A group of researchers from Nagoya University has discovered a previously unknown pathway that regulates whether a plant uses its resources for growth or stress tolerance. The discovery involves the PSY family of hormones, which bind to receptors and mediate the switch between the stress response and growth.
A team of international researchers used aurora data to assess the impact of radiation-belt electrons on the ozone layer. They found a localized ozone hole in the mesosphere, about 400 km wide, directly below isolated proton auroras, with up to 10-60% of ozone destroyed.
Nagoya University scientists developed a controller with a sleep mode to procure energy only when needed, reducing the need for storage batteries and capacitors. This innovative solution enables efficient energy saving and promotes the practical application of power packet type energy Internet.
A Nagoya University research team found that soil nitrate in the riparian zone is the primary source of increased stream nitrate during rainstorms. The researchers' study may help reduce nitrogen pollution and improve water quality in downstream bodies of water.
A team of researchers at Nagoya University has developed a novel tissue-mimicking phantom using konjac, enabling surgeons to practice fluorescence-guided cancer surgery. The model's use of indocyanine green and konjac jelly makes it suitable for training with electrocautery, promoting safer and more reliable surgical techniques.
A team at Nagoya University has created a new type of mechanochromic material, fluorenylidene-acridane (FA), which changes color in response to mechanical pressure. The material's unique properties allow it to be quantitatively analyzed, enabling the measurement of its color change and structural changes with high spatial resolution.
Researchers found that symbiotic fungi in reared ambrosia beetles differed from those in wild beetles, potentially leading to a new biocontrol method for preventing wilt disease. The study identified nine filamentous fungi and one yeast as symbionts, including previously undescribed species.
Scientists successfully inhibited cancer cell growth using a modified pyrrolizidine alkaloid that avoids liver damage. The approach uses 'on-site synthesis' near cancer cells to limit toxicity.
Researchers at Nagoya University have identified new agents involved in DNA damage tolerance pathways, including RFWD3, which may contribute to anticancer treatment. The study's findings suggest that inhibiting these pathways could sensitize cancer cells to conventional chemotherapeutic agents.
Researchers at Nagoya University have discovered a new treatment for type 1 diabetes that uses leptin to improve insulin-alternative effects in mice. The combination of leptin and a PTP1B inhibitor normalizes blood glucose levels without the need for insulin, reducing hypoglycemia risk.
A study by Nagoya University found that elderly drivers have longer reaction times, slower decision-making, and increased brain activity in areas responsible for inhibition and switching tasks. This suggests a higher cognitive load in situations requiring complex foot responses while driving.
A research group from Nagoya University found that large-scale flowering and seeding of dwarf bamboo boosts Japanese field mouse populations, especially in mast years. The team's study showed an increase in both large and small mouse populations two years after the event, indicating good breeding conditions.
A study by Nagoya University found that the quality of a thoroughbred's sire, not its broodmare's age, determines its racing success. The researchers analyzed data from over 15,000 horses and discovered that breeding older females with high-performing males resulted in lower win rates.
A study by Nagoya University researchers found age-related differences in gait patterns of Japanese elementary school children, including increased cadence and decreased step and stride length. The findings provide an important tool for assessing normal and pathological gait, potentially informing orthopedic treatment and rehabilitation.
Researchers at Nagoya University have developed a new technique for creating polymers with controlled molecular weight and high optical activity. The discovery uses a combination of living cationic polymerization and asymmetric cationic polymerization, resulting in optically active polymers with unique properties.
Researchers used microwaves from the cosmic microwave background to measure dark matter distribution around distant galaxies. The findings suggest a different clumpiness measurement than predicted by the Lambda-CDM model, hinting at a possible flaw in the current cosmology theories.
A Nagoya University research group has developed an AI algorithm that can diagnose idiopathic pulmonary fibrosis with high accuracy, based on non-invasive examinations and medical data. The technology may revolutionize medical care by allowing doctors to request AI-assisted diagnoses instead of specialists.
Researchers at Nagoya University used satellite data to track ionospheric disturbances after the 2022 Tonga underwater eruption, detecting earlier signs of tsunami waves. The team found that electromagnetic waves traveled 1000 km/s, much faster than air pressure waves, allowing for potentially quicker tsunami warnings.
A new AI technology called in silico FOCUS analyzes cell images to predict therapeutic effect of drugs for neurodegenerative disorders like Kennedy disease. The technology has 100% accuracy and can analyze several hundred thousand cells in just a few minutes.
Researchers at Nagoya University discovered a tubulin homolog protein in the archaeon Odinarchaeota, which forms microtubules critical to cell organization. The study reveals an intermediate structure between bacterial and eukaryotic cells, shedding light on the evolution of complex cellular features.
Researchers at Nagoya University created a 3D model of the human genome structure, analyzing its dynamics and functions. The study provides new insights into chromatin distribution, cell division, and transcription regulation, shedding light on cellular processes and potential disease mechanisms.
Researchers at Nagoya University developed a chemical-only process to create customized mRNA vaccines, offering an inexpensive and large-scale production of mRNA. The new method allows for precise molecular design and stable mRNA with improved translational activity.
A third dose of COVID-19 vaccine may be essential for kidney transplant patients in Japan to prevent severe disease and infection. Researchers found that only a third of patients developed sufficient antibodies after two doses, highlighting the need for additional protection.
A team from Nagoya University created an artificial neural network model that performed the delayed matching-to-sample task and analyzed its behavior. The model was able to evolve to exhibit human-like metamemory, adapting to its environment by learning and evolving. This breakthrough aims to create machines with memories like humans.
