Research findings could inform understanding of how congenital conditions may affect organ development, leading to better ...
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.
Hopkins BME students go on to become leaders in industry, medicine, and science, all with a passion for solving problems.
Pedro Irazoqui is a pioneer in the development of wireless implantable and wearable devices with the potential to treat conditions like epilepsy or glaucoma. He is a Professor in both Electrical and ...
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 ...
In recent years, mRNA technology enabled the rapid development of vaccines to fight COVID-19, saving millions of lives. That same mRNA-powered approach to medicine—in which synthetic mRNA is ...
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 ...
Researchers at Johns Hopkins University have identified key brain regions involved in associating sounds with specific behaviors. Published in Cell Reports, the new study offers insight into how the ...
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 ...
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