2 citations
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August 2019 in “Electronics and Communications in Japan” The device mimics human hair follicles and detects tiny forces and moments with high sensitivity.
February 2023 in “International journal of research - granthaalayah” The new microscope method helps study energy from pre-cancerous skin cells.
The method effectively creates uniform, viable cell spheroids for 3D cell culture.
March 2026 in “Mendeley Data” March 2026 in “Mendeley Data”
The model explains how mammal ear hair cells respond to sound and adapt.
1 citations
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August 2019 in “Journal of Dentistry Indonesia” A 645-nm diode laser effectively penetrates swine soft tissues, suggesting predictable therapeutic effects.
January 2025 in “Advances in Clinical Medicine” Fractional CO2 laser therapy effectively improves skin conditions and recovery when combined with other treatments.
1 citations
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November 2020 in “Journal of The American Academy of Dermatology” GSK-36 downregulation with UTMD improves plaque stability in atherosclerosis treatment.
8 citations
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September 2011 in “Scanning” Multiphoton microscopy effectively images mouse skin layers and structures.
January 2026 in “Nature Communications” A wearable device using NIR light may help treat hair loss non-invasively.
June 2022 in “Journal of Dermatology Research” Using 448-kHz Capacitive-Resistive Electrothermal Therapy can help increase hair density and prevent hair loss in women.
8 citations
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September 2023 in “Skin Research and Technology” High-frequency ultrasound improves diagnosis accuracy for most subcutaneous lesions.
198 citations
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September 2007 in “Clinics in Dermatology” Radiofrequency devices effectively tighten skin without surgery.
15 citations
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August 2011 in “Lasers in medical science” The 755-nm alexandrite laser effectively and quickly treats trichostasis spinulosa with minimal pain and no side effects.
27 citations
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November 2010 in “JDDG Journal der Deutschen Dermatologischen Gesellschaft” New laser therapies are effective for skin damage, hair removal, and fat reduction.
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April 2022 in “Biomedicines” Low-frequency electromagnetic fields may help hair growth by affecting certain growth-related molecules.
December 2025 in “eScience” A wireless, battery-free system uses Wi-Fi signals to enhance wound healing and enable smart healthcare at home.
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January 2025 in “Droplet” Precise cell manipulation technologies are advancing but still face challenges in improving accuracy for medical use.
6 citations
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March 2022 in “IET Image Processing” Targeting the narrowest part of the anterior chamber angle may help prevent pupil block in glaucoma.
April 2018 in “International journal of nanotechnology and nanomedicine” Low-level laser therapy effectively reduces the size of pressure ulcers compared to placebo.
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January 1963 in “Radiation Research” X-ray microbeams can mimic cosmic rays' effects on tissue, aiding wound healing and hair growth.
3 citations
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April 2021 in “PLoS ONE” Pulse electric fields can control the release of growth factors and serotonin from platelet-rich plasma, offering a tailored approach to wound healing.
September 2018 in “Plastic and Reconstructive Surgery – Global Open” Using real-time ultrasound during gluteal fat grafting is safe and reduces complication risks.
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March 1990 in “The American journal of cosmetic surgery”
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September 1947 in “Archives of dermatology and syphilology” Electrolysis is better for permanent hair removal with less scarring.
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January 2013 in “Plastic & Reconstructive Surgery” The new device safely and effectively rejuvenates skin, making it thicker and healthier.
January 2006 in “Zhongguo linchuang jiepouxue zazhi” Low intensive pulse magnetic fields can speed up wound healing by boosting skin stem cell growth and development.
September 1998 in “Journal of the European Academy of Dermatology and Venereology”
April 2025 in “Dermatology Practical & Conceptual” UV-enhanced trichoscopy helps diagnose hair shaft disorders like pili annulati.