The University of Texas at Arlington is leading a multi-institution study to determine the optimal amount and nature of clinical experiences required for nursing school graduates to achieve competency upon graduation. The research involves over 1,700 students and partners with six North Texas health care systems.
A UT Arlington study found that businesses near the stadium experience success when they synchronize their activities with events. Businesses closer to the stadium saw as a negative became paralyzed, but adapting to time-adaptation strategies helped them thrive.
Scientists at UT Arlington have developed a new method for detecting trace amounts of estrogen in small samples, improving research into cancer and other diseases. The new method is sensitive enough to detect estrogens at levels as low as 10 parts per trillion, making it applicable to human health, medicine, and environmental analysis.
A University of Texas at Arlington astrophysicist has created a new online tool called BinHab that can calculate the regions of binary systems favorable for life. The tool uses a comprehensive mathematical approach to consider both stellar radiation and gravitational influence, directly relevant to NASA's Kepler mission.
The UT Arlington Public Works Institute is training city and county workers on working in traffic safety zones with a $486,234 Texas Department of Transportation contract. The institute will also provide courses on workplace safety.
A UT Arlington professor aims to uncover hidden relationships in social networks using a new approach to analyze vast amounts of online data. The research could have numerous applications, including improving military intelligence and identifying emerging media trends.
A UT Arlington team developed a new model for snake venom evolution, suggesting that venom genes evolved independently in distinct lineages of reptiles. The study found similar expression levels of venom gene families in python oral glands and brain tissue, challenging the traditional view of a core venom system developing first.
A UT Arlington civil engineering team has installed a new mix of lime and fly ash on a section of U.S. 82 to reduce soil sulfate heaving and extend the life of the highway. The project aims to increase road longevity and reduce deterioration, with the potential to benefit motorists' vehicles.
A UT Arlington researcher has won a $200,000 grant to screen Hispanic patients for depression and provide education on the disease and its treatment options. The project aims to dispel myths and reduce stigma associated with mental health care among Hispanics.
Researchers at the University of Texas at Arlington are exploring ways to create more human-like interactions between humans and robots. Julienne Greer, a theatre arts lecturer, is using her expertise in performance technique method acting to inform the design of robots like Pepper, which can understand and respond to human emotions.
Researchers at UT Arlington discovered that musicians outperform non-musicians in EEG-measured working memory tasks. However, the advantage in long-term memory was only found in picture recognition. The study used EEG technology to measure neural activity in the brains of 14 musicians and 15 non-musicians.
The University of Texas at Arlington has been chosen to lead a $1.6 million initiative to connect researchers across the country studying digital learning's impact on higher education. The Digital Learning Research Network will benefit universities making the transition to digital learning and learners from underrepresented groups.
Researchers at UT Arlington's Biophysics and Physiology Lab developed new methods for optogenetic stimulation of brain neurons, guiding axons to form loops in the lab. The advancements aim to map neural circuitry and potentially treat conditions like chronic pain and drug addiction.
A University of Texas at Arlington computer scientist is studying smarter route selection and adaptive cover traffic to protect online privacy. The research aims to route traffic around powerful eavesdroppers and add noise to confuse adversaries.
Researchers at UT Arlington are developing tissue-engineered artificial lymph nodes that can attract prostate cancer cells, allowing for more targeted treatments and potentially longer patient survival. The technology, led by Liping Tang, could also help identify the biological signals that enable cancer to migrate throughout the body.
The University of Texas at Arlington has received a $974,250 NSF grant to support doctoral students from underrepresented minority groups. The Bridge to the Doctorate Fellowships will provide full tuition, a $30,000 yearly stipend, and additional resources to help students succeed in STEM fields.
A UTA researcher has made a breakthrough in regenerating cartilage tissue using microscaffolding injections, aiming to reduce posttraumatic osteoarthritis symptoms. The treatment utilizes patients' own stem cells to form new cartilage tissue, potentially curing the disease.
Researchers create a learning network of wheelchair-mounted robotic arms and human users to improve daily activities, satisfaction, and quality of life for people with spinal cord injuries. The project aims to maximize human-robot learning and address ethical issues related to assistive technology.
A team of UT Arlington Computer Science and Engineering students won the NTx Apps Challenge with a smart traffic light network that analyzes traffic conditions in real time. The GridLock system enhances traffic flow, reducing congestion and jams.
A University of Texas Arlington associate professor has been awarded a National Science Foundation grant to assess insider threats in financial institutions. The research aims to develop effective protection strategies using criminology theories and large-scale field data from two regional institutions.
A handheld device developed by UT Arlington researcher Yuze Sun can analyze a person's breath to reveal the presence of hazardous gases, such as those specific to diabetes. The device has the potential to non-invasively monitor blood sugar levels and detect chemical markers in complex samples.
A team of researchers led by D.J. Seo will integrate data from advanced weather radar systems, wireless sensors, and crowdsourced cell phone data to create high-resolution models of urban water systems. The project aims to produce a suite of products for flash flood forecasting, water quality monitoring, and storm management.
Researchers at UT Arlington are developing a new technology to detect metal fatigue in aircraft parts using micro- and nano-scale analysis. This will enable early detection of potential damages, ensuring safety and reducing costs.
The University of Texas at Arlington has received a $1.4 million grant to increase the number of mental health and substance abuse workers in the US. The funding will support stipends for UT Arlington students who receive specialized training.
Researchers at UT Arlington are creating a wearable interface that uses sensors to monitor the fitting of prosthetic devices and adjust accordingly. The interface aims to improve comfort and reduce discomfort for users, who often experience issues such as blistering and ulcers due to volume changes in their residual limbs.
