Researchers have found key evidence for the existence of nanohertz gravitational waves through pulsar timing observations. The Chinese Academy of Sciences has detected quadrupole correlation signatures compatible with nanohertz wave predictions at a 4.6-sigma statistical confidence level.
Researchers have discovered a binary pulsar with a 53-minute orbital period, filling the gap in the evolution of spider pulsar systems. The finding confirms the existence of an intermediate state between redback and black widow spiders, a long-held theory.
The study uses AI-assisted methods to discover novel deaminase proteins with unique functions through structural prediction and classification, expanding the utility of base editors. New DNA base editors with remarkable features were developed, enabling tailor-made applications for various breeding efforts.
The Zhurong rover's first 1-km traverse revealed extremely weak magnetic fields on the Martian surface, contradicting previous orbital measurements. This finding suggests that either the crust remained unmagnetized or was demagnetized by a massive impact, providing new insights into early Mars' magnetic, climatic, and interior history.
Astronomers have proposed a new method for measuring the distances of galaxies, utilizing double-period RR Lyrae (RR Lyr) stars. The study, published in Nature Astronomy, aims to improve the accuracy of distance measurements by leveraging the unique properties of these stars.
A recent study has found that impaired histone inheritance accelerates breast cancer growth and metastasis by disrupting the epigenetic state of cells. This disruption leads to the reactivation of genes associated with development, promoting tumor progression.
A team of researchers from QIBEBT has developed a method to produce high-quality lactic acid from lignocellulosic biomass, reducing the need for intermediate sterilization and nutrient supplementation. This breakthrough has significant implications for industrial-scale production of biodegradable materials.
Researchers have developed a three-dimensional mesoporous biosensing-membrane with neighborhood nanostructures, exhibiting excellent sensitivity and long-term stability. The membrane uses a ternary coating to assemble Prussian blue and glucose oxidase, improving cascade reaction efficiency and sensing stability.
A new study reveals that Earth's day length may have stalled at 19 hours between 2-1 billion years ago due to tidal resonance caused by the Moon and Sun's opposing forces. This flatlined period could have allowed for a stable atmosphere, enabling photosynthetic bacteria to produce more oxygen each day.
A new SCIVVS approach accelerates probiotics quality assessment by rapidly counting live bacteria, identifying species, and testing viability in just five hours. The method also tracks the source of individual cells in a sample, promising to transform current practice in quality control and intellectual-property protection.
The LHAASO collaboration has measured the complete high-energy light curve of a gamma-ray burst (GRB) for the first time, including its entire phase from rise to decay. This observation provides a perfect dataset for testing theoretical models and could remain one of the best results for decades or centuries.
Researchers have developed a method to encapsulate polyoxometalate molecules within carbon nanotubes, enhancing the electrochemical energy storage of materials. The study found that these hybrids exhibit improved electrochemical properties due to reduced aggregation and increased electron transfer.
Researchers have identified a novel gene WTS that confers broad-spectrum resistance to clubroot disease in Brassica crops. The WTS protein complex functions as an endoplasmic reticulum-localized calcium release channel, increasing cytosolic calcium ions and activating plant defenses.
A new study has identified a chemically peculiar star in the Galactic halo as clear evidence of the existence of pair-instability supernovae (PISNe) from very massive first stars. The star's low sodium and cobalt abundances are consistent with predictions for primordial PISN from first-generation stars with 260 solar masses.
Researchers discovered that the early avian bauplan was shaped by natural selection driven by powered flight, with forelimb evolution constrained to basic 'blueprint' needed for flight. The study found avialan-like limb proportions established earlier in forelimbs than hindlimbs in theropod history.
Researchers have observed significant directed flow of hypernuclei in heavy-ion collisions, offering a new direction for studying Y–N interactions. The experiment extracted slopes of directed flow of hypernuclei and light nuclei, suggesting a similar mass number scaling.
The Chang'e project has successfully mapped the Moon's surface, composition and inner workings, providing new insights into its evolution and potential resources. Future research aims to unlock the secrets of water ice and lunar material composition.
Researchers created a synthetic yeast system that responds to dual oscillatory signals, showing significant enlargement of entrainment region and increased synchronization. The study demonstrates the importance of phase difference in regulating internal oscillator dynamics.
A team has developed a new approach to disentangle the activity-selectivity tradeoff in catalytic conversion of syngas to light olefins, achieving high CO conversion and selectivity. The strategy involves incorporating germanium-substituted aluminophosphates within the OXZEO catalyst concept.
A new Ordovician eurypterid, Archopterus anjiensis, has been found in the Wenchang Formation of Anji County, Zhejiang Province. The discovery is significant for understanding early evolution of eurypterids in Gondwana.
Researchers have identified extreme field reversals around FRB 20190520B, a persistently active repeating Fast Radio Burst. This finding provides insights into the turbulent magnetized environment surrounding the cosmic explosion, which may be caused by signal passage through a companion's halo.
Researchers have identified two novel DOF family transcription factors that enhance wheat regeneration and genetic transformation. These findings provide new insights into the transcriptional regulatory network involved in boosting wheat regeneration, offering opportunities for improving crop improvement.
Researchers identified a novel high RS gene, SSIIIb, which when combined with the loss-of-function SSIIIa gene, increased RS content in cooked rice. This breakthrough provides genetic resources for breeding high-RS rice varieties, potentially reducing obesity and related health issues.
Scientists at IMP used a new mass spectrometry technique to precisely measure the masses of key nuclei, including arsenic-64 and selenium-66. The newly measured data led to changes in the rp-process path, indicating lower neutron star density and higher outer shell temperatures.
Researchers found that right hippocampal theta power hierarchically encodes the distance between current position and goal destination. The study used intracranial electroencephalography recordings from epilepsy patients performing a virtual navigation task.
