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1.
Rev. cuba. estomatol ; 59(2): e3767, abr.-jun. 2022. tab
Artigo em Espanhol | LILACS, CUMED | ID: biblio-1408383

RESUMO

Introducción: La lámpara de fotocurado, que utiliza diodos emisores de luz (LED), se emplea en odontología para la conversión polimérica de los materiales de restauración dental. Se ha comunicado que una intensidad lumínica inadecuada de la lámpara no aseguraría la correcta polimerización del material de restauración. Objetivo: Determinar la intensidad lumínica de las lámparas de fotocurado LED en consultorios odontológicos de la ciudad de Piura, Perú, 2020. Métodos: Estudio observacional, descriptivo. Se midió la intensidad lumínica en 70 lámparas de fotocurado LED, usando un radiómetro con una longitud de onda de 400-500 nm, con capacidad de medida de la intensidad lumínica de hasta 3500 mw/cm2. Por debajo de los 400 mw/cm2 indica intensidad baja, de 400 a 800 mw/cm2 intensidad media, de 800 a 1200 mw/cm2 intensidad alta y por encima de los 1200 mw/cm2 indica intensidad muy alta. Resultados: El 48,5 por ciento de las lámparas analizadas presentaban intensidad media, el 22,86 por ciento intensidad alta, mientras que el 15,71 por ciento intensidad baja y finalmente el 12,86 por ciento de las lámparas presentaban intensidad muy alta. Se reportó menor frecuencia de lámparas con mayor uso clínico. Conclusiones: Las lámparas de fotocurado LED, utilizadas en los consultorios dentales de la provincia de Piura durante el 2020, emiten una intensidad lumínica promedio de 778,14 mW/cm2, equivalente a la intensidad media(AU)


Introduction: Light curing lamps that use light-emitting diodes (LED) are used in dentistry for the polymeric conversion of dental restorative materials. It has been reported that inadequate light intensity in the lamp would not ensure the appropriate polymerization of restorative materials. Objective: Determine the output intensity of LED light curing units used in dental offices of the city of Piura, Peru, in the year 2020. Methods: An observational descriptive study was conducted. Measurements were taken of the light output of 70 LED light curing lamps using a radiometer with a wavelength of 400-500 nm and a light intensity measurement capacity of up to 3 500 mw/cm2. Intensity below 400 mw/cm2 was recorded as low, from 400 to 800 mw/cm2 as medium, from 800 a 1 200 mw/cm2 as high and above 1 200 mw/cm2 as very high. Results: Intensity was medium in 48.5 percent of the lamps analyzed, high in 22.86 percent, low in 15.71 percent and very high in 12.86 percent. A lower frequency of lamps with greater clinical use was reported. Conclusions: The LED light curing lamps used in dental offices of the province of Piura during the year 2020 emit an average output intensity of 778.14 mW/cm2, which corresponds to medium intensity(AU)


Assuntos
Humanos , Consultórios Odontológicos/métodos , Polimerização , Luz , Epidemiologia Descritiva , Materiais Dentários/uso terapêutico , Estudos Observacionais como Assunto
2.
An Pediatr (Engl Ed) ; 92(6): 377.e1-377.e9, 2020 Jun.
Artigo em Espanhol | MEDLINE | ID: mdl-32513601

RESUMO

Sunburn, immunodepression, photoaging, and photocarcinogenesis, are some of the most significant adverse effects of solar radiation in humans. Children are population group of special vulnerability, due to the fact that exposure to the sun has more pronounced biological effects compared to adults. Furthermore, childhood is a critical period for promoting the development of photo damage and photocarcinogenesis in the later stages of life if adequate measures at not put into place. This is because it is estimated that between 18 and 20 years of age is when 40% to 50% of the accumulative exposure to ultraviolet radiation up to 60 years of age is received. The most important strategy for the photoprotection of children is changes in behaviour and habits associated with exposure to the sun at all levels (school, society, family, etc.). Resorting to the shade, reduction in overall time of exposure to the sun, and physical protection (clothes, hats, and sunglasses) are the best and least costly photoprotection strategies. The photoprotectors must be incorporated into the daily routine of children in the same way as adults, and must complete a series of requirements in order to make them effective, safe, and in line with the environment.


Assuntos
Roupa de Proteção , Envelhecimento da Pele , Neoplasias Cutâneas/prevenção & controle , Queimadura Solar/prevenção & controle , Luz Solar/efeitos adversos , Protetores Solares/uso terapêutico , Adolescente , Criança , Saúde da Criança , Pré-Escolar , Humanos , Lactente , Neoplasias Cutâneas/etiologia , Queimadura Solar/etiologia , Adulto Jovem
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