A new study analyzes how climate change has historically affected childhood malaria rates in Africa and models future impacts under different warming scenarios. The research underscores the growing threat to children's health and the urgency for climate-adaptive malaria control measures.
Researchers have observed that electric dipoles in an ultrathin ferroelectric film can orient horizontally rather than vertically. This unexpected behavior could lead to novel electronic devices with faster switching and lower energy use. The findings, published in Nature, challenge existing theories about dipole alignment in thin films.
New research reveals that fruit flies detect the edges of odour plumes by moving their antennae, helping them navigate toward food sources. The study identifies specific neural circuits behind this behaviour, advancing understanding of insect olfaction and potentially inspiring bio-inspired sensors for robotics.
Researchers have developed an AI system called 'Raygun' that can shrink or supersize proteins, simplifying the editing of their structures. This breakthrough could accelerate protein engineering for applications in medicine and materials science, making complex modifications more accessible.
Scientists have identified the earliest known cephalopod, a tiny creature measuring only one millimeter, that lived approximately 520 million years ago. This discovery provides crucial insight into the early evolution of cephalopods, a group that includes modern octopuses, squid, and cuttlefish, suggesting their ancestors were much smaller than previously thought. The finding reshapes our understanding of the origins and early diversification of this important marine lineage.
This article explores the tension between long-term investment horizons needed for quantum computing development and the commercial pressure for rapid returns. It examines strategies for companies and investors to balance patient capital with agile product cycles. The discussion matters as quantum technologies approach practical applications, requiring new financing and business models.
Researchers are adapting standard silicon chip manufacturing techniques to build quantum processors. This approach leverages existing fabrication methods, potentially enabling scalable and cost-effective quantum computers. The work marks a key step toward practical quantum devices.
A new study examines the trade-offs of ocean iron fertilization, a geoengineering method that aims to boost carbon absorption by stimulating phytoplankton growth. Researchers found that while it can help mitigate climate change, it risks significant ecological disruptions, such as harmful algal blooms and oxygen depletion. The findings highlight the need for careful assessment before deploying such large-scale interventions.
Researchers have discovered that intestinal stem cells count their self-renewal divisions, specifically up to eight, to switch multipotency and preserve proper cell ratios in the gut lining. This counting mechanism helps maintain tissue homeostasis and could have implications for understanding regeneration and cancer. The finding was reported in two studies in Nature.