Researchers at the University of Strathclyde have developed a new process that can capture carbon dioxide equivalent to planting a forest the size of Germany. The method involves crushing rocks in CO2 gas, which releases trapped carbon dioxide, providing a low-carbon solution for hard-to-decarbonize industries.
Researchers at the University of Strathclyde have simulated ice-cold electron beams that can produce powerful coherent photon pulses with pulse durations in the attosecond regime. The breakthrough could lead to the development of ultra-compact X-ray lasers, reducing their size from kilometres to just tens of metres.
Researchers have developed a new way to produce mirrors that can withstand extremely high powers, enabling the creation of small footprint, ultra-high-power laser systems. This breakthrough has significant implications for various fields such as medicine, biology, and physics.
Researchers from University of Strathclyde's Institute of Photonics and Department of Electronic and Electrical Engineering have made a significant breakthrough in LiFi technology. Their paper introduced a new format of light-emitting diode device demonstrating high modulation bandwidth for optical wireless communications.
A new study finds that the COVID-19 pandemic has exacerbated global childhood physical inactivity crisis, with Scotland facing inequalities in low physical activity and high screen time. The report recommends promoting physical activity early in life and limiting screen time to address these issues.
A survey of 850 railway workers found that nearly 85% faced difficulties with social distancing while working and a quarter experienced mental health deterioration. The study highlights the need for robust support systems to address these concerns and build a resilient workforce.
Researchers at the University of Strathclyde have developed a new technique for sculpting matter into complex shapes using 'twisted' light. When this light is shone on ultracold atoms, it breaks into clusters of BEC droplets that move following the light's features.
The paper explores near- and medium-term possibilities for quantum simulation on analogue and digital platforms to evaluate its potential. Quantum simulation has promising applications in materials science, high-energy physics, and quantum chemistry.
Researchers created a new scale to assess how safe patients feel, dividing it into three sub-scales: Social Engagement, Compassion, and Bodily Sensations. The Neuroception of Psychological Safety Scale (NPSS) has potential applications in tracking progress in psychological therapy or assessing hospital outcomes.
A low-cost device can capture 3D images of the retina, cornea, and back of the eye, revolutionizing eye screening and treatment globally. The technology has the potential to detect eye diseases like glaucoma and improve patient care.
A screening tool developed at the University of Strathclyde has increased the number of tests on solid tumour samples by up to 50 times. The technology enables large-scale testing of immunotherapies like CAR-T cell therapy, which is effective against many haematological cancers but faces challenges when treating solid tumours.
Researchers at the University of Strathclyde recommend delaying clinical trials for gel-based treatments for stroke due to current limitations. The study highlights gaps in knowledge regarding interactions with human stroke tissue and scaling up gel volume.
Researchers discovered that blood vessels have a sophisticated network of cells and connections that communicate with each other to control cardiovascular functions. This network, similar to the internet, is robust and effective in determining overall cardiovascular activity.
A new project at the University of Strathclyde aims to identify and diagnose speech disorders in primary school age children. The Variability in Child Speech (VariCS) project will analyze speech patterns in over 500 children to differentiate between typical and disordered speech.
A £1.25M project is building an interdisciplinary community of energy researchers based on equality, diversity and inclusion (EDI) and accessibility. The IGNITE Network+ aims to transform diversity by critically evaluating systemic inequalities at each stage in the career pathways of energy researchers.
A UK-based research project, funded by EPSRC, is developing miniature acoustic resonator systems using metamaterials. The goal is to create wearable personal audio and medical devices that are affordable and can operate at audio frequencies.
A recent study has identified a family of proteins involved in yeast infections, which pose risks to both humans and crops. The research found that variations in these proteins can disrupt the signalling function that leads to filamentation, impeding its progress.
The University of Strathclyde will lead two international quantum technology networks, tackling space-based quantum communication and the development of fully-integrated atomic sensors. The networks aim to bring together global experts and institutions to overcome challenges in taking quantum technologies into space.
Researchers at King's College London and the University of Strathclyde aim to create an app that calculates individual women's risk of pre-eclampsia. The project combines existing tools, PIERS, with AI to provide accurate estimates of risks for optimal care decisions.
Researchers conducted a controlled radar wave experiment to monitor plasma waves and control wave modes in the ionosphere, which can help improve GPS accuracy during space weather events. The study published in Nature Communications provides new diagnostics for temperature, density, magnetic field, and ion composition.
A new UK-wide facility will analyze innovative nanotechnologies for healthcare applications, enabling improved understanding of their performance and safety. The Multiscale Metrology Suite will provide access to world-leading technology for scientists across the UK.
A new study at the University of Strathclyde investigates using fungi to strengthen soil and reduce rainwater infiltration, aiming to prevent landslips. The research, funded by £1.3 million from UKRI, explores fungal growth in different soil types to improve natural soils' engineering performance.
Researchers at the University of Strathclyde have developed a new method to produce coherent radiation using a short undulator and attosecond duration electron bunches. This approach could revolutionize light sources by making them compact, table-top size and capable of producing ultra-short duration pulses of light.
Research at University of Strathclyde suggests frequent social media use is not necessarily linked to addiction, contradicting previous studies on attentional bias. The study tested participants' attention towards specific apps and found no association with self-reported addictive severity or established measures of engagement.
Researchers have created low-cost, next-generation screening tools for 'lazy eye' in children using computer gaming technology. The devices use webcams or virtual reality headsets to detect visual targets and analyze video streams.
