my.jhsph.eduBloomberg School of Public Health HomeDEPARTMENTSACADEMICSRESOURCESRESEARCH & CENTERSADMISSIONS
Public Health News
NEWS CENTER

Home

Terrorism and Public Health Preparedness

News Archives

SUBSCRIPTIONS

RSS/Podcasts 
Magazine 
Email Updates
 
Media Archive

MEDIA INQUIRIES

Media Services

410-955-6878

paffairs@jhsph.edu

HIGHLIGHTS

School at a Glance 

Dean's Letter

Accreditation

Environmental Sustainability

Scholars

Lectureships

Student Webpages

Honors & Awards

PUBLICATIONS

View Contents

Johns Hopkins Public Health Magazine

View Contents

View Contents




Learn About Our Global Projects
Learn About Our Global Projects

Learn About Our Global Projects



 email to a colleague | support our research 

May 13, 2008

National Study Examines Health Risks of Coarse Particle Pollution

Researchers at the Johns Hopkins Bloomberg School of Public Health have conducted the largest nationwide study on the acute health effects of coarse particle pollution. Coarse particles are airborne pollutants that fall between 2.5 and 10 microns in diameter. These particles are larger than fine particles (less than 2.5 microns) and are produced by processes such as mechanical grinding, windblown dust and agriculture. These particles are of interest from both public health and regulatory perspectives.

The researchers examined associations between daily changes in hospital admissions rates for cardiovascular and respiratory outcomes and daily changes in coarse and fine particulate matter levels for 108 urban U.S. counties, which included approximately 12 million people enrolled in Medicare during the years 1999 through 2005.

The study, published in the May 14, 2008, edition of JAMA, found no evidence of an association between daily changes in coarse particles and the number of hospital admissions for respiratory diseases. The study found evidence of an association with hospital admissions for cardiovascular diseases. After taking into account fine particle levels, the association with coarse particles remained but was no longer statistically significant. The study also found that the risk of a cardiovascular hospital admission due to coarse particles was higher in more urban counties.

“Overall, the evidence was mixed, but the data suggest a link between cardiovascular admissions and ambient exposure to coarse particulate matter. This association was not statistically significant when we adjusted for fine particulate matter,” said Roger D. Peng, PhD, lead author of the study and an assistant professor in the Bloomberg School’s Department of Biostatistics. “Although the evidence was not conclusive, the benefit of our approach is that it can be easily replicated when new data become available. Given that we found an association with coarse particles before taking into account fine particulate matter, our findings need consideration when the Environmental Protection Agency’s standard for particles in the air is next reviewed.”

The EPA regulates the levels of fine particle pollution, but does not yet have a standard for coarse particle pollution.

Previous studies by the Hopkins researchers demonstrated a strong link between fine particulate matter pollution and increased hospital admissions for cardiovascular and respiratory illnesses.

“We found continued evidence of an association between fine particulate matter and risk for hospitalization in this new data set, an extension by three years of our previous analyses,” said senior author Francesca Dominici, PhD, professor in Biostatistics. “We urge continued monitoring of the coarse fraction of particulate matter so that further studies can be carried out.”

“Coarse Particulate Matter Air Pollution and Hospital Admission for Cardiovascular and Respiratory Diseases Among Medicare Patients” was written by Roger D. Peng, PhD; Howard H. Chang, BS; Michelle L. Bell, PhD; Aidan McDermott, PhD; Scott L. Zeger, PhD; Jonathan M. Samet, MD; and Francesca Dominici, PhD.

The researchers were funded by grants from the Environmental Protection Agency, the National Institute for Environmental Health Sciences, the NIEHS Center in Urban Environmental Health and the Health Effects Institute.

Public Affairs media contact: Tim Parsons at 410-955-6878 or paffairs@jhsph.edu.

TOOLS

Contact JHSPH
Feedback
Email this Page
Course Search
Faculty Directory
Find an Expert
CoursePlus

Make a Gift

SEARCH
  This section only
  Entire site
LEARN MORE ABOUT
Malaria

Researchers Identify New Mosquito Virus

What Drives a Fatal Form of Malaria

"Breaking the Cycle" Special Report

Malaria Research Institute

Water

Q&A: Bisphenol A and Plastics

The Future of Drinking Water: Making it Safe

Email Hoax About Freezing Water Bottles

Pandemic Flu

Pandemic Flu Guide for Individuals and Families

FAQ



Johns Hopkins University

  © 2008, Johns Hopkins University. All rights reserved.
 Web policies, 615 N. Wolfe Street, Baltimore, MD 21205