Researchers at the University of Illinois Urbana-Champaign created a high-resolution map of the bearded dragon's brain, providing a standardized protocol for future clinical cases. The study identified nine anatomic structures in the brain and developed a safe and efficient MRI and sedation protocol.
Researchers at the Beckman Institute for Advanced Science and Technology observed structural chirality in achiral conjugated polymers, which can enhance solar cells' charge capacity. This discovery introduces new opportunities for research at the convergence of biology and electronics.
Researchers developed a new ultrasound localization microscopy technique to image blood vessels and measure blood flow in the brain. The method uses microscopic bubbles as a contrast agent and accelerates post-processing to 10-30 seconds, enabling rapid imaging of whole-brain microvasculature.
Researchers at the Beckman Institute found a direct link between high-fat diets and heightened nitric oxide levels, which can lead to increased risk of inflammation and cancer development. The study used a molecular probe to visualize changes in the tumor microenvironment.
Scientists at the Beckman Institute designed an organic complex to study how electrons flow between molecules. Their findings hold potential for developing efficient organic electronic devices such as batteries and energy storage systems.
A team of researchers has developed a DNA-based data storage platform with an expanded molecular alphabet, enabling the storage of vast amounts of digital information. The new system uses nanopores to distinguish between natural and chemically modified nucleotides, increasing storage density and sustainability.
A new imaging method, combining optimal imaging and machine learning, can determine cell viability without chemical staining. The approach achieved a 95% accuracy rate and has the potential to be applied in hospitals and research labs.
Studies using magnetic resonance imaging found a correlation between decreased blood flow in specific brain areas and tinnitus severity. Researchers at the University of Illinois Urbana-Champaign explored these links to better understand the causes of tinnitus.
A research team at the Beckman Institute for Advanced Science and Technology developed a chemical process to mimic trees' vascular systems in foamed polymers, adding structure and enabling directional fluid transport. The team discovered that increasing or decreasing gelation time enables direct control over the foam's cellular structure.
Researchers at Beckman Institute have defined a mathematical framework for identifying hallucinations in biomedical images. This framework will enable researchers and radiologists to quantitatively assess their image reconstruction methods and prevent patient misdiagnosis.
Researchers at the University of Illinois created a novel device using microscopic fluorescent diamonds to calibrate sensitive microscopy systems. The nanodiamonds' stability and longevity make them ideal as a 'first-aid kit' for microscopes, allowing for easy reuse and quality control.
A team of researchers from the University of Illinois Urbana-Champaign used advanced machine learning to model the physico-chemical properties of a molten salt compound called FLiNaK, enabling accurate atomic-scale reproduction and prediction of behavior under specific reactor conditions. This computational framework can help character...
Researchers developed a non-toxic, small-molecule probe that provides real-time visualization of disease progression, overcoming limitations of MRI and PET imaging. The probe binds copper ions and detects dysregulated levels, accurately identifying Wilson's disease and other maladies.
Researchers developed a method to apply deep learning to polarization-sensitive optical coherence tomography, enhancing cancer diagnosis. The technique enables OCT systems to detect abnormalities on a deeper level, differentiating microstructural features such as collagen fiber orientations.
A team of researchers from the Beckman Institute for Advanced Science and Technology has developed a fast, accurate, and cost-effective COVID-19 test. Using label-free microscopic imaging combined with artificial intelligence, they can detect and classify SARS-CoV-2 in under one minute.
Researchers successfully simulated the capsid disassembly step of hepatitis B viral infection at an unprecedented atomic level, identifying specific regions of the capsid protein that contribute to breakage. This high-accuracy simulation can help design drugs to interrupt these processes and prevent chronic infection.
A team of neuroscientists at the Beckman Institute developed safety standards for multiband EEG-fMRI imaging, reducing heating risks and maintaining data quality. By establishing protocols to mitigate artifacts, they enabled the use of accelerated fMRI sequences with EEG recordings.
A team of Beckman researchers developed software to boost infrared imaging-based cancer diagnosis, enhancing image resolution and accelerating recording speeds. The software integrates data analysis and reduces limitations associated with IR imaging, making it faster and more accurate.
Researchers discovered that communicating with female friends decreases stress hormone levels for women across the lifespan. The study tested conversational efficiency and stress responses in younger and older adult women, finding that older adults demonstrated conversational dexterity with both familiar and unfamiliar partners.
A team of neuroscientists at the Beckman Institute discovered a new neuronal circuit that selects sensory information relayed to the auditory cortex. The study reveals a 'non-linear response' mechanism, allowing humans to focus on specific sensory inputs.
Researchers at Beckman Institute develop new manufacturing process that shortens production time from two days to just minutes, enabling the creation of self-healing structural materials. The technology has potential applications in various fields, including aerospace and construction.
Researchers have found that standard definition infrared spectroscopy can be sufficient for accurate diagnosis in urgent situations, challenging the notion that high-definition imaging is always superior. The study provides guidelines for choosing the optimal technology and instrument configuration for clinical work.
Researchers used frontal polymerization to create functionally useful patterns inspired by developmental biology, achieving varying stiffness in materials. This method reduces energy consumption and eliminates the need for multiple-step manufacturing processes.
Researchers used MRI technology to investigate a new strategy for managing sodium levels in hemodialysis patients. Four weeks of low-sodium meals significantly reduced weight gain, thirst, and phosphorus levels in participants.
