Influence of environmental variables on functional capacity in patients with lung disease

Eduarda Sthefanie Mittelstadt, D. M. Quevedo, C. C. Costa, D. M. Osório, Rafael M. Souza, D. Berlese
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Abstract

Air pollution is related to negative impacts mainly on people with Chronic Respiratory Diseases (CRD), reflecting on respiratory health, reduced physical performance and so on. The objective was to investigate the influence of meteorological and air quality variables on the functional capacity of patients with CRD. This was a descriptive, retrospective and cross-sectional study of information collection in a database from 2016 to 2019. For the analysis of environmental variables, three different databases were used, one from the automatic air quality monitoring station in Novo Hamburgo, and the weather stations of Novo Hamburgo and Campo Bom (RS). The monitored data were: NO2, CO, O3, PM10, PM2,5, average temperature, minimum temperature, maximum temperature, precipitation, average wind speed and relative humidity. The sample consisted of 85 individuals from the Pulmonary Rehabilitation Program (PRP), where the variables spirometry and six-minute walk test (6MWT) were collected. It was observed that the higher the concentration of PM10 and the higher the minimum temperature, the lower the spirometric results. Furthermore, the greater the concentration of PM2.5, the shorter the distance that the individual travels. A relationship was found between environmental data and functional tests, where individuals with CRD are more sensitive to high levels of air pollutants, as well as to lower temperatures.
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环境变量对肺部疾病患者功能的影响
空气污染主要对慢性呼吸系统疾病(CRD)患者产生负面影响,反映在呼吸系统健康、身体机能下降等方面。目的是探讨气象和空气质量变量对CRD患者功能能力的影响。这是一项描述性、回顾性和横断面研究,对2016年至2019年数据库中的信息收集进行了分析。为了分析环境变量,使用了三个不同的数据库,一个来自Novo Hamburgo的自动空气质量监测站,另一个来自Novo Hamburgo和Campo Bom (RS)的气象站。监测数据为:NO2、CO、O3、PM10、PM2、5、平均气温、最低气温、最高气温、降水量、平均风速、相对湿度。样本由85名来自肺康复计划(PRP)的个体组成,其中收集了变量肺活量测定和6分钟步行测试(6MWT)。PM10浓度越高,最低温度越高,肺活量测定结果越低。此外,PM2.5浓度越大,个人的出行距离越短。在环境数据和功能测试之间发现了一种关系,患有CRD的个体对高水平的空气污染物和较低的温度更敏感。
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