A Texas A&M University research project, led by Dr. Justin Wilkerson, aims to identify the damaging effects of vacancies in aluminum's atomic structure on ballistic performance. The study uses supercomputing facilities to calculate changes due to vacancies over time and may lead to improved armor materials for the US Army.
A Texas A&M-led study analyzed ocean floor sediment cores to reveal the relationship between deep ocean oxygenation and atmospheric carbon dioxide levels over the past 50,000 years. The research found that enhanced storage of respired carbon in the deep ocean occurred during periods of low atmospheric CO2 concentrations.
Texas A&M University researchers aim to develop a smart ventilation control system to minimize the risk of COVID-19 infection in public buildings. The project seeks to investigate a smart ventilation control system that can operate in both normal and emergency modes, utilizing factors such as outdoor air dilution and humidity levels.
Researchers at Texas A&M University have developed new biomaterials to advance the field of 3D bioprinting functional tissues. They created a highly printable bioink that can be used to engineer 3D-functional bone tissues, which could potentially create new treatments for patients suffering from arthritis and bone fractures.
A recent study led by a Texas A&M University professor reveals that South Asia will be threatened by frequent extreme heat and high air pollution days. By 2050, occurrences of both extremes are projected to increase in frequency by 75% and 175%, respectively, posing significant risks to human health.
Researchers found that miniature kirigami-based devices can be repeatedly compressed without damage, even with defects. This discovery has implications for the longevity of wearable electronics and other technologies incorporating such devices.
Researchers identify four areas of stress: occupational hazards, process inefficiencies, financial instability, and national vs. local responses. Mitigation strategies include improved PPE, training, and disaster management plans to reduce burnout among healthcare workers.
Texas A&M researchers have developed a way to strengthen 3D printed parts by welding adjacent layers together using plasma science and carbon nanotube technology. The new technology increases the reliability of final parts, making them comparable to injection-molded parts.
Researchers at Texas A&M University developed a minimally invasive biosensor system to monitor urate levels, which can help patients with gout manage their symptoms better. The technology uses benzoporphyrins and is designed for personal management of gout, potentially reducing healthcare costs and improving patient outcomes.
Researchers at Texas A&M University have created mesh-like mats with prolonged antioxidant activity that can be used in bandages or food storage containers. The mats are made from an intertwined network of ultra-fine strands of a polymer and tannic acid, which enhances antioxidant functionality.
Texas A&M University engineers have devised a simple one-step chemical reaction to separate out different components of nuclear waste. The method results in the formation of crystals containing all leftover nuclear fuel elements uniformly, reducing radioactivity and proliferation risk.
Researchers at Texas A&M University have developed a technology that sends small electrical currents to the fingertips of someone operating a robotic arm, allowing surgeons to control their movements more precisely. This can lead to reduced inadvertent injuries and improved surgical outcomes.
A Texas A&M University study found that older adults are more likely to use driver-assistance technologies if taught through interactive videos. The research suggests that video-based training is the most effective method for introducing these technologies to seniors, reducing mental workload and increasing safety on the road.
Researchers at Texas A&M University have created a dual-action coating that repels and kills bacteria, reducing the risk of cross-contamination in fresh produce. The coating, made from silica and lysozyme, retains its germicidal action longer due to its water-repelling property.
Researchers from Texas A&M University and the Air Force Research Laboratory have developed a framework to print martensitic steels with minimal loss of strength and durability. The new guidelines enable the creation of complex, defect-free objects of nearly any shape using 3D printing technology.
Researchers at Texas A&M University have made significant progress in developing drugs to treat COVID-19. The team, led by Wenshe Ray Liu, has refocused on searching for antiviral medicines to counteract the virus and its variants, with a focus on preventing replication inside human cells.
A study by Texas A&M University researchers found that over 60% of urban expansion since 1970 came from agricultural land, posing serious concerns for fertility and food security. The trend, driven by small- and medium-sized cities in India, China, and Nigeria, threatens the livelihoods of millions of small farmers.
Researchers at Texas A&M University have successfully harnessed bacteria's ability to create peptides with noncanonical amino acids, enabling the expansion of phage display libraries. This new method paves the way for new peptide-based therapeutics in cancer and other human diseases.
A new study by Texas A&M University biologist Dr. Charles Criscione and collaborators reveals that family ties play a crucial role in the survival of parasitic organisms. Brain flukes sacrifice themselves to ensure the survival of their relatives, who co-infect the same ant's abdomen.
Researchers at Texas A&M University have discovered a previously unknown response to indole in the beneficial gut bacteria E. coli, which seems to both repel and attract bacteria. The Janus response displays sophistication and could lead to a better understanding of the complexities of the gut microbiome.
Researchers have discovered a neuron-like electrical switching mechanism in solid-state material β'-CuxV2O5, enabling the creation of circuitry that functions like the human brain. The team's findings showcase the potential for neuromorphic computing to improve energy efficiency and address global computing demands.
Researchers at Texas A&M University have developed a comprehensive statistical framework to predict the evolution of floods in extreme situations like hurricanes. The algorithm considers underground drainage channels to provide an accurate representation of how floods propagate, enabling timelier emergency response.
Researchers at Texas A&M University developed a tool to identify the source of errors caused by software updates using deep learning. The algorithm, which analyzes performance counters, can find bugs in a matter of hours instead of days.
Researchers at Texas A&M University have developed biodegradable hydrogels that create a fertile environment for bone stem cells to grow and proliferate. The study found that the space created by degrading hydrogels enables stem cells to thrive, remodel their local environment, and form intricate cellular networks.
Researchers at Texas AÎM University found that shifting focus from pedestrian to driver language reduces victim-blaming and increases perceived blame for drivers. This shift can change public perceptions of road safety, according to the study.
