Explore the latest research from Johns Hopkins Biomedical Engineering, featuring new breakthroughs in imaging, spatial ...
New system could replace need for invasive arterial lines, which come with risk of bleeding, clotting, and infection.
What if doctors could stabilize blood pressure using only sound waves? Researchers at Johns Hopkins University are pioneering a way to gently “tickle” the spinal cord with ultrasound to regulate blood ...
Imagine if after a serious accident, your damaged facial bones could be replaced with tissue made by your own cells. Or if you could pop a pill that could reprogram your immune system to fight a ...
A team of computational and clinical researchers from Johns Hopkins University has developed a ‘genotype-specific digital-twin’ strategy, nicknamed Geno-DT, to create a virtual replica of a patient’s ...
For people with Type 1 diabetes, cell transplants could finally end the need for daily insulin injections. But there’s a catch: the body’s immune system quickly attacks foreign cells, forcing patients ...
Johns Hopkins University researchers have grown a novel whole-brain organoid, complete with neural tissues and rudimentary blood vessels—an advance that could usher in a new era of research into ...
Medical data used to train AI is often “anonymized” to protect private health information, a practice crucial for HIPAA compliance. To address the limitations of traditional anonymization methods that ...
Benjamin Biggs, ENGR ’23, a second-year doctoral student in biomedical engineering, is among 50 exceptional STEM scholars selected to receive a 2024 Quad Fellowship. The Quad Fellowship provides ...
Implantable medical devices–think artificial joints, cochlear implants, and insulin pumps–make some of our most challenging health issues more manageable. Even so, human bodies frequently reject ...