A team of researchers at Georgia Tech has developed a custom-built microscope that can reconstruct comprehensive 3D representations with a single camera image. This allows for quantitative analysis of organoids and provides insights into tissue development, drug interaction, and cellular behavior.
Researchers at Georgia Tech have developed the first-ever electrically tunable photonic metasurface platform, which enables reconfigurable metasurfaces with high levels of optical modulation. This breakthrough has significant implications for various technologies such as LiDAR systems, imaging, spectroscopy and sensing.
A new biomaterial-based technique has improved islet transplants for type 1 diabetes treatment by inducing permanent immune acceptance. The microgels educate the immune system to accept the graft, making it possible to regulate blood glucose levels without chronic immunosuppression.
A new device, consisting of a smart stent and printed soft sensors, can wirelessly monitor hemodynamics in real-time, detecting various vascular conditions. The system uses inductive coupling for wireless energy transfer and has the potential to replace existing clinical devices and angiograms.
A new study published in BMC Public Health shows that hybrid learning, which combines in-person and remote learning, significantly reduces the spread of COVID-19. The study found that alternating school days resulted in a 13% reduction in community disease spread, compared to regular attendance.
Researchers used terahertz imaging to uncover a hidden inscription on a 16th-century lead funerary cross, revealing the Lord's Prayer. The technique allowed for non-destructive examination of the corrosion layer, enabling the team to restore and enhance images containing the text.
Researchers are studying moths to understand agile decision-making in complex environments, aiming to develop autonomous bio-inspired systems. Meanwhile, a team is exploring origami- and kirigami-inspired flexible structures for multifunctional applications.
Researchers at Georgia Institute of Technology have developed micro-rocker bots that can move precisely on a solid surface using a single electromagnetic coil. The robots, about the size of a particle of dust, are controlled by a magnetic field generated by the coil and can perform well-controlled movement with selectable direction.
The new computational tool, AF2Complex, predicts the structure of protein complexes and their interactions, offering insights into biomolecular mechanisms. The model is based on AlphaFold 2 and performs well in predicting protein structures and complex formations.
Researchers found a significant association between high public transportation usage and higher per capita Covid incidence in the US. The study controlled for factors like education, poverty levels, and household crowding, suggesting that transit could have been an important factor in early pandemic spread.
A large-scale study of COVID-era birth data found a 6.5% decrease in premature births from cesarian and induced deliveries. The researchers believe this may be related to fewer prenatal visits during the pandemic. However, further research is needed to understand the impact on fetal health.
Researchers from Georgia Tech have developed a novel tile-based approach to construct on-demand, massively scalable arrays of 5G+ enabled smart skins. The study demonstrates the ability to enhance 5G+ technologies while featuring flexible and conformal capabilities.
Scientists at Georgia Institute of Technology observe unprecedented atomic processes that dictate mechanical behavior in metals. They develop novel methods to visualize grain boundary sliding, revealing previously unknown movements and accommodating transferred atoms through adjusting grain boundary structures.
A new study reveals that salt marsh grass in Georgia's coast relies on beneficial bacteria in its roots to access nutrients, improving plant productivity. The research provides insights into the importance of soil microorganisms in maintaining ecosystem health and supporting restoration efforts.
Researchers have developed a new approach to studying brain activity, allowing for longer-term studies and improved understanding of neural traffic jams. The new cranial window system uses surgical glue and a tiny glass window to capture high-quality blood flow imaging and stable electrical recordings.
The Kwong Lab has developed a system of synthetic biosensors that can quickly assess the effectiveness of cancer treatment using non-invasive urinalysis. The sensors detect the presence of immune cells and tumor proteases, allowing for timely feedback on treatment response.
The MagTrack study successfully completed a collaboration between Georgia Tech and Brooks Rehabilitation, creating a user-ready version of the assistive technology. Participants showed improved performance in controlling their power wheelchairs and connected devices with ease and comfort.