Researchers at Texas A¸M University have formulated a new recipe to prevent weaknesses in modern-day armor. By adding a tiny amount of silicon to boron carbide, they discovered that bullet-resistant gear could be made substantially more resilient to high-speed impacts.
A new Texas A&M University study reveals the Cleveland Bay horse breed has the third-lowest genetic variation level among domestic horses. This low genetic diversity puts the breed at risk for various health conditions, making it critically endangered.
Texas A&M University researchers discovered that applying a small temperature difference to zirconium phosphate particles initiates their liquid crystallization. The team found that varying temperatures can move liquid crystals by creating a temperature gradient, opening new doors for applications beyond common liquid crystal uses.
Biologists at Texas A&M University have found a genetic link between circadian clock genes and the vitamin A pathway in the brain of Monarch butterflies, enabling them to sense day length changes and trigger seasonal responses.
A recent study published in The Lancet Planetary Health found that residents near irregularly shaped community parks have a lower mortality risk compared to those living near traditional square-shaped parks. The researchers, led by Huaquing Wang and Lou Tassinary, analyzed land cover data from Philadelphia and discovered that the compl...
Researchers from Texas A&M University developed new supercapacitor electrodes using dopamine-functionalized graphene and Kevlar nanofibers, significantly improving mechanical performance. This breakthrough paves the way for creating sturdy, stiff batteries, which could enable lighter electric vehicles and aircraft.
A study from Texas A&M University found that dogs with chronic enteropathy and exocrine pancreatic insufficiency have similar bacterial outputs, suggesting a common underlying mechanism. This discovery could lead to the development of more targeted treatments for both canine and human GI diseases.
Tyler Fricker's study analyzed nationwide tornado casualty data to identify high-risk regions and community-level factors influencing casualties. The results suggest that regional susceptibility to high-casualty events is more complex than previously thought, with factors beyond mobile home ownership and low income contributing to high...
A $1.2 million NSF-funded study led by Texas A&M University is exploring the use of virtual reality training simulators to train workers for extreme environments. The researchers aim to create a framework for scenario-based simulations and games that utilize virtual reality, eye tracking, and brain wave data.
A team of scientists, including Texas A&M University researcher Marion Nachon, found that Mars' Gale Crater lake underwent drying episodes, potentially linked to the planet's global drying. The study reveals signs of liquid water and salt ponds similar to those on Earth, particularly in South America's Altiplano region.
A new research study has revealed that humans lived in a low-carbon-dioxide atmosphere for 2.5 million years, with concentrations averaging 230 parts per million, until 1965. Today's levels are about 410 parts per million.
Researchers at Texas A&M University have found that the AH receptor can actually block invasion of glioblastoma cells, rather than promoting it. Adding certain ligands to the receptor has been shown to inhibit cell invasion and provide additional protection to the brain.
A team led by Dr. Mert Atilhan and Dr. Cafer Yavuz developed a new porous polymer that can store natural gas more effectively than current methods. This breakthrough material has the potential to reduce greenhouse gas emissions by storing cleaner-burning fuels, such as natural gas, instead of coal or oil.
A team of researchers at Texas A&M University has made a groundbreaking discovery about nickel's corrosion behavior. They found that coherent twin boundaries in pure nickel are prone to corrosion, contrary to previous assumptions.
Vitamin C has been found to protect MXenes from degradation, allowing for the creation of stable materials. This breakthrough enables the potential application of MXenes in various fields, including energy storage and water purification.
A team of researchers at Texas A&M University has developed a way to control the hydrophobicity of surfaces inspired by nature, which could have widespread applications in the biomedical field. The 'nanoflower' design uses atomic defects in nanomaterials to repel water and clean surfaces.
A new epidemic forecast model developed by Texas A&M researchers can accurately predict disease trajectories by taking into account human behavior. This allows for more effective resource allocation during outbreaks, reducing the risk of over-preparation and public mistrust.
A Texas A&M research team has developed a new class of hydrogel bioinks loaded with therapeutic proteins, which can be used for precise deposition of protein therapeutics in 3D. The bioink formulation has unique shear-thinning properties that allow it to stay in place after injection, making it suitable for 3D bioprinting applications.
Researchers at Texas A⚬M University discovered a new type of fracture in silicone elastomer that allows for greater stretchability and resistance to tears. This breakthrough could lead to the development of more tear- and fracture-resistant materials for applications in healthcare, energy and military industries.
Researchers created a nanoscale bioabsorbable wound dressing using chitosan, which shows promise in reducing blood loss and improving hemostasis. The dressing can be applied, left in the injury site, and eliminates the need for subsequent physical removal.
A Texas A&M University study found that particulate matter in the atmosphere can cause birth defects, fatalities, and damage to organs in adult rats. High levels of fine particulate matter were detected in Asia, Houston, and Los Angeles, posing a significant health risk to millions worldwide.
A new study published in Proceedings of the National Academy of Sciences found that stress increases fear-promoting brain regions while reducing fear-reducing ones. This shift can be mimicked by increasing norepinephrine release, potentially leading to more effective treatments for PTSD.
Researchers at Texas A&M University have developed a new method of underwater plasma generation using a snapping shrimp's claw, producing jets of plasma reaching over 3,000 degrees Fahrenheit. This discovery could provide significant improvements for actions ranging from water sterilization to drilling.
Researchers at Texas A&M University have developed a new method for delivering growth factors to treat osteoarthritis. The nanoclay-based platform provides prolonged delivery of protein therapeutics, enhancing stem cell differentiation towards cartilage lineage and reducing negative side effects.
Researchers at Texas A¼M University have developed a flame-retardant coating using renewable materials to reduce flammability in polyurethane foam used in furniture. The coating prevents fires from damaging the underlying foam, promoting insulating char formation and reducing fume release.