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Purdue University


Researchers develop technologies to devour food pathogens

Researchers have developed a laser-based technology that can rapidly detect and identify many types of bacteria, making it three times faster and one-tenth as expensive as current methods. A second innovation uses chlorine dioxide gas to kill pathogens on produce, offering a highly effective and efficient solution.

SourcePurdue University·JournalJournal of Biomedical Optics·DateOct 5, 2006

Researcher lights the way to better drug delivery

A Purdue University researcher has shed light on the details of one mechanism by which targeted drug therapy is achieved. The understanding of how to deliver and unload a cancer drug can be extrapolated to other diseased cells, including those involved in arthritis, multiple sclerosis, and Crohn's disease.

SourcePurdue University·JournalProceedings of the National Academy of Sciences·DateSep 8, 2006

Study finds some faithful less likely to pass the plate

A study by Purdue University researcher Ken Ferraro found that women who use religious media resources are more likely to be obese, while men who seek comfort through religion are less likely to be obese. To combat this, religious leaders should encourage physical activity and healthy eating habits.

SourcePurdue University·JournalJournal for the Scientific Study of Religion·DateAug 24, 2006

Researcher hits bulls-eye for antibiotic target

A Purdue University researcher has determined the structure of a protein that controls starvation response in E. coli, which can be targeted to combat bacterial infections. The protein is found in numerous harmful bacteria and is an excellent antibiotic target due to its high processivity.

SourcePurdue University·JournalStructure·DateAug 21, 2006

Research pinpoints West Nile virus antibody binding site

Purdue University researchers identified a precise location where an antibody binds to the West Nile virus and proposed a theory for its neutralization mechanism. The study suggests that this antibody works by blocking the positional changes needed for the E protein before fusion, preventing infection.

SourcePurdue University·JournalProceedings of the National Academy of Sciences·DateAug 14, 2006

Purdue research helps advance new rocket technology

Purdue engineers are developing advanced rocket technology that uses kerosene, eliminating the need for foam insulation. The research focuses on understanding combustion instability to create better computational models for designing rocket engines. This will enable more efficient and safer testing, reducing the risk of accidents and h...

Purdue creates new low-cost system to detect bacteria

Researchers at Purdue University developed a new low-cost system that analyzes scattered laser light to quickly identify bacteria. The technique uses a petri dish containing bacterial colonies growing in a nutrient medium, projecting the scattered light pattern onto a screen behind the petri dish.

SourcePurdue University·JournalJournal of Biomedical Optics·DateJul 27, 2006

Nanotubes act as 'thermal velcro' to reduce computer-chip heating

Researchers at Purdue University have developed thermal interface materials with carbon nanotubes that conduct heat more efficiently than conventional materials. The nanotube-based interfaces can reduce the temperature rise of computer chips by up to 5 degrees Celsius, improving overall performance and reducing the risk of damage.

SourcePurdue University·JournalInternational Journal of Heat and Mass Transfer·DateMay 2, 2006

Micro-pump is cool idea for future computer chips

Researchers at Purdue University have developed a new cooling system that uses a micro-electromechanical system (MEMS) pump to cool electronic devices on a tiny scale. The device is integrated onto a silicon chip and can create a cooling action through electrohydrodynamics, enhancing the pumping action by up to 13 percent.

Purdue project could help pets serve as disease watchdogs

Researchers at Purdue University have developed a national surveillance network using pet medical records to predict disease outbreaks in humans and animals. The program found correlations between flea and tick infestations and Lyme disease, as well as an increase in canine leptospirosis cases over the past decade.

SourcePurdue University·JournalVector-Borne and Zoonotic Diseases·DateMar 24, 2006

New research forecasts better weather forecasts

A Purdue University researcher has developed a more accurate weather prediction model by incorporating the amount of moisture surface vegetation releases into the upper atmosphere. This new approach improved forecasts of storm intensity, location, and timing, leading to better severe weather predictions.

SourcePurdue University·JournalMonthly Weather Review·DateFeb 28, 2006

Software promises more efficient design process

Researchers at Purdue University have developed a new approach that unifies the design and analysis processes, allowing for concurrent computation. This integration enables faster processing of complex problems in industries such as automotive and aerospace, reducing computational power required.

SourcePurdue University·JournalAdvances in Engineering Software·DateFeb 28, 2006

A little household help may reduce health-care costs among elderly

A Purdue University study found that older adults who receive daily assistance with basic tasks like bathing and dressing are less likely to be hospitalized for acute illnesses. After six weeks of help, hospital admissions significantly declined, suggesting that home-based care can reduce healthcare costs while improving quality of life.

SourcePurdue University·JournalJournal of the American Geriatrics Society·DateFeb 13, 2006

File compression can expand mammography's power

Researchers have discovered that compressing digitized mammograms using file-compression techniques improves their interpretability by radiologists, allowing for remote screenings in underserved communities. The compression method retains essential features that are crucial for cancer diagnosis.

SourcePurdue University·JournalRadiology·DateDec 20, 2005

Purdue's gold nanorods brighten future for medical imaging

Researchers at Purdue University have developed a new type of medical imaging technique that uses gold nanorods to detect tiny structures in the bloodstream. The nanorods yield images nearly 60 times brighter than conventional fluorescent dyes, making them ideal for early detection of cancer.

SourcePurdue University·JournalProceedings of the National Academy of Sciences·DateOct 25, 2005