IEEE Sensors Journal · 2009 · 181 citations · 28 references
Real-time MonitoringEnvironmental MonitoringEngineeringWireless Sensor SystemWearable TechnologyWearable SensorsLow Cost SensorChemistryChemical EngineeringEnvironmental ChemistryPollution DetectionAnalytical ChemistryToxicologyPublic HealthChemical SensorHigh SensitivityEcotoxicologyElectronic NoseElectrochemical Gas SensorEnvironmental EngineeringSensor DesignIndoor Air QualityEnvironmental ToxicologyTechnologyFork SensorIntegrated System ApproachWearable Sensor
An integrated volatile organic toxicants sensor with a Bluetooth device interface has been developed. The device is based on novel tuning fork sensor platform along with a wireless communication/interface technology taken in an integrated system approach. It features high sensitivity and selectivity. The sensitivity and selectivity are accomplished through the use of novel tuning fork sensor modified by design (molecularly imprinted) polymers and selective filtering. Experiments have shown that the device can detect toxic volatile organic compounds (VOCs) under high concentrations of common interferents from flavors and fragrances. Applications of the device for detection of BTEX in real-world situations such as outdoor and gas station VOCs have also been demonstrated. All these features make the device a promising candidate to be deployed in real-world applications, particularly in environmental health and air pollution studies.
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Asthma in exercising children exposed to ozone: a cohort study
Rob McConnell, Kiros Berhane, Frank D. Gilliland et al. · The Lancet · 2002 · 786 citations
Traffic, Susceptibility, and Childhood Asthma
Rob McConnell, Kiros Berhane, Ling Yao et al. · Environmental Health Perspectives · 2006 · 629 citations · Full text
Smart Vest: Wearable multi-parameter remote physiological monitoring system
P. S. Pandian, K. Mohanavelu, K. P. Safeer et al. · Medical Engineering & Physics · 2007 · 417 citations