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May 2001 in “Proceedings of SPIE, the International Society for Optical Engineering/Proceedings of SPIE” The system helps monitor hair properties using RGB video microscopy.
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February 2019 in “Scientific Reports” Immunofluorescence tomography is a cost-effective method for creating detailed 3-D images of tissues.
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December 2022 in “Bio-Design and Manufacturing” A new portable microscope can effectively monitor skin wound healing in real-time.
Commercial and open-source light sheet microscopy systems have advanced through engineer-scientist collaborations, improving imaging quality.
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January 2012 in “Archives of Dermatology” Polarized microscopy is a quick and free method to correctly identify types of hair loss.
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November 2019 in “Cold Spring Harbor Perspectives in Biology” Stem cells are more dynamic and adaptable than previously believed.
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June 2020 in “Journal of Investigative Dermatology” The technique effectively shows how human skin and hair cells form into ball-like structures.
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February 2012 in “InTech eBooks” 5 citations
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November 2005 Confocal Laser Scanning Microscopy is effective for tracking compounds in the skin.
3D models from confocal microscopy improve melanoma detection on sun-damaged skin.
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August 2016 in “Journal of Visualized Experiments” The CUBIC protocol allows detailed 3D visualization of proteins in mouse skin biopsies.
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September 2016 in “Experimental Dermatology” Two-photon microscopy effectively tracks live stem cell activity in mouse skin with minimal harm and clear images.
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September 2011 in “Scanning” Multiphoton microscopy effectively images mouse skin layers and structures.
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November 2003 in “Hair transplant forum international” Using an LCD monitor with video magnification is a cheap and comfortable method to enlarge the view of hair for transplant surgery.
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January 2011 in “International Journal of Trichology” Light microscopy is useful for diagnosing different hair disorders.
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April 2016 in “Journal of The American Academy of Dermatology” Low-cost videomicroscopy may not be reliable for diagnosing hair loss compared to standard videodermatoscopy.
Multiphoton microscopy can effectively distinguish between scarring and non-scarring alopecia.