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Hollywood Doesn’t Always Portray Things From the Right ASPECT

Friday, January 2nd, 2009

About the author: Jeffrey Robichaud is a second generation scientist with EPA who started in 1998.  He serves as Chief of the Environmental Assessment and Monitoring Branch in Kansas City.

Movies require you to suspend your disbelief, but when you watch a film that hits close to home it can be tough. I have a friend in federal law enforcement who squirms when cardboard cutout agents run across the screen. Action flicks don’t do his profession justice, but at least his job is sometimes glorified on celluloid. The only two movies I can remember featuring a prominent EPA employee are Ghostbusters and the Simpsons Movie, neither of which ever made a kid say, “Man, when I grow up I want to work for the EPA.” On the off-chance your youngster was inspired to seek out public service please let them know we don’t inspect unlicensed nuclear storage facilities, nor do we have a fleet of helicopters. We do however, have one cool plane.

photo of front of plane with a group of people standing nearbyEPA’s Airborne Spectral Photometric Collection Technology, known as ASPECT, is an aircraft equipped with sensors that allow for surveillance of gaseous chemical releases from a safe distance. ASPECT gives emergency responders information regarding the shape, composition and concentration of gas plumes from disasters such as a derailed train, factory explosion or terrorist attack.

Since its inception ASPECT has flown over several fires, provided support during the Olympics and Columbia shuttle recovery, and supplied some of the first aerial images of the devastation along the coast during Katrina.

view of city horizon with a large plume of blue smoke rising over a highwayThis was the scene in Kansas City outside our office windows in 2007 when a chemical facility went up in flames. ASPECT deployed and was instrumental in verifying that while ominous, the fire did not present a significant health threat to the community (the white signature you see below is the fire).>overhead image from plane with white area indicating fire

Most of the technology you see in movies is sheer fantasy, but EPA’s high-tech plane and the scientists who operate it are worthy of a spot in the next summer blockbuster. Here’s hoping for the appearance of an EPA scientist who isn’t a bad guy (although with my face the best I could hope for is Thug #4 in the next straight to DVD clunker).

Biodiversity and Human Disease – How EPA is Studying the Connections

Wednesday, October 8th, 2008

Each week we write about the science behind environmental protection. Previous Science Wednesdays.

About the author: Montira Pongsiri, PhD, MPH, is an Environmental Health Scientist in EPA’s Office of the Science Advisor.

I was first associated with EPA as a STAR Fellow studying the risks and tradeoffs of using pesticides to control infectious diseases. Today, I’m an EPA scientist focusing on infectious diseases in the wider framework of ecosystem services, the direct and indirect benefits people derive from ecosystems.

The primary questions I am helping EPA explore are: What is the underlying mechanism of disease emergence, and do changes in biodiversity play a role?

Our research projects are unique in their interdisciplinary approach, involving ecologists, public health specialists, social scientists, and earth scientists, and also by including decision-makers early in the process to help ensure that new findings can be used to make better decisions.

photo showing two scientists checking opossum for ticks which are removed and collected to test for the presence of the Lyme Disease bacteriumAt one field site in northwest Connecticut, an opossum is checked for ticks, which are removed and collected to test for the presence of the Lyme disease bacterium, Borrelia burgdorferi.

One area we’re studying is Lyme disease risk (chronicled previously by Melissa Anley-Mills and Aaron Ferster). Research partner Richard Ostfeld of the Cary Institute of Ecosystem Studies hypothesizes that a greater diversity of native mammal hosts could help decrease the risk of people getting Lyme disease. How? People get Lyme disease through tick bites, and ticks acquire the Lyme disease agent by feeding on mammals such as mice and squirrels. Not all mammals are equally efficient, or “competent,” in transmitting the disease agent to the ticks. So perhaps having a greater diversity of mammalian species, with their varying capabilities of transmitting the pathogen, could “dilute” the rates by which ticks get infected. Lower rates of tick infection equal lower risk of human infection.

There is also a connection between animal diversity and landscape condition. Forest destruction and fragmentation in the U.S. have been shown to reduce mammalian species diversity and to increase populations of the white-footed mouse—the most competent host of Lyme disease.

With the support of a new STAR grant, Ostfeld and his colleagues are testing this hypothesis by manipulating mammalian host communities in forest fragments and studying the effects on pathogen transmission rates.

When we better understand the mechanisms linking biodiversity and human disease through this and other research studies, we may be able to develop environmentally-based and behavioral approaches to both promote conservation as well as to reduce the risk of human disease – a win-win for environment and public health.

In addition to the Cary Institute of Ecosystem Studies, other EPA research partners include the CDC, Yale, NASA Ames, UCLA, the Institute for Bird Populations, Rutgers, and the NJ Department of Environmental Protection.