Researchers developed a novel scaffold to grow breast tumors with reduced immune variability, enabling more accurate immunotherapy drug testing. The new model replicates treatment-resistant breast cancer microenvironments and predicts patient responses to therapy.
A new study from Georgia Tech's School of Public Policy found that nearly half of the reports were downloaded for academic purposes, while even more were accessed by people outside educational settings. The analysis revealed strong demand among users for open-access scientific information to improve their lives, with downloads categori...
Researchers have developed a new system called Species Agnostic Nanoparticle Delivery Screening (SANDS) that improves the screening process for drug-delivering nanoparticles. SANDS allows for simultaneous testing of nanoparticles in mouse, primate, and human cells, enabling more accurate predictions of delivery in humans.
Researchers found that the primary somatosensory cortex, traditionally thought to be a basic sensory center, plays a deeper role in decision-making and facilitates flexible behavior with experience. The study suggests an expanded role for this brain area in adaptive strategies.
A new study published in The Cryosphere finds that warm seawater intrusion under glaciers may cause much higher rates of melting at the glacier bottom. This could lead to projected ice sheet volume loss being 10-50% higher, or more than doubling over the next century.
The study reveals that a single folding mechanism can generate an infinite family of shapes in flexible structures. Researchers have developed a novel approach to predict and control tough, flexible structures from skyscrapers to microscale using conformal deformations.
Surveillance testing using saliva-based PCR tests significantly reduced community COVID-19 spread, catching 62% of positive cases in the Fall 2020 semester. By combining testing with mitigation strategies like masking and social distancing, Georgia Tech reduced positivity rates from 4.1% to below 0.5%.
Scientists at Georgia Tech Research Institute have demonstrated a new approach for transporting trapped ion pairs through a single laser beam to create entangled qubits. This method reduces the need for multiple optical switches and complex controls, potentially simplifying quantum systems.
The discovery of single-walled zeolitic nanotubes by researchers at Georgia Tech, Stockholm University, and Penn State University has the potential to revolutionize the field of materials science. The team found a unique arrangement of atoms in the zeolite nanotube walls that allows it to form as a 1D tube rather than a 2D or 3D material.
Researchers at Georgia Institute of Technology have developed a new water-splitting process and material that maximize the efficiency of producing carbon-free green hydrogen. The hybrid catalysts show superior performance for both oxygen and hydrogen splitting, making it an affordable and accessible option for industrial partners.
Researchers at Georgia Institute of Technology have discovered a promising alternative to conventional lithium-ion batteries made from a common material: rubber. The material, when formulated into a 3D structure, acts as a superhighway for fast lithium-ion transport with superior mechanical toughness.
A new study by Georgia Tech researchers has found a novel pathway for understanding why debilitating side effects occur with cancer treatment. The findings suggest that the central nervous system is vulnerable to cancer treatment's adverse effects, and correcting any one may not be enough to improve human function and quality of life.
A team of international researchers, led by Jenny McGuire from Georgia Tech, aims to understand the long-term relationships between animals, their traits, and environmental changes. The project will use the late Cenozoic fossil record in Africa to forecast future changes and inform conservation biology decisions.
Researchers at Georgia Tech and collaborators observed interfacial phonon modes, confirming their existence and contribution to heat transfer at interfaces. The discovery opens a new pathway for consideration in engineering thermal conductance for electronics cooling.
A team of researchers from Georgia Tech developed a 3D-printed tracheal replacement splint to treat Ramiah, a 4-year-old girl with tracheal agenesis. The Airway Support Device was used in her successful surgery and has improved her breathing capabilities.
Researchers at Georgia Institute of Technology created soft flexible photodetectors that are up to 200% stretchable and can detect fainter light levels than conventional devices. The breakthrough material has potential applications in medical wearable sensors, implantable devices, and intelligence systems.
Researchers at Georgia Institute of Technology have identified a key class of genetic changes associated with cancer, which may be missed by current gene expression analyses. These 'hub genes' play a central role in shaping the network structure of cancer cells and could serve as new targets for targeted gene therapy.
