Researchers found that AI-enhanced diagnosis helps doctors accurately detect fetal congenital heart disease, with fellows making the most accurate diagnoses. The new system uses graphical charts to represent the AI's analysis of ultrasound videos, improving accuracy and trust among medical professionals.
Researchers have used computer simulations to show that small adjustments to certain variables can modify weather systems, mimicking the 'butterfly attractor' phenomenon in chaos theory. This approach could lead to weather control technology and prevent extreme windstorms.
SourceRIKEN·JournalNonlinear Processes in Geophysics·TypeComputational simulation/modeling·DateMar 28, 2022
Researchers developed a lightweight exoskeleton that uses machine learning to predict user intentions and provide assistance. The system successfully helped participants stand up, demonstrating potential for supporting individuals with mobility impairments.
SourceRIKEN·JournalIEEE Robotics and Automation Letters·TypeExperimental study·DateMar 22, 2022
Researchers at RIKEN CSRS have developed a non-transgenic method to modify plant genes using a bioactive molecule spray, which can be used to improve crop yield and resistance to pests. The technique has shown promising results in improving economically desirable quality traits in crops.
Researchers from RIKEN created Nikola, an android child that can convey six basic emotions through facial expressions. The study tested the quality of these expressions and found that humans can recognize them with varying accuracy.
A new method to produce hydrogen from water has been discovered, using cobalt and manganese as catalysts. This breakthrough could lead to a cleaner and more sustainable hydrogen economy, reducing reliance on fossil fuels.
A new study published in Nature Communications found that amylin peptide plays a crucial role in regulating social contact-seeking behavior in female mice. The researchers discovered that isolation leads to a decrease in amylin levels, while social reunion increases them.
Researchers at RIKEN have developed a new retinal transplant technique by engineering human-derived retina sheets to lose bipolar cells, allowing better connections to host retinas and improved responses to light. The technique has shown substantial functional improvement in animal studies and is now poised for human clinical trials.
Researchers achieved a key milestone toward developing a fault-tolerant quantum computer by demonstrating a two-qubit gate fidelity of 99.5% using electron spin qubits in silicon. They found that specific Rabi frequencies enabled universal operations and high accuracy in performing quantum calculations.
Researchers at RIKEN CBS demonstrate that neural networks minimize energy cost and solve mazes efficiently, pointing to a set of universal mathematical rules. The findings will aid in analyzing impaired brain function and generating optimized neural networks for artificial intelligences.
Researchers at RIKEN successfully treated cancer in mice using metal catalysts that assemble anticancer drugs inside the body. The technique avoids indiscriminate tissue damage and increases cancer-inhibiting activity by 1000 times.
Scientists at RIKEN have found that matter and antimatter respond to gravity in the same way, within an accuracy of four times more precise than previous measures. This suggests that causality and locality hold in relativistic quantum field theories, potentially leading to new physics.
Researchers have discovered that individuals with a specific HLA type can mount a strong killer T cell response to COVID-19 due to cross-reactivity with seasonal coronaviruses. This finding may lead to the development of new vaccines targeting this immune response.
Researchers developed a method to directly bond gold electrodes onto separate ultra-thin polymer films without adhesives or high temperatures. The new technique, called water-vapor plasma-assisted bonding, creates stable bonds between gold electrodes printed into ultra-thin polymer sheets.
Researchers at RIKEN have developed a healthier form of tapioca starch by suppressing multiple genes that increase its resistance to digestion. The resulting starch is composed of longer chains with fewer branches, making it harder to digest and potentially improving intestinal function and blood sugar control.
Researchers discovered that eliminating α-endosulfine (ENSA) or blocking its function reduces brain changes and improves memory in mice. ENSA blocks a potassium channel, which, when blocked, combats excess ENSA levels associated with Alzheimer's disease.
