The treatment of androgenetic alopecia (AGA) is usually long lasting, and the effects of treatment attempts are difficult to measure. Consequently, there was a need for a sensitive tool to monitor hair loss and treatment response. Therefore, we developed the Trichoscan as a method which combines epiluminescence microscopy with automatic digital image analysis for the measurement of human hair. The Trichoscan is able to analyze all important parameters of hair growth (density, diameter, growth rate, vellus and terminal hair density) with an intraclass correlation of approximately 91% within the same Trichoscan operator and an intraclass correlation of approximately 97% for different Trichoscan operators. The application of the technique was demonstrated by comparison of the hair parameters in 9 men with frontal balding which were treated for 6 months with 5% minoxidil. Even in this small cohort of patients, we noticed after 3 months of treatment compared to baseline a significant increase in hair density (+21.3 hairs/cm2; p = 0.047) and cumulative hair thickness (+0.61 mm; p = 0.008) and after 6 months a significant increase in hair density (+34 hairs/cm2; p = 0.011) and cumulative hair thickness (+0.88 mm; p = 0.010). The study shows that the Trichoscan has many advantages. It can be used for clinical studies to compare placebo versus treatment or to compare the relative potencies of different hair-growth-promoting substances. It can be used for studying AGA or other forms of diffuse hair loss, and it can be adopted to study the effect of drugs or laser treatment on hypertrichosis or hirsutism. The drawbacks, however, are that the Trichoscan still needs a hair dye for contrast enhancement and the measurement area must be clipped before analysis. This mini-review summarizes recent attempts to optimize the technique and shows new options such as the calculation of follicular units or the 'anagen hair count'.
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http://dx.doi.org/10.1159/000085581 | DOI Listing |
Pediatr Dermatol
December 2024
Department of Health Sciences, University of Florence, Florence, Italy.
Pili trianguli et canaliculi syndrome is a rare hair shaft disorder characterized by frizzy hair that cannot be smoothed flat. Affected hair shafts are triangular or kidney-shaped with longitudinal grooving. Diagnosis typically requires electron microscopy, which may be cost-prohibitive, or alternatively, the distinctive features of hair shafts can be identified through histological examination of cross sections, that is time-consuming.
View Article and Find Full Text PDFPoult Sci
December 2024
Department of Animal Sciences, The Ohio State University, Columbus, OH 43210, USA. Electronic address:
Advanced genetic and nutritional strategies aimed at modulating fat deposition can significantly reduce production costs and enhance profitability in the poultry industry. Melanophilin (MLPH) is recognized as a key gene regulating pigmentation as shown by diluted hair and feather coloration in MLPH mutant animals, including avian models. However, the effects of MLPH during fat accretion have not been studied yet.
View Article and Find Full Text PDFTrop Anim Health Prod
December 2024
Faculty of Veterinary Medicine and Animal Science, Universidad Nacional Micaela Bastidas de Apurímac, Abancay, Perú.
In the high altitudes of the Andes, llama breeders shear the fiber from their animals, obtaining fleeces for many purposes. Dehairing the fleece of these animals is a viable alternative to improving the quality and value of the fleece. The study examined the attributes of fiber quality and pilose follicle of dehaired and non-dehaired fleece from Ch'aku llamas and the relationship among these characteristics.
View Article and Find Full Text PDFVet Sci
December 2024
College of Animal Science and Technology, Yangzhou University, Yangzhou 225009, China.
Wool quality is a crucial economic trait in Angora rabbits, closely linked to hair follicle (HF) growth and development. Therefore, understanding the molecular mechanisms of key genes regulating HF growth and wool fiber formation is essential. In the study, fine- and coarse-wool groups were identified based on HF morphological characteristics of Zhexi Angora rabbits.
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