Research at the University of Strathclyde found that people with high emotional intelligence are more likely to identify fake news correctly. Participants who scored highly in emotional intelligence tests made fewer errors and were more discerning in their assessment of veracity.
Researchers at the University of Strathclyde have developed new methods for detecting fingermarks on Scottish banks' new polymer notes, which are not effective with traditional cotton banknote techniques. The most effective process involves superglue fuming and infrared light.
Researchers at the University of Strathclyde are developing an exercise app to support family carers' physical and mental well-being. The app aims to provide accessible, evidence-based exercise guidance and encourage regular activity among busy carers.
Scientists at the University of Strathclyde have created a new form of high-resolution imaging technology using miniature devices that utilize terahertz radiation. This non-invasive method allows for accurate detection of small tumors and could lead to improved cancer diagnosis and treatment.
During the pandemic, time spent in parks and outdoor spaces decreased by nearly a third, while travel by public transport dropped by more than half. Experts recommend incorporating physical activity into daily routines and promoting healthy movement behaviors among children.
A new non-invasive method of monitoring diabetes uses saliva as a more convenient and sustainable alternative to traditional blood glucose testing. The research, published in PLOS ONE, achieved an accuracy rate of 95.2% using infrared platform technology.
A European Union programme aimed at reducing carbon dioxide emissions has made significant progress despite low prices in carbon markets. The EU ETS saved around 1.2 billion tons of CO2 between 2008 and 2016, nearly half of what governments pledged to reduce in their Kyoto Protocol commitments.
A global review of over 50 studies covering 22,000 children found that daily physical activity declined by 3-4 minutes per year, starting from ages 4 or 5. The study indicates that all age groups and genders face a high risk of declining physical activity, emphasizing the need for early promotion and parental involvement.
Researchers developed a new assessment to identify risks of frailty through blood biomarkers, providing potential solutions for personalized treatment. The study involved analyzing 1191 elderly people and identified 12 metabolites that differentiate between frail and non-frail individuals.
A University of Strathclyde-led partnership with M Squared aims to develop advanced computing technology for significant advancements in UK's quantum capabilities. The project will work with fintech and aerospace businesses to deliver breakthroughs in banking security, traffic management and aerospace security.
A new blood test has been developed to accelerate brain cancer diagnosis, distinguishing patients with brain cancer from healthy individuals correctly 87% of the time. The technology uses infrared light and artificial intelligence to identify the signs of cancer in a blood sample.
Researchers at the University of Strathclyde are working on a system to measure blood chemistry levels in premature and sick babies through their skin, which could replace invasive blood tests. The technology aims to collect glucose and lactate levels using a wireless patch sensor that can be placed on the baby's stomach.
Researchers propose focusing high-energy particle beams on small spots deep inside the body to target cancerous tumors precisely, reducing dose to surrounding tissue. The study aims to improve radiotherapy effectiveness and reduce costs using ultra-compact laser-wakefield accelerators.
A global survey of 25,363 beekeepers found that honey bee colonies declined by 16%, with higher losses in some regions. Beekeepers who moved their colonies to access other forage or pollination faced fewer losses than those who kept them in the same place.
A new study reveals that charged particles can emit bright flashes of gamma rays by interacting with the quantum vacuum, challenging a long-held assumption about the nature of empty space. The researchers used high-powered lasers and strong magnetic fields to create conditions where Cherenkov emission could occur in vacuum.
Professor Keith Mathieson's appointment will enhance his research into technologies interfacing with the brain to advance treatments for brain disorders, dementia, and sight loss. He aims to develop a retinal prosthetic device capable of restoring near-normal vision to patients with degenerative retinal conditions.
Strathclyde will benefit from a UK-wide £1 billion funding boost to create the technologies of tomorrow through three Catapult Centres. The Advanced Forming Research Centre (AFRC) is set to receive £96 million, while FutureForge will establish a major advanced engineering facility.
The research examines prison conditions, incarceration rates, and penal policy processes since the USSR's demise. It investigates social attitudes towards punishment, shaping cultural perceptions of history and political power.
A new imaging technology is being developed to enable more targeted Earth observation, allowing for the monitoring of climate change and ocean activity. The technology, which could be mounted on many nanosatellites, would enable continuous global coverage and more efficient data collection.
Researchers at University of Strathclyde and Capital Normal University have developed a new source of intense terahertz radiation with unprecedented efficiency. This breakthrough could lead to new advances in science and technology, including the identification of normally hidden phenomena and unique control of matter.
Researchers at the University of Strathclyde developed a laser-driven ion acceleration scheme, achieving proton energies of 100 mega-electron-volts. This innovation could lead to smaller, cheaper, and more efficient ion accelerators with transformative potential for various applications.
A University of Strathclyde project aims to enhance online support for self-harming young people by exploring technology-enabled care and digital innovations. The six-month study, funded £60,000, will investigate impact on families and develop new solutions to advance unmet needs.
The University of Strathclyde has received a Grand Challenges Explorations grant to monitor premature and at-risk babies using a new skin-worn sensor. The Neo-PATch prototype detects plasma analytes without blood samples, enabling timely treatment and keeping newborns safe with their mothers.
Professor Ashraf Salama has been awarded the Jean Tschumi Prize for Excellence in Architectural Education and Criticism. His work has influenced generations of architects worldwide and transformed the discourse on architectural education and design pedagogy.
The University of Strathclyde researchers have developed a highly efficient laser amplifier using plasma, achieving an amplification gain of over eight orders of magnitude. This breakthrough could lead to the development of ultra-intense and ultra-short laser pulses at a lower cost.