Researchers have successfully manipulated a single skyrmion, a tiny magnetic vortex, at room temperature using pulses of electric current. The team used Lorentz transmission electron microscopy to track the motion of the skyrmion and control its direction with ultrafast pulses of electricity.
A team of scientists has created a novel material composed of catenane molecules, which can adsorb and desorb gas molecules like carbon dioxide. The soft crystal exhibits unique properties, including porosity and deformability, making it suitable for applications such as capturing CO2 molecules.
Researchers discovered zebrafish neurons that monitor prediction errors to efficiently avoid danger, creating a 'hazard map' in the brain. This study sheds light on brain circuits shared across vertebrates, including humans.
Researchers at RIKEN Cluster for Pioneering Research have found that Kleefstra syndrome, a genetic disorder leading to intellectual disability, can be reversed after birth. Postnatal treatment with artificially induced GLP production resulted in improved brain and behavioral symptoms.
A new diagnostic system developed by RIKEN researchers can rapidly and sensitively measure COVID-19 antibodies, enabling precise testing at medical facilities. The system uses a microchip to detect antibodies with sensitivity 500 times higher than conventional methods.
SourceRIKEN·JournalBulletin of the Chemical Society of Japan·TypeExperimental study·DateSep 2, 2021
Scientists from RIKEN have developed a new cooling method that enables more precise measurements of protons and antiprotons' magnetic moment. This breakthrough uses sympathetic cooling to reach temperatures close to absolute zero, significantly improving the precision of previous experiments.
Researchers found that mice can make fine visual discriminations between slightly different lines, suggesting a more complex decision-making process than previously thought. The study's findings highlight the importance of considering non-perceptual biases in understanding animal behavior and decision-making strategies.
The study contributes to deciphering genetic background of unique marsupial characteristics by creating genetically modified opossums. The researchers successfully edited a gene responsible for body pigments, producing albino offspring with inherited genes.
Researchers at RIKEN discovered that acetate triggers an immune response against harmful bacteria by increasing IgA production and altering the balance of intestinal bacteria. The study suggests that acetate can be used to regulate the gut microbiome and prevent disease.
A human variant of the SUV39H2 gene has been linked to autism spectrum disorders, causing cognitive inflexibility in mice and misregulated expression of genes related to brain development. The study suggests that histone methylation plays a crucial role in regulating gene expression, and its absence may lead to serious problems.
The study revealed that natural melatonin is linked to a pre-hibernation state that allows mice to slow down their metabolism and survive when food is scarce. Melatonin-producing female mice also enter a state called daily torpor, a low-power mode similar to hibernation that conserves energy.
A new study led by Kumi Kuroda at RIKEN Center for Brain Science identified the calcitonin receptor as a crucial brain protein driving nurturing behaviors in mice. The research found that this protein motivates mothers to care for their infants, suppressing self-interest and risk-taking behaviors.
Scientists have developed a way to engineer materials at the atomic level using a dry transfer technique. The method uses anthracene as a sacrificial material to precisely position carbon nanotubes, resulting in bright photoluminescence up to 5,000 times brighter than the original molecule.
A team of researchers at RIKEN CPR has demonstrated a successful cancer therapy using artificial metalloenzymes to deliver targeted drug therapies. In mouse tests, they found a 40% survival rate for mice treated with selective cell therapy and a higher survival rate over 77 days when targeting tumors that had already formed.
A study of 50 protoplanetary-disk forming regions found differences in the abundance of complex organic molecules, with some regions having higher concentrations of methanol and acetonitrile. The findings suggest a possible common production mechanism for these molecules, shedding light on their formation in space.
A group of scientists, led by Teruaki Enoto, have discovered that the 'giant radio pulses' emitted by the Crab pulsar include an increase in x-ray emissions, making them hundreds of times more energetic. This finding provides new insights into the mysterious phenomenon of fast radio bursts and puts constraints on models of these events.
