Researchers at Texas A&M University have created a new method to monitor flocculation and mixing in real-time, allowing for more precise control over the process. This technique reduces energy consumption by halving the workload and improving precision.
Research found significant room for improvement in accuracy of California's provider directories and timely access to mental health care. Despite stringent regulations, inaccurate directories and inadequate networks hindered access to essential services.
Researchers at Texas A&M University School of Medicine have identified a specific brain circuit that characterizes how fentanyl affects the brain. Suppressing negative emotional states may increase a person's chance of overcoming opioid use disorder.
Researchers develop a governance model for ethical guidance in AI, combining copyleft licensing with the patent troll approach. The CAITE model assigns enforcement rights to a third-party host, ensuring compliance while promoting flexibility and community participation.
A new solid-state crystal growth (SSCG) technique has been developed to manipulate materials' properties by controlling crystallographic orientation. This method allows for large single crystals with desired orientations to be grown easily and inexpensively.
A Texas A&M University study found that an intervention program increased physical activity in older rural women, leading to improved quality of life and reduced health risks. The Strong Hearts, Healthy Communities 2.0 program was successful in increasing exercise levels at both 12 and 24 weeks.
A study published in International Journal of Environmental Research and Public Health found that breastfeeding can reduce arsenic exposure in infants compared to formula feeding. Researchers measured arsenic levels in mothers, babies, and breast milk, revealing a clear association between maternal and neonatal arsenic exposure.
Bacteria can survive antibiotics without acquiring new genes or mutating existing ones by maintaining high electrochemical energies. These high-energy cells exhibit a wide range of energy levels despite being in a state of arrested growth, enabling them to adapt and spread rapidly.
The Manis bone projectile point is the oldest known weapon made from bone, dated to 13,900 years, and provides direct evidence of mastodon hunting in the Americas. Researchers used CT scans and 3D software to isolate and assemble the bone fragments, revealing a spear point made from mastodon bone.
Research from Texas A&M University reveals that male alcohol use has a significant negative influence on in vitro fertilization (IVF) success rates. The study highlights the importance of expanding fertility and prepregnancy messaging to emphasize the reproductive dangers of alcohol use by both parents.
Researchers have identified a new genetic pathway involved in regulating sleep from fruit flies to humans. The Pig-Q gene is associated with sleep regulation in both humans and animals, providing a novel insight into the genetics of insomnia.
Researchers at Texas A&M University are testing Raman spectroscopy as a diagnostic tool for Lyme disease, which shows promise in accurately identifying infected individuals. The new test could improve Lyme disease diagnosis and treatment outcomes for both humans and animals.
Texas A&M researchers have developed a method to embed hidden magnetic tags in metal parts, providing a new tool to combat counterfeited goods. The technique uses metal additive manufacturing to create unique identifiers that can be read using a magnetic sensor device.
A new study published in The Journal of Rural Health found that urban men who have sex with men (MSM) are more likely to get vaccinated and tested for Mpox than their rural counterparts. The study also revealed that rural MSM perceived themselves as less susceptible to the disease and had lower intention to be vaccinated.
A new study reveals that second-generation Indian American adolescents face discrimination as early as preschool, influencing their development of identities. The research found that these adolescents experience hate crimes, discriminatory comments from peers, and difficulties balancing their Indian identity with their desire to be see...
A recent study by Texas A&M University reveals that rural family medicine physicians are less comfortable providing sexual risk reduction counseling to adolescents compared to their urban counterparts. This disparity highlights the need for increased awareness and training of PrEP-related clinical activities among rural providers, whic...
Researchers at Texas A&M University engineered DARPins to block the interaction between the COVID-19 virus and host cells, significantly reducing disease progression. The nasal sprays showed effectiveness against various variants, including omicron, and could provide a lower-cost therapeutic option for those at high risk.
Scientists at Texas A&M University found that transplanting intestinal epithelial stem cells can repair the gut and reduce inflammation, potentially preserving cognitive function after a stroke. The study suggests that targeting gut health may be key to developing more effective stroke therapies.
Researchers have discovered that mutations in mitochondrial-related genes can trigger hyperinflammation, leading to diseases such as Crohn's disease and tuberculosis. The study found that these mutations lead to a new type of cell death called necroptosis, which causes an aggressive inflammatory immune response.
Researchers at Texas A&M University used functional near-infrared spectroscopy to monitor participant responses during human-robot collaborations. They found that faulty robot actions decreased operator trust and associated it with increased brain activity in the frontal, motor, and visual cortices.
Researchers developed a light-based therapy, photodynamic therapy (aPDT), to combat antibiotic-resistant bacteria. The treatment showed promise in weakening bacteria, allowing lower doses of current antibiotics to effectively eliminate them.
Public health researchers developed a global vaccine risk index (VRI) to predict vaccine coverage lapses worldwide. The VRI considers factors like measles incidence, vaccine confidence, climate change, education, and income, revealing countries at high risk of disease outbreaks.
Researchers at Texas A&M University created a device that harnesses quantum fluctuations to enhance spectroscopy results in Brillouin microscopy, increasing image clarity and accuracy. The new source significantly improves the signal-to-noise ratio, allowing for better visualization of biological structures and properties.
The discovery reveals that the nucleus deforms like a liquid drop, preserving its shape and protecting its genome. This understanding may lead to new approaches for treating cancer by aiding cell nuclei in regaining their normal shapes.
A team of researchers at Texas A&M University has developed biomaterial inks that mimic native characteristics of highly conductive human tissue. These inks are essential for 3D printing and enable the creation of complex electronic devices, such as stretchable sensors with integrated microelectronic components.
