A multidisciplinary research team has built nanoscale bubbles with customizable outer shells that can travel to and penetrate inaccessible areas in the human body. The breakthrough enables clearer ultrasound images and potentially improved disease detection and targeted drug delivery.
Researchers have developed two new strategies to automate the assessment of stored red blood cell quality, matching and surpassing expert analysis. Trained machines can analyze vast quantities of images to accurately predict RBC degradation, eliminating human error and improving consistency.
Researchers have developed a non-invasive method to visualize damage in donor kidneys using photoacoustic imaging. This technique allows for accurate assessment of kidney scarring and can potentially revolutionize transplantation protocol by matching organs with patient life expectancy, reducing costs and improving outcomes.
Researchers investigate Mediator complex's function in transcription, shedding light on its conserved role across evolution. The study reveals the complex's involvement in developmental regulation and provides insights into gene expression.
A new study from Ryerson University assesses the link between premature mortality and environmental, socioeconomic, and demographic characteristics in Toronto's 140 neighborhoods. Neighborhoods with fewer trees, lower cancer screening rates, higher pollution levels, and lower income tend to have higher premature mortality rates.
The Ryerson-led research team developed a technique called F-Mode, which enables selective enhancement of features in biological structures based on size. This breakthrough has significant potential in ophthalmology, neurosurgery, and disease detection.