DocumentCode
168632
Title
Applications of Wood´s Lamp technology to detect skin infections in resource-constrained settings
Author
Cardillo, Holly ; Kohler, Jennifer ; Kriner, Ellie ; Mehta, Khanjan
Author_Institution
Humanitarian Eng. & Social Entrepreneurship (HESE) Program, Pennsylvania State Univ., University Park, PA, USA
fYear
2014
fDate
10-13 Oct. 2014
Firstpage
548
Lastpage
554
Abstract
Skin diseases such as Tinea Capitis, Scabies and Erythrasma are serious and common problems in developing countries. Unfortunately they are often overlooked and left untreated, causing extreme discomfort to those afflicted. Their contagious nature is also compromising to community health as a whole. Early detection of opportunistic infections often leads to the diagnosis of more serious immuno-compromising diseases such as HIV. This article investigates the feasibility of using a UV light source called Wood´s Lamp to detect the presence of select fungal, bacterial and parasitic skin infections. A Wood´s Lamp is based on fluorescence - the phenomenon by which light excites valence electrons in certain fungi and bacteria and results in a fluorescent emission visible to the naked eye. Traditional Wood´s Lamps use UV tube lights that are fragile and unsuitable for the harsh operating environments of developing countries. The recent emergence of UV LED-based lamps has led to compact, ruggedized and low-cost devices with good contrast that can be used by low-skilled health workers. This article synthesizes the capabilities and applications of this proven effective yet underutilized technology and illustrates how it can be integrated into fledgling healthcare systems in developing countries.
Keywords
diseases; fluorescence; health care; lamps; microorganisms; skin; ultraviolet sources; HIV diagnosis; Tinea capitis; UV light source; Wood lamp technology; bacterial skin infection detection; erythrasma; fluorescent emission; fungal skin infection detection; healthcare systems; parasitic skin infection detection; scabies; valence electron excitation; Antibiotics; Communities; Immune system; Medical diagnostic imaging; Microorganisms; Skin; Wood´s Lamp; community health workers; fluorescence; skin infections;
fLanguage
English
Publisher
ieee
Conference_Titel
Global Humanitarian Technology Conference (GHTC), 2014 IEEE
Conference_Location
San Jose, CA
Type
conf
DOI
10.1109/GHTC.2014.6970337
Filename
6970337
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