Researchers at UT Arlington demonstrate direct fluid flow influences neuron growth, challenging the long-held idea that chemical cues are primarily responsible for axonal pathfinding. The study found that 35% of growth cones responded to microfluidic flow from a microtube, turning towards the direction of the flow.
The University of Texas at Arlington has received a $1.3 million grant to produce an oral history documentary about the 1984 Wilberg Mine disaster, which killed 27 miners. The film will be accompanied by multi-media components and leadership training for first-line supervisors.
A UT Arlington multi-disciplinary team is optimizing and integrating volumes of data to help physicians make better decisions about treating patients' pain. The project aims to remove bias in assessing treatment effects, providing doctors with more accurate information.
A University of Texas at Arlington research team has developed a new method to fabricate transparent nanoscintillators that could advance medical safety and homeland security. The resulting scintillator material has better energy resolution than currently used materials, making it more effective for radiation detection.
A UT Arlington computer scientist is leading a research project to improve database queries and decision-making. The project, worth $1.2 million, aims to reveal how queries affect the robustness and objectivity of decisions.
A UT Arlington professor will use a $400,000 CAREER grant to team with Teach for America and create a geophysics-based curriculum for secondary school teachers. The project aims to improve scientists' preparation and increase predictability of hazards associated with future earthquake events.
The University of Texas at Arlington has received a National Science Foundation grant to boost its research capabilities, particularly in high-energy physics and data-intensive science projects. The grant will increase the campus's network performance to support researchers working on large-scale data analysis.
A UT Arlington engineering professor and his doctoral student have designed a device based on a shorebird's beak that can accumulate water collected from fog and dew. The device could provide water in drought-stricken areas of the world or deserts around the globe, offering an alternative to current methods.
The University of Texas at Arlington has received an $800,000 grant from the National Science Foundation to support the education of new science and math teachers. The grant will provide one- to two-year scholarships worth $10,000 a year to selected undergraduates pursuing teacher certification in these subjects.
Scientists at UT Arlington have discovered a way to cool electrons to extremely low temperatures using nanotechnology, potentially reducing energy consumption of electronic devices by over 10 times. This breakthrough could lead to the development of energy-efficient transistors and improve military electronics.
A UT Arlington study found that teens living with two college-educated parents are significantly less likely to drink alcohol or smoke marijuana. The presence of both parents is a strong protective factor for African-American adolescents, with white teenagers being 69% more likely to engage in substance abuse than black peers.
Researchers at UT Arlington have developed a scalable data-mining framework that can help manufacturers quickly discover desired materials. The framework, which uses genomic data, aims to reduce the time it takes for materials to go from discovery to market.
A recent study published in PLOS ONE has found that older Caribbean coral species exhibit fewer diseases and better immunity than newer species. Researchers examined 140 samples of 14 species, including the ancient Porites astreoides coral, which has been around for over 200 million years.
The partnership allows Pediatrix clinicians and neonatal nurse practitioners to experience high-fidelity simulators in UT Arlington's Smart Hospital without traveling to campus. The initiative enables competency assessment exercises with improved outcomes, particularly for low-volume procedures.
The University of Texas at Arlington has received a grant from the Walmart Foundation to develop a robotic small motors assembly and testing system. This project aims to reduce manufacturing costs and enable goods produced in the US that were formerly built overseas.
A team of researchers at the University of Texas at Arlington has developed a genetic computer network model that can predict the onset of mental illnesses such as bipolar disorder and schizophrenia. The model uses single nucleotide polymorphism networks to analyze a patient's genetic pattern and apply personalized therapy.
Physicists from UT Arlington believe following a trail of radio wave emissions may lead them to the discovery of an exomoon. They suggest using detailed calculations about the Jupiter/Io dynamic to look for radio emissions that could indicate moons orbiting an exoplanet.
Professor Jamie Rogers has been recognized as an Institute of Industrial Engineers (IIE) Fellow for her outstanding contributions to sustainable engineering. She has received over $3.6 million in research funding and served on the National Science Foundation-funded Engineering Sustainable Engineers project.
Four UT Arlington faculty members, Krystal Beamon, Darryl Lauster, Allan Saxe, and Kevin Schug, have been honored with the Regents' Outstanding Teaching Awards for their exceptional teaching skills and dedication to students. The total value of the awards is $2.4 million, recognizing 45 UT Arlington recipients since 2008.
A UT Arlington geophysicist is using new technology to examine the relationship between dynamic loading and rock fragmentation. His research aims to create physics-based models that predict rock fracturing based on strain applied and rock makeup.
Maria Martinez-Cosio and Mirle Bussell's book explores private foundations' challenges in community revitalization, finding that building trusting relationships with residents is key to success. The team's research argues that foundations must invest time and effort to build partnerships with underserved populations.
A UT Arlington big data team has won a three-year $600,000 NSF grant to develop an interactive database of fruit fly gene expressions, which are commonly found in humans and other species. The project aims to yield methods of analyzing data that will aid in biomedical science and engineering.
A new study by UT Arlington researchers found that many young adults are not aware of the female condom, a barrier method protecting against STIs and unplanned pregnancies. The study suggests that effective communication is crucial for its adoption, with design, protection, and convenience being key characteristics.
The University of Texas at Arlington has received a three-year, $250,000 National Science Foundation grant to collaborate with AIDICO on disaster mitigation research. The project aims to develop quick solutions to infrastructure and technology problems that arise from natural disasters, improving the resilience of civil infrastructure.
Researchers at UT Arlington have developed a method using laser technology and magnetic carbon nanoparticles to deliver drugs and genes directly into cancer cells. The new photothermal delivery method has shown promise in lab experiments, offering an alternative to viruses for gene therapy and potentially treating genetic conditions, c...