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Science News Archive July 2017 - Page 17


Page 17 of 37

Despite a great grip, geckos sometimes slip

Researchers found that geckos don't always have enough adhesive ability to save themselves, especially when encountering unexpected falls. The study's results could lead to a better understanding of how geckos stick to surfaces and potentially inspire new technologies.

SourceCornell University·JournalInterface·DateJul 19, 2017

Grant supports deep dive into microbes

The University of Delaware research team, led by Jennifer Biddle, will investigate how environmental factors affect gene expression in microbes. They aim to develop a new method for detecting epigenetic signals, which could have wide-ranging impact on human health and renewable energy.

Exercise packs a punch against inflammation

Physical activity has strong anti-inflammatory properties, playing a crucial role in chronic diseases like type 2 diabetes and cardiovascular disease. Exercise stimulates cytokines IL-6 and IL-10, inhibiting TNF-α and limiting IL-1β signalling to combat inflammation.

SourceWiley·JournalEuropean Journal of Clinical Investigation·DateJul 19, 2017

Blood test IDs key Alzheimer's marker

Researchers have developed a blood test that can detect amyloid beta plaques in the brain, a key characteristic of Alzheimer's disease. The test measures levels of three different amyloid subtypes and has been shown to be highly accurate in identifying individuals with altered levels of amyloid in their brains.

Teaching without training

A recent study found that 40% of new secondary science teachers teach mostly or entirely out of field, with 64% having at least one out-of-field course in their first five years. This can lead to constrained teaching and rote memorization rather than in-depth learning

SourceBrigham Young University·JournalJournal of Research in Science Teaching·DateJul 19, 2017

Understanding genetic synergy in cleft palate

Researchers investigate how genetic genes IRF6 and SPRY4 interact during fetal development to form the palate. Studies reveal that these two genes interact to reduce adhesion of the oral surface to the tongue, leading to cleft palate formation. The study aims to better understand this interaction to address defects in palate creation.

SourceChildren's National Hospital·JournalJournal of Dental Research·DateJul 19, 2017

Individual insight into brain networks

Harvard scientists have identified two brain networks that lie side-by-side in the brain and may play key roles in planning, remembering and imagination. These networks are intertwined, with one connected to memory structures while the other isn't, suggesting they originated from similar processes during brain development and evolution.

SourceHarvard University·JournalNeuron·DateJul 19, 2017

Brains are more plastic than we thought

Researchers at McGill University have shown that practice can alter the way the brain uses sensory information, including visual perception. By temporarily deactivating a critical brain region, subjects who practiced with moving lines were able to perceive motion despite the region's inactivation.

SourceMcGill University·JournalNeuron·DateJul 19, 2017

Making chicken feathers

The study reveals that even spacing of cell clumps is set by the gentle tug of war among cells as an organism grows, triggering genes that produce follicles and feathers. This discovery could lead to creating artificial skin with hair follicles and sweat pores for grafts.

Evolution of the fungus that is devastating wheat crops

A global study has identified the evolutionary steps leading to the spread of the wheat blast fungus, a pathogen causing significant yield losses in Asia and South America. The fungus emerged through host jumps from a weed pathogen and its distribution was initially restricted to South America before re-emerging on the Eurasian continent.

SourceKobe University·JournalScience·DateJul 18, 2017

Revealing particle separation

Scientists have developed a new method for detecting extremely small amounts of DNA using associating and dissociating nanodimer analysis (ADNA). The method can differentiate true signals from noise and detect deviations of individual bases, with a detection limit of about 46 DNA copies.

SourceWiley·JournalAngewandte Chemie International Edition·DateJul 18, 2017