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1.
Rev. Paul. Pediatr. (Ed. Port., Online) ; 40: e2020330, 2022. tab, graf
Artículo en Inglés | LILACS-Express | LILACS | ID: biblio-1340799

RESUMEN

Abstract Objective: To evaluate air quality in the waiting room of a pediatric emergency service considering the serial concentrations of particulate matter (PM2.5), and to determine if the number of people present in the room can have an influence on the pollutant concentrations. Methods: Cross-sectional study, carried out in the waiting room of a reference pediatric hospital in the city of Porto Alegre, conducted in a one-year period, in a continuous-time sample including all of the four seasons of the year. The monitoring of PM2.5 was performed using a real-time aerosol monitor (DustTrak II). The number of people in the room was determined every hour and the climatic characteristics per daily mean. The concentration of PM2.5 and the number of people were expressed by mean and standard deviation. The means were compared by Analysis of Variance and Pearson's correlation coefficient. Results: There was a significant increase in the concentration of PM2.5 in the autumn, when compared to other seasons (p<0.001). The pollutant increase, in this season, was accompanied by the higher number of people in the emergency room (p=0.026). The association between PM2.5 and the number of people is confirmed by the positive correlation between these two variables (r=0.738; p<0.001). Conclusions: The pediatric emergency waiting room showed elevated PM2.5 in all seasons. The number of people in the room had a positive correlation with the concentration of the pollutant in the environment.


Resumo Objetivo: Avaliar a qualidade do ar na sala de espera de um serviço de emergência pediátrica pelas concentrações ambientais seriadas de material particulado (MP2,5) e determinar se o número de pessoas presentes no ambiente influencia as concentrações do poluente. Métodos: Estudo transversal, realizado na sala de espera de um hospital pediátrico de referência na cidade de Porto Alegre, conduzido ao longo de um ano, com um período de amostragem temporal contínua com duração de uma semana, em todas as quatro estações do ano. O monitoramento do MP2,5 foi realizado por meio de um monitor de aerossol em tempo real (DustTrak II). O número de pessoas no ambiente foi determinado a cada hora e as características climáticas por média diária. As concentrações de MP2,5 e o número de pessoas foram expressos por médias e desvio padrão. As médias foram comparadas por análise de variância e pelo coeficiente de correlação de Pearson. Resultados: Houve aumento significativo na concentração do MP2,5 no outono, quando comparado com as outras estações (p<0,001). O aumento desse poluente, nessa estação, esteve acompanhado de maior número de pessoas na emergência (p=0,026). A associação entre MP2,5 e número de pessoas é ratificado pela correlação positiva entre essas duas variáveis (r=0,738; p<0,001). Conclusões: A sala de espera da emergência pediátrica apresentou concentrações elevadas de MP2,5 durante todas as estações do ano. O número de pessoas no ambiente guardou correlação positiva com as concentrações do poluente no ambiente.

2.
Rev Paul Pediatr ; 40: e2020330, 2021.
Artículo en Inglés, Portugués | MEDLINE | ID: mdl-34614130

RESUMEN

OBJECTIVE: To evaluate air quality in the waiting room of a pediatric emergency service considering the serial concentrations of particulate matter (PM2.5), and to determine if the number of people present in the room can have an influence on the pollutant concentrations. METHODS: Cross-sectional study, carried out in the waiting room of a reference pediatric hospital in the city of Porto Alegre, conducted in a one-year period, in a continuous-time sample including all of the four seasons of the year. The monitoring of PM2.5 was performed using a real-time aerosol monitor (DustTrak II). The number of people in the room was determined every hour and the climatic characteristics per daily mean. The concentration of PM2.5 and the number of people were expressed by mean and standard deviation. The means were compared by Analysis of Variance and Pearson's correlation coefficient. RESULTS: There was a significant increase in the concentration of PM2.5 in the autumn, when compared to other seasons (p<0.001). The pollutant increase, in this season, was accompanied by the higher number of people in the emergency room (p=0.026). The association between PM2.5 and the number of people is confirmed by the positive correlation between these two variables (r=0.738; p<0.001). CONCLUSIONS: The pediatric emergency waiting room showed elevated PM2.5 in all seasons. The number of people in the room had a positive correlation with the concentration of the pollutant in the environment.


Asunto(s)
Contaminantes Atmosféricos , Contaminación del Aire , Contaminantes Atmosféricos/análisis , Niño , Estudios Transversales , Servicio de Urgencia en Hospital , Humanos , Material Particulado/análisis , Estaciones del Año
3.
Pediatr Pulmonol ; 56(8): 2724-2728, 2021 08.
Artículo en Inglés | MEDLINE | ID: mdl-34185972

RESUMEN

OBJECTIVE: To determine the presence of genetic material from potentially infectious airborne respiratory virus pathogens in a pediatric emergency department (PED) waiting room. METHODS: A cross-sectional study in the waiting room area of PED at Santo Antonio Children's Hospital, Porto Alegre, in southern Brazil. The room air samples were collected with a portable cyclone sampler (Coriolis®), twice a day (8 a.m. and 8 p.m.), during 5 consecutive weekdays, during two seasons, fall and spring (20 samples), in 2016. Reverse transcription polymerase chain reaction was used to detect influenza A, influenza B, parainfluenza 2, parainfluenza 3, human metapneumovirus, respiratory syncytial virus, human adenovirus, human bocavirus, and Bordetella pertussis. The PED provides care to an average of 6000 patients per month and the age of patients ranges from 1 month to 17 years old. It is waiting area has 645 ft square. RESULTS: Genetic material from pathogens was detected in 12 out of 20 samples (60%). In 5 samples, more than one pathogen of respiratory virus was identified. Human adenovirus was the most frequent pathogen (n = 9/52%), followed by Bordetella pertussis (n = 4/24%), respiratory syncytial virus (n = 2/12%) and human bocavirus (n = 2/12%). Season and number of people in the waiting room were not associated with the presence of genetic material from pathogens. CONCLUSIONS: Genetic material from pathogens potentially associated with severe respiratory diseases was found in the room air of a pediatric ED waiting room.


Asunto(s)
Bocavirus Humano , Virus Sincitial Respiratorio Humano , Infecciones del Sistema Respiratorio , Niño , Estudios Transversales , Servicio de Urgencia en Hospital , Humanos , Lactante , Infecciones del Sistema Respiratorio/epidemiología , Estaciones del Año , Salas de Espera
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