Nanomaterial and nanotechnology safety require the characterization of occupational exposure levels for completing a risk assessment. However, equally important is the estimation of the effective internal dose via lung deposition, transport and clearance mechanisms. An integrated source-to-biological dose assessment study is presented using real monitoring data collected during nanoparticle synthesis. Experimental monitoring data of airborne exposure levels during nanoparticle synthesis of CaSO4 and BiPO4 nanoparticles in a research laboratory is coupled with a human lung transport and deposition model, which solves in an Eulerian framework the general dynamic equation for polydisperse aerosols using particle specific physical-chemical prop...
[[abstract]]A great many governments have schemed their top priority to support the research and dev...
Objectives: Nanomaterial production and the number of people directly in contact with these material...
Assessment of respiratory tract deposition of nanoparticles is a key link to understanding their hea...
Nanomaterial and nanotechnology safety require the characterization of occupational exposure levels ...
Production and handling of engineered nanomaterials is currently the subject of an increasingly larg...
Abstract Backgrounds Exposure to nanoparticles in the workplace is a health concern to occupational ...
Particle biokinetics is important in hazard identification and characterization of inhaled particles...
Particle biokinetics is important in hazard identification and characterization of inhaled particles...
Given the results of experimental studies, occupational or environmental exposures to manufactured n...
The introduction of engineered nanostructured materials into a rapidly increasing number of industri...
Real-time size, mass and number particle concentrations, and emission rates in university laboratori...
As workplace air measurements of manufactured nanoparticles are relatively expensive to conduct, mod...
Abstract Risk, associated with nanomaterial use, is determined by exposure and hazard potential of t...
Real-time size, mass and number particle concentrations, and emission rates in university lab-orator...
After deposition in the respiratory tract, nanoparticles exhibit acute, neutrophil-driven inflammato...
[[abstract]]A great many governments have schemed their top priority to support the research and dev...
Objectives: Nanomaterial production and the number of people directly in contact with these material...
Assessment of respiratory tract deposition of nanoparticles is a key link to understanding their hea...
Nanomaterial and nanotechnology safety require the characterization of occupational exposure levels ...
Production and handling of engineered nanomaterials is currently the subject of an increasingly larg...
Abstract Backgrounds Exposure to nanoparticles in the workplace is a health concern to occupational ...
Particle biokinetics is important in hazard identification and characterization of inhaled particles...
Particle biokinetics is important in hazard identification and characterization of inhaled particles...
Given the results of experimental studies, occupational or environmental exposures to manufactured n...
The introduction of engineered nanostructured materials into a rapidly increasing number of industri...
Real-time size, mass and number particle concentrations, and emission rates in university laboratori...
As workplace air measurements of manufactured nanoparticles are relatively expensive to conduct, mod...
Abstract Risk, associated with nanomaterial use, is determined by exposure and hazard potential of t...
Real-time size, mass and number particle concentrations, and emission rates in university lab-orator...
After deposition in the respiratory tract, nanoparticles exhibit acute, neutrophil-driven inflammato...
[[abstract]]A great many governments have schemed their top priority to support the research and dev...
Objectives: Nanomaterial production and the number of people directly in contact with these material...
Assessment of respiratory tract deposition of nanoparticles is a key link to understanding their hea...