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University of Cincinnati


UC anthropologist advocates broader surveys of ancient landscapes

Ancient societies successfully transformed their environments through slow, incremental changes to living, labor, agricultural, and water collection/distribution practices. In Bali, Indonesia, centuries-old environmental/cultural/religious practices remain functional, highlighting the complexity of human ecology in ancient landscapes.

SourceUniversity of Cincinnati·JournalProceedings of the National Academy of Sciences·DateApr 7, 2003

The hard work of vigilance can improve on cue

Researchers found that providing reliable warning cues enhances vigilance performance, maintaining attention and efficiency over time. The study's results have practical implications for designing operational cueing systems to reduce brain strain and improve safety in various applications.

SourceUniversity of Cincinnati·JournalTheoretical Issues in Ergonomics Science·DateJan 8, 2003

Casket resurrects new vision of ancient Jerusalem

A Cincinnati ossuary has been discovered to feature a unique image of a massive Jerusalem tomb from the first century, associated with early Rabbi Hillel and Jesus of Nazareth. The ossuary's distinctive three pyramids have garnered attention from scholars, providing new insights into ancient Jerusalem's architecture.

SourceUniversity of Cincinnati·JournalJournal of Jewish Studies·DateSep 19, 2002

Biochemist finds flexibility in key HIV protein

A University of Cincinnati biochemist has discovered that the V3 loop region of the HIV gp120 protein is structurally flexible, changing its shape as needed to bind to host cells. This finding rules out using a fixed structure as a target for anti-HIV drugs, making it harder to develop effective treatments.

SourceUniversity of Cincinnati·JournalJournal of Biological Chemistry·DateJan 15, 2001

UC researchers use Doppler ultrasound

Researchers at UC have developed a novel method for detecting early signs of artery blockages using Doppler ultrasound, which can accurately predict turbulence intensity and detect atherosclerosis. This non-invasive technique is safer than current methods requiring ionizing radiation or pressure transducer insertion.