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Okinawa Institute of Science and Technology (OIST) Graduate University


Stretch and flow: Research sheds light on unusual properties of well-known materials

Scientists have combined experiments with simulations to reveal new insights into the flow behavior of elasto-visco-plastic materials. Their research highlights the importance of including elasticity in future models, which is crucial for understanding how these materials behave under different conditions.

SourceOkinawa Institute of Science and Technology (OIST) Graduate University·JournalProceedings of the National Academy of Sciences·DateMay 18, 2020

Leaving its mark: How frailty impacts the blood

Researchers at OIST Graduate University developed a new method to diagnose frailty using metabolomics and identified key biomarkers in the blood. The study found that 22 blood metabolites correlate with frailty, cognitive impairment, and hypomobility, offering potential for early diagnosis and treatment.

SourceOkinawa Institute of Science and Technology (OIST) Graduate University·JournalProceedings of the National Academy of Sciences·DateApr 6, 2020

Caught in a spin: Spiral vortex streamlines delivery of nanomaterials into cells

Scientists have developed a rapid and efficient delivery method that uses the power of a tiny fluid vortex to deform cell membranes, allowing for the delivery of nanomaterials such as DNA, proteins, and drugs. The device, called a spiral hydroporator, can deliver nanomaterials into around one million cells per minute with up to 96% eff...

Rich rewards: Scientists reveal ADHD medication's effect on the brain

Researchers scanned the brains of young adults with ADHD while taking methylphenidate to study its effect on the brain's reward system. The results showed that methylphenidate increased activity in the ventral striatum in response to rewards, suggesting a possible mechanism for improving focus and behavior in individuals with ADHD.

New perovskite material shows early promise as an alternative to silicon

Researchers at OIST have discovered a new configuration of the inorganic perovskite material CsPbI3, which efficiently creates electricity and has been stabilized in a way that competes with industry-leading materials. The material's conversion efficiency was increased from 15% to 18% after treatment with choline iodide.