A study published in Nature Genetics found that a specific histone modification, H2AK119ub1, acts as a marker for inherited DNA functional modifications from the mother. The researchers discovered that without this modification, fertilized embryos can experience miscarriages and enlarged placentas.
Research reveals glycans on SARS-CoV-2 spike protein play key role in structural changes during cell invasion. Glycans help stabilize Down-form structure and facilitate change to Up-form upon electrostatic repulsion.
Researchers used advanced technique to study phenol reaction at air-water interface, revealing a 10,000-fold increase in reaction speed compared to bulk water. The findings could improve understanding of catalytic chemistry and its impact on the global environment.
Scientists at RIKEN Center for Biosystems Dynamics Research have identified a population of hair follicle stem cells and developed a recipe for normal cyclical regeneration. In the study, 81% of bioengineered hair follicles generated in NFFSE medium went through at least three hair cycles and produced normal hair.
Researchers have developed a new method to detect axions, which are thought to make up 26% of the universe's energy content. The BASE collaboration used ultra-sensitive detectors in Penning trap experiments to set new limits on axion-photon coupling.
A team of scientists has found evidence of alpha clusters in heavy nuclei, which challenges our understanding of neutron star structure and nuclear interactions. The discovery provides new insights into the process of alpha decay and has important implications for the study of neutron stars and their role in the universe.
Researchers at RIKEN Center for Biosystems Dynamics Research use electric rays and sting rays to create maps of the seabed, collecting data on ocean wildlife and resources. The method is cost-effective and has been shown to be accurate, with positioning errors within 10cm of existing seabed maps.
Researchers at RIKEN develop a material that can change from soft to hard and back again in response to temperature changes, mimicking the properties of sea cucumbers. The material's structure is manipulated using electrostatic repulsion and gold nanoparticles, enabling rapid and reversible shape shifts.
A research team at RIKEN Center for Biosystems Dynamics Research successfully evolved Escherichia coli under antibiotic pressure, identifying mechanisms and constraints underlying drug resistance. The findings can be used to develop strategies that minimize the chance of bacteria developing resistance.
Scientists have discovered a key mechanism behind SINEUPs, which can amplify protein production by messenger RNAs. The research provides new insights into how these functional non-coding RNAs work and their potential to treat diseases caused by insufficient protein synthesis.
Researchers created an artificial skin equivalent that reproduces traction-force balance in the lateral direction, a property controlling skin structure and function. This human-skin equivalent enhances physiological skin function analysis, disease research, and reduces animal testing.
Researchers have found a new magnetar with a pulsation period of 1.36 seconds, showing spin-down behavior suggesting rotation-powered pulsar emissions. The discovery reveals a missing link between magnetars and rotation-powered pulsars, providing new insights into neutron stars with high magnetic fields.
A study published in Nature Genetics developed a more accurate predictor of coronary artery disease based on genetic factors by comparing genome-wide association analysis across different ancestries. The researchers identified 48 genetic loci associated with the disease, including eight previously unknown variants.
Researchers at RIKEN Center for Brain Science discovered a brain region called the SuM that detects new social experiences and segregates them from unfamiliar places. This finding can help understand normal memory and conditions where recognizing new information is impaired.
A study published in PNAS explains how Lévy walks, a type of chaotic movement, allow animals to balance exploration and exploitation. The model used by the author shows that these movements emerge near critical points, enabling animals to respond strongly to environmental stimuli.
The segmentation clock, which governs embryonic body pattern formation, progresses more slowly in humans than in mice. Human cells exhibit slower degradation rates and longer transcription/translation times for the HES7 protein.
Researchers have identified a potential early biomarker, FABP4, for detecting autism spectrum disorder (ASD) in preschool-aged children. Lower levels of FABP4 were found in the blood of children with ASD compared to typically developing children.
Researchers discovered that parasitic and non-parasitic plants respond to quinones, a class of organic compounds. Non-parasitic plants produce a calcium signal in response to quinones, which triggers defensive responses against bacteria and other microbes.