New research suggests vitamin D can effectively prevent ovarian cancer by restoring the body's natural defenses. The study found that vitamin D counteracts the process of peritoneal metastasis, which allows cancer cells to spread, and strengthens the barrier effect of mesothelial cells.
A recent study led by Nagoya University found that human-made iron in the Southern Ocean may be up to ten times higher than previously thought, with a 60% contribution from fossil fuel combustion. This could lead to decreased photosynthesis and increased CO2 levels, exacerbating global warming.
Researchers from Nagoya University found that Quetzalcoatlus was not suited for soaring flight due to its large wing loading. The study suggests that the Quetzalcoatlus's thermal soaring abilities were below those of modern birds, contrary to previous assumptions.
A team of scientists has developed a method to extract precious metals like gold and platinum-group metals from electronic waste using the Picasso pigment, Prussian blue. This technique shows promise in improving the recycling of valuable metals from nuclear and electronic wastes.
Researchers at Nagoya University developed a device combining an air-curtain and LED irradiation to inactivate viruses in close environments. The technology blocks exhaled air and destroys virus particles, inactivating 99.9% of COVID-19 particles.
A novel connection between genes involved in mitosis and glucose metabolism was found by researchers at Nagoya University. They demonstrated a gene bypass process using evolutionary repair experiments, suggesting that suppressing both Plk1 and CK1 could be more effective in cancer treatment.
Scientists have identified magic-angle twisted bilayer graphene as a promising material for high-temperature superconductivity. Researchers found that nematic order in MATBG originates from the interference between fluctuations of a novel degree-of-freedom combining valley and spin degrees.
A study by Nagoya University researchers found that plants recognize rain as a risk factor for disease and activate their immune system through hair-like structures called trichomes. This discovery could lead to the development of methods to protect plants from infectious diseases caused by rain.
A recent study published in Advances in Space Research has identified the earliest record of a candidate aurora in an ancient Chinese text, dated to 977-957 BCE. The 'five-coloured light' mentioned in the Bamboo Annals is consistent with a large geomagnetic storm and provides valuable insights into space weather variability.
Researchers have deciphered the activity of B12-dependent radical SAM enzymes, which regulate methane production by archaea. The study's findings have implications for biotechnologies that control key enzymatic events and could help reduce global warming.
Researchers develop NAnocrystalling Transport path in Ultrathin dielectrics for REinforcing passivating contact to overcome surface passivation and conductivity tradeoffs. The new contact consists of three-layer structures made up of silicon nanoparticles sandwiched between two layers of oxygen-rich SiOx.
Researchers discovered two WOX genes controlling lateral root primordium size in rice, improving drought stress tolerance and crop production. QHB/OsWOX5 regulates S-type roots, while OsWOX10 mediates L-type root development, enhancing water uptake under drought conditions.
Scientists from Nagoya University investigate the formation of air channels in wetland plants, which help them survive floods and droughts. The study reveals that a phytohormone called auxin is required for normal root growth, and two factors lead to the induction of aerenchyma formation in response to flooding.
Nagoya University researchers have discovered how bird brains compute time differences between sounds reaching each ear to determine their location. This process relies on the clustering of nerve junctions in specialized dendrites dedicated to low-frequency sounds.
Researchers from Nagoya University revealed a new energy transfer pathway between high-frequency plasma waves and low-energy ions, generating low-frequency plasma waves through collisionless plasma. This discovery could contribute to improved space weather forecasting and safer satellite operations.
Researchers used computer simulations to model how dust collides and grows into solid cores for gas giants. This process enables the formation of massive cores necessary for gas accumulation within a few hundred thousand years.
Researchers at Nagoya University and Zeon Corporation have developed a new thermoplastic rubber material, i-SIS, with an extremely high tensile toughness of 480 MJ/m³. The material's impact resistance surpasses that of glass-fiber-reinforced plastic (GFRP), making it suitable for use in automotive and other industries.
Researchers at Nagoya University developed a scalable method to produce high-temperature superconductors with artificial pinning centers, improving their properties. The technique, known as grain boundary engineering, can help develop stronger, inexpensive, and high operating temperature superconductors.
Scientists at Nagoya University discovered that Japanese lizard beetle larvae feed on yeast injected by their mothers, but the yeast only consumes simple sugars. The study found that the yeast grows on small molecule monosaccharides and not on complex sugars despite its ability to digest them.
Researchers at Nagoya University have discovered a Ta2PdSe6 crystal with an unprecedented large Peltier conductivity, reaching 100 A cm^-1 K^-1 at 10 K. The team attributes this to the high mobility and low concentration of holes within the crystal.
Scientists have clarified phytochrome's atomic-scale resolution, unlocking its role in regulating bacterial pathogenicities. The study provides a new photoactivation model explaining the signaling mechanism of black rot disease.
Researchers found that dual-regulation by two distinct groups of splicing factors ensures phase-separation of large exon-containing transcription factors. SRSF3 overrides the splicing-suppressive activity of hnRNP K on large exons.
Research found strong correlation between Arctic black carbon abundance and mid-latitude biomass burning, indicating models underestimate BC contribution from biomass burning by a factor of three. This has significant implications for Arctic warming and climate change.
Researchers from Nagoya University have found a dynamical one-parameter scaling for surface roughness and entanglement entropy in random quantum systems. This discovery has implications for understanding nonequilibrium physics and classifying universal phenomena.
Scientists have improved understanding of a key protein that makes the stomach acidic, shedding light on potential applications in drug development. The study found an unusual feature in the protein, which needs to bind to only one potassium ion to trigger its pump mechanism.
Researchers generate circularly polarized light at room temperature, a breakthrough for optical quantum information processing. The device uses strained semiconductors to produce twisting 'chiral' valley-polarized light, promising vast data storage capabilities.