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Science News Archive 2018 - Page 140


Page 140 of 473

The gene code of growing limbs

Researchers identified six main combinations of five Hoxd genes involved in digit development in mice, providing a higher resolution and clarity in understanding how architect genes orchestrate the rhythm of development. This study offers a new perspective on limb patterning motifs and could pave the way for future genetic work.

Resynchronizing neurons to erase schizophrenia

Researchers at UNIGE successfully resynchronized neurons to correct desynchronization in neural networks, suppressing behavioral symptoms associated with schizophrenia. The study, published in Nature Neuroscience, offers promising results for a new therapeutic approach targeting defective inhibitory neurons.

SourceUniversité de Genève·JournalNature Neuroscience·DateSep 17, 2018

New school of thought: In-class physical exercise won't disrupt learning, teaching

Researchers found that two-minute bursts of in-class exercise breaks increased daily physical activity for elementary children without affecting math performance. Teachers reported that the breaks were doable and didn't disrupt learning, with most students returning to class work quickly after breaks.

SourceUniversity of Michigan·JournalTranslational Journal of the American College of Sports Medicine·DateSep 17, 2018

Cord blood clue to respiratory diseases

Researchers found high immunoglobulin E (IgE) levels among babies born in October and December in Melbourne, indicating a potential link between maternal exposure to grass pollen and increased risk of respiratory diseases. Conversely, being pregnant for an entire grass pollen season may have a protective effect on babies.

SourceLa Trobe University·JournalEnvironment International·DateSep 15, 2018

How a tetrahedral substance can be more symmetrical than a spherical atom: A new type of symmetry

Researchers at Tokyo Institute of Technology have demonstrated that special tetrahedron nanostructures composed of certain metals can exhibit a higher degree of symmetry than spherical atoms. This new type of symmetry may lead to unprecedented electrical and magnetic properties, enabling the creation of novel electronic materials.

SourceTokyo Institute of Technology·JournalNature Communications·DateSep 14, 2018