A Texas A&M study sheds light on a major health concern for people with Down syndrome, who may not heal from bone fractures. The researchers found that the glue-like cartilage that helps bones heal doesn't form properly in individuals with DS, leading to devastating health impacts.
Researchers at Texas A&M University developed an AI framework to predict oxidation behavior of high entropy alloys, reducing experimental analysis time from years to minutes. This allows for the discovery of materials suitable for extreme environments, such as gas turbines and heat exchangers.
Researchers developed a nanopore-scale glass-topped lab-on-a-chip to study complex fluid behaviors at the nanoscale. The device allowed for direct visual recordings of liquid to vapor and back to liquid phase changes, revealing that nanopore behavior influences production and affecting recovery discrepancies.
A new study from Texas A&M University uses drone delivery to quickly distribute at-home diagnostic tests, minimizing exposure to others and reducing transmission rates. The approach can reduce transmission by a factor of 7.5 and has potential applications in other infectious diseases like influenza.
A new study published in Neurobiology of Sleep and Circadian Rhythms found that shift work can lead to long-lasting health effects, including increased severity of strokes. The research, led by Texas A&M University, suggests that disrupted internal body clocks can alter gut and brain interactions, leading to worse stroke outcomes.
Researchers created a dataset quantifying trends of evaporative water loss from 1.4 million global lakes and artificial reservoirs, revealing a 15.4% increase in long-term lake evaporation volume. This finding highlights the importance of accurate information for water management decision-makers in addressing climate change impacts.
Researchers at Texas A&M University have challenged the common belief that nerves are necessary for limb regeneration in mammals. Their studies, published in the Journal of Bone and Mineral Research and Developmental Biology, found that mechanical loading is a critical component for mammalian regeneration.
Researchers at Texas A&M University are developing mathematical models to predict and control cellular differentiation. They created a technique using mix-and-read assays, which allow for the detection of key signaling proteins in live tissues. This method enables researchers to gain a deeper understanding of how cells make decisions.
Researchers at Texas A&M University College of Medicine have identified a crucial mechanism driving the evolution of the neocortex, leading to increased intelligence and surface area. This breakthrough understanding contributes to insights into developmental deficits linked to autism spectrum disorders and intellectual disabilities.
A team of researchers from Texas A&M University discovered helicoidal screw dislocations in layered polymers, enabling the easy diffusion of solvents through layers. This discovery has implications for stimuli-interactive structural colors, which are used in human-interactive electronics and health sensors.
Researchers at Texas A&M University reduced well-completion times and drill bit changeouts by using physics-based instruction and oil and gas techniques. This approach improved the efficiency of drilling geothermal wells, resulting in significant time and cost savings.
Researchers from Texas A&M University developed a 3D-printed shape memory alloy with superior tensile superelasticity, nearly doubling the maximum reported in literature. The study used laser powder bed fusion to fabricate defect-free nickel-titanium parts with increased superelasticity.
A new study documents multiple small regions of DNA from domestic cattle in North American bison genomes, revealing a shared genetic ancestry. The research reveals that even historically isolated herds contain low levels of cattle genomic introgression, with implications for bison conservation efforts.
A collaboration between researchers identified crucial minerals regulating gene expression to control tissue renewal and growth. Minerals such as silicon, magnesium, and lithium induce endochondral ossification by turning on key genes, leading to the transformation of stem cells into bone cells.
A Texas A&M University study found that employee and company resiliency may be enhanced through remote work during natural disasters. Despite initial concerns, employees' work behaviors returned to pre-hurricane levels after working remotely for seven months.
Researchers at Texas A&M University used an Artificial Intelligence Materials Selection framework to discover a new shape memory alloy with the highest efficiency ever recorded. The alloy's narrow transformation temperature window and high cyclic stability make it ideal for thermal energy harvesting and storage.
A team of Texas A&M University researchers has created a monitoring system that can rapidly detect and track the movement of carbon dioxide stored underground. Using unsupervised machine learning, their system can identify CO2 plumes and locations with high accuracy, reducing the risk of unregistered escapes.
Researchers at Texas A&M University developed a low-cost, minimally invasive wireless device that uses photodynamic therapy to kill cancer cells. The device enables precise and safe treatment options during surgery, potentially reducing the need for additional treatments like chemotherapy.
Researchers created two scales to measure factors related to time spent in nature, finding correlations between TSN and self-efficacy, intentions, and age. The study aims to inform future interventions to increase outdoor activities among adults.
Researchers from Texas A&M University found that the absence of a functioning Nrf2 gene affects prenatal growth, especially when exposed to ultrafine particulate air pollution. This study highlights a possible mechanism by which ultrafine particles can impact placental function and prenatal health.
A study published in Nutrients found distinct bacteria and metabolomes associated with each personality trait, including mental energy and physical fatigue. The research team discovered unique gut bacteria profiles for different energy and fatigue traits.
Researchers at Texas A&M University have identified a unique sound signature produced by rocks as they crack and break. This discovery was made using a combination of supervised machine learning, causal discovery, and rapid simulations. The team found that an unusual pattern of positive and negative measurements in sound wave-transmiss...
Scientists at Texas A¼M University have created water-stable, 2D covalent organic framework nanoparticles that can guide human mesenchymal stem cells to form bone tissue. The new technology has the potential to impact the treatment of bone regeneration and improve drug delivery.
The team's research uses graphene quantum dots with zwitterionic properties to stabilize Pickering emulsions, allowing for controlled release and improved durability in firefighting operations. This technology holds promise for enhanced oil recovery and drug delivery.
By targeting strategic locations with high impact, researchers found a cost-effective way to reduce energy load and lower wholesale market prices. This approach enhances grid reliability through renewable energy penetration, offering a solution to mitigate price volatility.