD2 stops hair growth and is higher in bald men with AGA.
1 citations
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January 2019 in “Journal of Biomedical Science and Engineering” CGF from platelets helps hair regrowth in people with androgenetic alopecia.
32 citations
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September 2013 in “Breast cancer research” A specific gene variant is linked to a higher risk of hair loss from chemotherapy in breast cancer patients.
May 2022 in “Journal of Immunology” A parasite molecule can speed up skin healing and reduce scarring.
61 citations
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April 2012 in “British Journal of Dermatology” Caucasian women's hair appears thickest in their 20s, with perceived thinning after mid-30s due to both decreasing density and diameter.
1 citations
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September 1997 in “PubMed” The uniform density approach in hair restoration is less noticeable in situations like wind or exercise.
50 citations
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February 2004 in “Genomics” A gene mutation causes lanceolate hair in rats by disrupting hair shaft integrity.
The optimized VGG19 model accurately classifies hair diseases with 98.64% accuracy.
58 citations
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April 1993 in “Developmental Biology” bFGF delays hair growth in mice.
November 2020 in “Zenodo (CERN European Organization for Nuclear Research)” Fenugreek gel significantly reduces split ends and improves hair health.
November 2025 in “Agriculture” Machine learning can effectively identify genes to improve wool quality in sheep.
3 citations
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January 2025 in “Animal Genetics” Variants on chromosome 10 affect hair thickness in Dazu black goats.
Polygonum multiflorum, especially emodin, may help treat hair loss by targeting specific proteins, offering a new approach beyond traditional therapies.
February 2026 in “Preprints.org” Beer yeast vesicles may improve hair follicle health.
The GG genotype of the KRT71 gene leads to longer wool in Gansu alpine fine-wool sheep.
Topical GT20029 effectively promotes hair regrowth and is well-tolerated.
Keratinocytes can reverse the effects of the GNAQ oncogene, inhibiting melanoma cell growth.
11 citations
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June 2017 in “Mathematical Medicine and Biology A Journal of the IMA” The model helps understand and improve treatments for alopecia areata by simulating hair growth and immune cell interactions.
September 2015 in “Research Portal (King's College London)” Human hair movement is affected by its inner structure and chemical treatments.
85 citations
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October 2007 in “International Journal of Dermatology” Curly hair shape is due to uneven growth patterns in the hair follicle.
14 citations
,
July 1994 in “Journal of Investigative Dermatology” 8 citations
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August 2022 in “BMC Veterinary Research” C57BL/6 mice and SD rats have different sweat gland and hair follicle patterns, useful for skin research.