Researchers at the Beckman Institute created a subspace mass spectrometry imaging approach to accelerate data acquisition without sacrificing quality. This technique can detect biomolecules across a wide range of sizes and has implications for analytical chemistry, clinical studies, and neurochemical research.
Researchers developed a new method combining label-free imaging with artificial intelligence to study live cells over time. The technique allows for the estimation of cell attributes without using toxic fluorescent dyes.
Researchers at the University of Illinois Urbana-Champaign have found that combining exercise and mindfulness training can significantly reduce fatigue in breast cancer survivors. The study used a feasibility trial with 40 women, who reported a drop in fatigue levels after participating in a combination of both interventions.
Researchers found that measures such as grip strength and lean mass are associated with bone density in premenopausal women, particularly those who engage in substantial physical activity. The study also highlights the importance of considering lifestyle factors beyond just body size and age.
Researchers used magnetic resonance elastography to detect changes in the hippocampus of patients with mesial temporal lobe epilepsy, which is resistant to medication. The study found that MRE can improve early detection and characterization of the disease.
Researchers adapted existing infrared technology to assess infant recognition memory and cognitive outcomes, finding that infants prefer novel stimuli and exhibit side preferences. The automated technique eliminated examiner bias and variation, enabling large-scale studies on infant development.
Researchers have developed a new method to measure the complex interactions between different brain areas using both electroencephalography (EEG) and functional magnetic resonance imaging (fMRI). This approach reveals linked dynamics between EEG- and fMRI-derived connectomes, providing insights into neural communication. The findings s...
Researchers at Beckman Institute develop label-free imaging to evaluate fertility in sperm samples, enabling faster and more accurate analysis. The technique uses phase imaging with computational specificity to predict parameters critical to fertility.
The new method enables a wider range of materials with better control over their thermal and mechanical properties. Researchers used a mixture of two monomers to create materials tailored for various applications, including tires.
Researchers created a basic model of an ant body using ellipsoids to understand center of balance and evolution among body segments. The study reveals how ants maintain balance despite large head sizes, with implications for bio-inspired machine design.
Developing new techniques to improve atomic force microscopy has reduced the noise associated with the technique. By utilizing a piezo component to maintain zero deflection, researchers can record IR signals with improved precision and image smaller sample volumes, like cell membranes.
Researchers developed a microscope to monitor wound healing without harming the subject. They studied mice with untreated wounds, placebo treatments, and different concentrations of treatment drugs to understand how topical drugs affect the skin.
Researchers have developed a new technique to create microcapsules that respond to changes in pH, useful for applications like anti-corrosion coatings. The technique uses emulsion templates and allows control over shell thickness, core volume, and capsule size.
Researchers at University of Illinois and Colorado State University developed a new 3D imaging technique called harmonic optical tomography, which uses holographic information to generate microscopic images of tissues. The technique has potential applications in medical diagnostics, finding cracks in oil wells and airplane wings.
A new study found that lower body fat percentage is associated with higher levels of N-acetyl aspartic acid in white matter, a marker of neuronal health. Fitter adults show improved structural brain connectivity.
Researchers at the Beckman Institute developed a new technique to quantify lipids in rat brain tissue, providing more information than previous methods. The technique allows for the localization and amount of ceramides to be determined, which are important in learning and memory.
The study created flexible single crystal electronic systems by using organic semiconductors that can be stretched over 10%, exceeding the elastic limit of most single crystals. This breakthrough could enable new applications in sensors and robotics.
Scientists used molecular dynamics simulations to understand how SDS causes protein unfolding, revealing microscopic details of the process. The study provides insights into the properties of SDS-protein interactions and their applications in protein sequencing.
A new grant will support a collaboration to investigate the link between arterial, brain, and cognitive integrity in healthy older adults. The researchers aim to show that actively engaging areas of the brain can improve arterial function.
Researchers will develop techniques for analyzing MRI and echocardiogram images to improve patient assessment and diagnosis. The collaboration aims to co-develop practical solutions for both the US and India, addressing high healthcare loads and improving diagnostic accuracy.
A recent study by Rafael C. Bernardi at the University of Illinois uses computational tools to explain the mechanism behind streptavidin and biotin binding, which varies depending on the lab's conditions. The analysis shows that the tethering geometry significantly influences the unbinding mechanics.
Researchers at the University of Illinois have developed a method to precisely control the sequence in synthetic polymers, allowing them to study charge transport properties and measure conductance through single chains. This work has significant implications for designing and manipulating materials with designer properties.
Using ultrasound localization microscopy, researchers can visualize blood vessels and measure oxygen levels in tumors with high resolution. This technique has the potential to improve cancer detection and therapy evaluation by providing accurate information on tumor hypoxia.
Researchers at Beckman Institute have developed a new probe named CoxFluor that selectively detects Cyclooxygenase-2, an enzyme driving cancer progression. The probe's ability to distinguish between COX-2 and COX-1 could lead to innovative anti-inflammatory and cancer therapy strategies.
The Kong group will investigate how neurons and muscle cells communicate, with the goal of understanding how to reactivate neurons in injured muscle. They will also develop a drug delivery system to target tau proteins responsible for Alzheimer's disease.
The Beckman Institute has developed imaging techniques that capture more information about a tissue compared to traditional methods, allowing for better visualization of extracellular vesicles. These vesicles are known to increase in number and be associated with cancer, particularly breast cancer cells.