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Beckman Institute for Advanced Science and Technology


How to MRI your dragon: Illinois researchers develop first bearded dragon brain atlas

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.

SourceBeckman Institute for Advanced Science and Technology·JournalFrontiers in Veterinary Science·TypeImaging analysis·DateJun 28, 2022

New ultrasound tool measures blood flow, images microvasculature in the brain

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.

SourceBeckman Institute for Advanced Science and Technology·JournalIEEE Transactions on Medical Imaging·TypeExperimental study·DateJun 1, 2022

The future of data storage is double-helical, research indicates

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.

SourceBeckman Institute for Advanced Science and Technology·JournalNano Letters·TypeExperimental study·DateMar 3, 2022

Listening to the leaves: Adding bioinspired veins to foamed polymers

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.

SourceBeckman Institute for Advanced Science and Technology·JournalAdvanced Materials·TypeExperimental study·DateJan 12, 2022

Diamonds are forever: Scientists develop microscopic calibration tool with fluorescent nanodiamonds

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.

SourceBeckman Institute for Advanced Science and Technology·JournalPhotonics Research·TypeImaging analysis·DateNov 5, 2021

Pass the salt: machine learning accelerates molten salt simulations for nuclear power applications

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...

SourceBeckman Institute for Advanced Science and Technology·JournalThe Journal of Physical Chemistry B·TypeComputational simulation/modeling·DateOct 11, 2021

Light in, sound out: photoacoustic probe helps find and fight Wilson's disease and other maladies

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.

SourceBeckman Institute for Advanced Science and Technology·JournalProceedings of the National Academy of Sciences·TypeRandomized controlled/clinical trial·DateSep 30, 2021

Atom by atom: Scientists simulate a step in hepatitis B viral infection to help develop therapies targeted at capsid disassembly

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.

SourceBeckman Institute for Advanced Science and Technology·TypeComputational simulation/modeling·DateSep 7, 2021

Seeing (infra)red: Researchers develop software to enhance infrared imaging-based cancer diagnosis

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.

SourceBeckman Institute for Advanced Science and Technology·JournalChemometrics and Intelligent Laboratory Systems·TypeComputational simulation/modeling·DateAug 5, 2021

Computational method provides faster high-resolution mass spectrometry imaging

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.

SourceBeckman Institute for Advanced Science and Technology·JournalJournal of the American Society for Mass Spectrometry·DateDec 10, 2020

Combined exercise, mindfulness training may help reduce fatigue in cancer survivors

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.

New approach simultaneously measures EEG and fMRI connectomes

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...

Understanding how monomer sequence affects conductance in 'molecular wires'

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.

SourceBeckman Institute for Advanced Science and Technology·JournalJournal of the American Chemical Society·DateMar 11, 2020

Researchers develop label-free microscopic techniques to visualize extracellular vesicles

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.

SourceBeckman Institute for Advanced Science and Technology·JournalProceedings of the National Academy of Sciences·DateFeb 20, 2020