Adam Phillippy is a research professor in the departments of Computer Science, Biomedical Engineering, and Genetic Medicine at the Johns Hopkins University. A pioneer of complete genome sequencing and ...
Could a microscopic "geode" of medicine be the future of eye care? A new study shows how crystalline drug delivery could ...
Rosenberg was born with oculocutaneous albinism—a genetic condition that affects the eyes, skin, and hair, causing reduced ...
It wasn’t the most direct path to becoming a materials scientist and biomedical engineer, but Younan Xia ended up in his ...
How does the brain prepare to hear before birth? Johns Hopkins researchers discovered an internal neural "shortcut" that allows the brain to wire its hearing system before our ears even work.
Students in the biomedical engineering PhD program at Johns Hopkins will push the boundaries of scientific discovery alongside leading clinicians and researchers by developing and applying new ...
Working with “digital twins” of patients’ hearts, doctors improved cardiac ablation outcomes for patients with life-threatening arrythmias. In the first clinical trials for cardiac digital twins ...
Movement is our most fundamental means for acting on our desires. While performing tasks as varied as reaching for a cup of coffee to opening our mouth in conversation, our motor actions allow us to ...
The Department of Biomedical Engineering is uniquely positioned within the Johns Hopkins School of Medicine and the Whiting School of Engineering, giving our students access to top clinicians, ...
Dr. Green’s Biomaterials and Drug Delivery Laboratory is interested in biomaterials, drug delivery, gene therapy, nanobiotechnology, and cell engineering. Research findings — and the technologies ...
Winston Timp, an associate professor of biomedical engineering, focuses on the development and application of sequencing technologies to gain a deeper understanding of biology and a more accurate set ...
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 ...