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Sensors (Basel, Switzerland)|December 22, 2019
Development of a Network of Accurate Ozone Sensing Nodes for Parallel Monitoring in a Site Relocation StudyBrandon Feenstra, Vasileios Papapostolou, Berj Der Boghossian, et al.Sensors (Basel, Switzerland)|April 12, 2022
Towards the Development of a Sensor Educational Toolkit to Support Community and Citizen ScienceAshley Collier-Oxandale, Vasileios Papapostolou, Brandon Feenstra, et al.Inhalation Toxicology|November 1, 2011
Development and evaluation of a countercurrent parallel-plate membrane diffusion denuder for the removal of gas-phase compounds from vehicular emissionsVasileios Papapostolou, Joy E Lawrence, Stephen T Ferguson, et al.Journal of Occupational and Environmental Hygiene|May 15, 2023
Development of ASTM International D8405-Standard Test Method for Evaluating PM2.5 Sensors or Sensor Systems Used in Indoor ApplicationsWilton Mui, Xiaobi Michelle Kuang, Hang Zhang, et al.Environmental Science & Technology|January 16, 2021
Development of a Performance Evaluation Protocol for Air Sensors Deployed on a Google Street View CarWilton Mui, Berj Der Boghossian, Ashley Collier-Oxandale, et al.Inhalation Toxicology|June 22, 2011
Laboratory evaluation of a prototype photochemical chamber designed to investigate the health effects of fresh and aged vehicular exhaust emissionsVasileios Papapostolou, Joy E Lawrence, Edgar A Diaz, et al.The Science of the Total Environment|October 9, 2021
Long-term evaluation of a low-cost air sensor network for monitoring indoor and outdoor air quality at the community scaleRachel E Connolly, Qiao Yu, Zemin Wang, et al.Inhalation Toxicology|April 11, 2012
Effects of fresh and aged vehicular exhaust emissions on breathing pattern and cellular responses--pilot single vehicle studyEdgar A Diaz, Yeonseung Chung, Vasileios Papapostolou, et al.Environmental Research|August 24, 2019
Secondary particles formed from the exhaust of vehicles using ethanol-gasoline blends increase the production of pulmonary and cardiac reactive oxygen species and induce pulmonary inflammationTalita Dias da Silva, Viviani Barnabé, Ana Laura Ricci-Vitor, et al.Particle and Fibre Toxicology|May 27, 2017
Inhaled ambient-level traffic-derived particulates decrease cardiac vagal influence and baroreflexes and increase arrhythmia in a rat model of metabolic syndromeAlex P Carll, Samir M Crespo, Mauricio S Filho, et al.Pageof 1