Traditional methods for measuring personal exposure to fine particulate matter (PM2.5) are cumbersome and lack spatiotemporal resolution; methods that are time-resolved are limited to a single species/component of PM. To address these limitations, we developed an automated microenvironmental aerosol sampler (AMAS), capable of resolving personal exposure by microenvironment. The AMAS is a wearable device that uses a GPS sensor algorithm in conjunction with a custom valve manifold to sample PM2.5 onto distinct filter channels to evaluate home, school, and other (e.g., outdoors, in transit, etc.) exposures. Pilot testing was conducted in Fresno, CA where 25 high-school participants (n = 37 sampling events) wore an AMAS for 48-h periods in Nove...
<p><strong>Abstract.</strong> The inaccurate quantificatio...
In this study, we present the development of a mobile system to measure real-world total respiratory...
Several studies evaluating exposure to pollutants in microenvironments (MEs) are available in the sc...
Traditional methods for measuring personal exposure to fine particulate matter (PM2.5) are cumbersom...
Traditional methods for measuring personal exposure to fine particulate matter (PM2.5) are cumbersom...
Traditional methods for measuring personal exposure to fine particulate matter (PM|) are cumbersome ...
Portable sensors have emerged as a promising solution for personal exposure (PE) measurement. For th...
Human exposure to air pollution is associated with increased risk of morbidity and mortality. Howeve...
Assessing personal exposure to air pollution has long proven challenging due to technological limita...
Assessing personal exposure to air pollution has long proven challenging due to technological limita...
Human exposure to particulate matter (PM) air pollution has been linked with respiratory, cardiovasc...
Exposure to ambient particulate matter (PM) is known to have an adverse effect on human health. One ...
AbstractAdverse health effects from exposure to air pollution are a global challenge and of widespre...
Adverse health effects from exposure to air pollution are a global challenge and of widespread conce...
This study tested the reliability of a novel method developed for assessing the individual exposure ...
<p><strong>Abstract.</strong> The inaccurate quantificatio...
In this study, we present the development of a mobile system to measure real-world total respiratory...
Several studies evaluating exposure to pollutants in microenvironments (MEs) are available in the sc...
Traditional methods for measuring personal exposure to fine particulate matter (PM2.5) are cumbersom...
Traditional methods for measuring personal exposure to fine particulate matter (PM2.5) are cumbersom...
Traditional methods for measuring personal exposure to fine particulate matter (PM|) are cumbersome ...
Portable sensors have emerged as a promising solution for personal exposure (PE) measurement. For th...
Human exposure to air pollution is associated with increased risk of morbidity and mortality. Howeve...
Assessing personal exposure to air pollution has long proven challenging due to technological limita...
Assessing personal exposure to air pollution has long proven challenging due to technological limita...
Human exposure to particulate matter (PM) air pollution has been linked with respiratory, cardiovasc...
Exposure to ambient particulate matter (PM) is known to have an adverse effect on human health. One ...
AbstractAdverse health effects from exposure to air pollution are a global challenge and of widespre...
Adverse health effects from exposure to air pollution are a global challenge and of widespread conce...
This study tested the reliability of a novel method developed for assessing the individual exposure ...
<p><strong>Abstract.</strong> The inaccurate quantificatio...
In this study, we present the development of a mobile system to measure real-world total respiratory...
Several studies evaluating exposure to pollutants in microenvironments (MEs) are available in the sc...