The iPODs system enables rapid-results testing with reduced error, cross-contamination, and sample loss by automating droplet transfer. The device shows strong linearity in bacterial detection, with an R-squared value of 0.999, making it accurate for point-of-care testing.
A team led by the Chinese Academy of Sciences has found a well-preserved 'Marine Dwarf World' from 462 million years ago at Castle Bank, Wales. The site features over 150 species, including arthropods, worms, sponges, and starfish, with many preserved in minute detail.
The Zhurong rover found evidence of liquid water on dune surfaces at low Martian latitudes, contradicting the widely held assumption that water can only exist in solid or gaseous forms. The discovery provides key observational proof and sheds light on the evolutionary history of Mars' climate.
Researchers detected prompt optical emission and its transition to early afterglow of a gamma-ray burst using the Ground Wide Angle Camera Array. The study provides unique data that constrains the characteristics of the progenitor, suggesting a small stellar mass.
Researchers used mercury isotope data to push back the timeline of vascular plant colonization, finding extensive land colonization by early Silurian (~444 Ma). This discovery links terrestrial organism expansion to co-evolution of earth systems, particularly atmosphere-ocean-weathering processes.
Research shows that arthropods in high-diversity forests contribute to improved productivity by suppressing herbivores, leading to increased tree species richness and multitrophic diversity. The study highlights the importance of conserving plant diversity to maintain arthropod diversity.
An international team of scientists has produced an image showing both the ring-like accretion structure around a black hole and the associated relativistic jet. The study provides new insights into the connection between the accretion flow near the central supermassive black hole and the origin of the jet.
Researchers develop PrimeRoot, a tool for efficient and precise targeted insertion of large DNA segments in plants, achieving efficiencies up to 6% and inserting segments up to 11.1 kb.
The researchers proposed a type of ultra-tunable bistable structure with programmable energy barriers and trigger forces. The structures can be customized for various robotic applications, demonstrating superior performances in high-speed locomotion, adaptive sensing, and fast grasping.
Cascaded microfluidic circuits successfully isolate and purify EVs directly from blood samples within 30 minutes, surpassing ultracentrifugation and dead-end filtration methods. The technology has high clinical potential for early cancer diagnosis and real-time monitoring of tumor development.
Horodyskia, a fossil with uniform size and spacing, is among the oldest multicellular macroorganisms. Its fossils suggest coenocytism and simple clonal coloniality, challenging previous interpretations.
Researchers have found that the subfornical organ senses circulating parathyroid hormone (PTH) and modulates its peripheral level. PTH then alters bone metabolism and remodeling, highlighting a critical role of the brain-parathyroid-bone axis in maintaining bone homeostasis.
Scientists discovered a way to regulate the mechanical strength and recoverability of peptide hydrogels by manipulating incubation temperature and time. By controlling droplet formation, they created fibril networks with optimal properties for various applications.
A team of researchers has developed a swallowable X-ray dosimeter that can estimate radiation dose in real-time, offering improved accuracy and minimization of damage to healthy tissue during radiotherapy. The capsule-shaped device uses a neural network-based regression model to analyze radioluminescence and temperature.
A recent study by the Chinese Academy of Sciences reveals that receiving an inhibitory signal associated with negative food conditions can decrease brain dopamine levels in dancing honeybees. The researchers also found that increasing bee dopamine levels reduces the aversiveness of hornet attacks.
A study found that cell competition between neural progenitor cells regulates brain size in mice, with top performers producing 30%-40% of neurons and losers producing only 1%-2%. The researchers identified Axin2 and p53 as key drivers of this process.
The study reveals that the stability of Dion-Jacobson 2D perovskites is determined by the rigidity of organic diammonium cations. This mechanism allows for intercoordination between organic and inorganic components, enabling a stabilized state. The findings may provide guidance for manipulating the stability of DJ 2D perovskites.
A new study reveals how ferroelectric coatings improve all-solid-state lithium batteries by reducing space charge layers and enhancing lithium transportation. The coatings made from guanidinium perchlorate increase battery capacities to near-liquid lithium-ion levels.
Researchers from the Dalian Institute of Chemical Physics have developed a method to create rare earth hydrides with superionic conduction at ambient temperatures. This breakthrough could pave the way for advanced clean energy storage technologies by enabling high-conductivity hydride ion batteries and fuel cells.
A new study proposes a simple coating solution to reduce degradation in solid-state lithium metal batteries. The coating, made of LiZr2(PO4)3 (LZP), improves capacity retention and decreases decay by mitigating uneven lithium-ion flux.
A new study reveals that lake-terminating glaciers in the Himalaya have been significantly underestimated, leading to revised estimates of glacier mass loss. The research found a 6.5% underestimation, with some regions experiencing even greater discrepancies, highlighting critical implications for regional water resources.
Researchers analyzed decades' worth of Landsat imagery to globally attribute recent river regime changes to morphological or hydrological signals. Global-scale prioritization guidance is provided for future river protection and restoration efforts under the UN 2030 Agenda.
Researchers have presented an overview of recent progress in moiré photonics and optoelectronics, highlighting the emergence of novel quantum phenomena and their potential applications. Moiré superlattices introduce a new paradigm for engineering band structures and exotic quantum states.
A recent study published in Nature Communications reveals that Earth's anisotropic inner core structure is driven by the dipole geomagnetic field. The researchers found that hexagonal-close-packed (hcp) Fe-H alloy exhibited both seismic anisotropy and H-ion diffusion anisotropy under high pressure-temperature conditions.
A new platform has been established to improve the analysis of dynamic metabolic features in cells. The Raman-based flow cytometry tool allows for the profiling of cell populations without labeling or destroying them, providing a non-invasive big-data type for culture-independent phenomes.