Black soldier fly larvae thrive in dense groups when given the right amount of airflow, reducing the risk of overheating. The research, published in Frontiers in Physics, aims to make these protein-rich insects more readily available as recyclers of food waste, which totals 1.3 billion tons per year.
A new optical instrument will provide clearer images of the rhizosphere, enabling scientists to study chemical and biomolecular interactions between plants and soil. This research aims to mitigate the effects of climate change and develop more sustainable fuels and fertilizers.
The state of Georgia could dramatically reduce its greenhouse gas emissions by using onsite electric power, creating new jobs and a healthier public. CHP systems can be 85-90% efficient, reducing peak demand on the grid and providing ultra-high system efficiencies, cleaner air, and more affordable energy.
A team of researchers has developed a Dynamic Sampling Platform to analyze cells in real-time, overcoming the time-consuming and expensive process of biomanufacturing. The platform provides insight into cell behavior and biochemical information needed for process control, potentially lowering the cost of cell therapies.
Researchers have developed a prostate cancer organoid that can mimic the patient-specific microenvironment, opening up new avenues for targeted treatments. The study reveals that extracellular matrix regulates EZH2 activity and efficacy of inhibitors, as well as identifies potential new therapeutic targets like DRD2.
A new study published in Communications Biology found a significant connection between visual gaze and motor skills learning, as participants learned to make stone tools through video training. The researchers discovered that the connection evolved over time, with certain phases of learning being more closely tied to gaze patterns.
Researchers discover that finger snaps produce the highest rotational accelerations observed in humans, even faster than professional baseball pitchers. The study explores the role of friction and finds a 'Goldilocks zone' necessary for optimal energy storage.
A recent study found that Black, Hispanic, and Asian men are less likely to receive an MRI exam after a prostate-specific antigen (PSA) blood test. The study suggests racial and ethnic disparities in the use of prostate MRIs following elevated PSA results.
A team of researchers from Georgia Tech has discovered that zirconium dioxide antiferroelectric material exhibits predictable behavior when miniaturized, following a familiar law similar to ferroelectrics. This finding could lead to the design of more effective memory components and has implications beyond memory applications.
A new study by Georgia Institute of Technology researchers found that automation and AI may have a uniformly positive impact on worker well-being, but only partially. The results show that workers facing automation risk experience less stress but worse health and minimal job satisfaction. Notably, high-risk occupations like receptionis...
A team of researchers has developed an ensemble-based machine learning model that can predict how cancer patients will respond to certain drugs with high accuracy. The model was trained on data from 499 independent cell lines and validated against a clinical dataset containing seven chemotherapeutic drugs.
Researchers at Georgia Tech have created a bioproduction process to produce rocket fuel on Mars, reducing mission cost and generating excess clean oxygen. The bio-ISRU strategy uses cyanobacteria to convert CO2 into sugars, which are then converted by E. coli into a Martian propellant.
A new AI tool pairs protein pathways with clinical side effects and patient comorbidities to suggest targeted Covid-19 treatments. The tool, MOATAI-VIR, predicts 24 out of 26 major clinical manifestations of Covid-19 and their underlying disease-protein-pathway relationships.
Researchers at Georgia Tech and Emory University have developed an innovative method for delivering vaccines, including those for COVID-19, using a handheld electroporator. The device is powered by a BBQ lighter and uses microneedle technology to reduce the complexity and cost of vaccine delivery.
Researchers at Georgia Institute of Technology have developed a flow control technology to overcome limitations of traditional dipstick tests. This technology enables complex biomedical assays and can detect multiple pathogens, including SARS-CoV-2 and influenza viruses.
A new study from Georgia Institute of Technology reveals that increasing coral richness improves coral growth and survivorship. By 'outplanting' diverse coral species, researchers found a potential solution to restore climate-damaged reefs and support fisheries, tourism, and coastal protection.