...
首页> 外文期刊>Science of the total environment >An approach to using heart rate monitoring to estimate the ventilation and load of air pollution exposure
【24h】

An approach to using heart rate monitoring to estimate the ventilation and load of air pollution exposure

机译:一种使用心率监测来估算通风和空气污染负荷的方法

获取原文
获取原文并翻译 | 示例
           

摘要

Background: The effects of air pollution on health are associated with the amount of pollutants inhaled which depends on the environmental concentration and the inhaled air volume. It has not been clear whether statistical models of the relationship between heart rate and ventilation obtained using laboratory cardiopulmonary exercise test (CPET) can be applied to an external group to estimate ventilation. Objectives: To develop and evaluate a model to estimate respiratory ventilation based on heart rate for inhaled load of pollutant assessment in field studies. Methods: Sixty non-smoking men; 43 public street workers (public street group) and 17 employees of the Forest Institute (park group) performed a maximum cardiopulmonary exercise test (CPET). Regression equation models were constructed with the heart rate and natural logarithmic of minute ventilation data obtained on CPET. Ten individuals were chosen randomly (public street group) and were used for external validation of the models (test group). All subjects also underwent heart rate register, and paniculate matter (PN_(2.5)) monitoring for a 24-hour period. Results: For the public street group, the median difference between estimated and observed data was 0.5 (CI 95% -0.2 to 1.4) l/min and for the park group was 0.2 (CI 95% -0.2 to 1.2) l/min. In the test group, estimated values were smaller than the ones observed in the CPET, with a median difference of - 2.4 (CI 95% - 4.2 to -1.8) l/min. The mixed model estimated values suggest that this model is suitable for situations in which heart rate is around 120-140 bpm. Conclusion: The mixed effect model is suitable for ventilation estimate, with good accuracy when applied to homogeneous groups, suggesting that, in this case, the model could be used in field studies to estimate ventilation. A small but significant difference in the median of external validation estimates was observed, suggesting that the applicability of the model to external groups needs further evaluation.
机译:背景:空气污染对健康的影响与吸入的污染物量有关,污染物的吸入量取决于环境浓度和吸入的空气量。尚不清楚是否可以将使用实验室心肺运动测试(CPET)获得的心率与通气之间的关系的统计模型应用于外部人群以评估通气。目的:在田间研究中,开发和评估一个基于心率的呼吸通气估计模型,以评估污染物的吸入负荷。方法:60名非吸烟男性; 43名公共街道工作人员(公共街道小组)和森林研究所的17名雇员(公园小组)进行了最大程度的心肺运动测试(CPET)。使用心率和在CPET上获得的分钟通气数据的自然对数来构建回归方程模型。随机选择十个人(公共街道组),并用于模型的外部验证(测试组)。所有受试者均接受了心率记录,并监测了24小时内的惊恐事件(PN_(2.5))。结果:对于公共街道组,估计数据与观察数据之间的中位数差异为0.5(CI 95%-0.2至1.4)l / min,对于公园组为0.2(CI 95%-0.2至1.2)l / min。在测试组中,估计值小于在CPET中观察到的值,中位数差异为-2.4(CI 95%-4.2至-1.8)l / min。混合模型估计值表明,该模型适用于心率约为120-140 bpm的情况。结论:混合效应模型适合于通气估计,应用于同质人群时具有良好的准确性,表明在这种情况下,该模型可用于野外研究以估计通气。观察到的外部验证估计值的中位数有一个小但显着的差异,这表明该模型对外部群体的适用性需要进一步评估。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号