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.
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 ...
Rachel Karchin is a pioneer in computational cancer genomics, developing innovative algorithms for variant interpretation and tumor evolution. She created CHASM, the first widely used statistical ...
Brain arteriovenous malformations (bAVMs) are complex vascular lesions where arteries connect directly to veins, bypassing the capillary network. They are a leading cause of hemorrhagic stroke in ...
Lumenate Medical is building a bladder screening platform that decouples image collection from interpretation, enabling trained non‑urologist providers to capture high-quality cystoscopy images for ...
Jane Carlton is Director of the Malaria Research Institute at the Johns Hopkins Bloomberg School of Public Health and a Bloomberg Distinguished Professor in the Departments of Biomedical Engineering, ...
Over 90% of the world’s population lacks access to MRI, largely due to the high operational and maintenance costs of traditional high-field systems. Low-field MRI (LF MRI) offers a portable, ...
Abstract: Our project presents an EEG based study of schizophrenia subtypes focusing on differences in treatment response. The work examines whether patterns in brain activity and functional ...
Nikita Sivakumar, a biomedical engineering PhD student, was recently awarded a research fellowship from the NTT Research Foundation. The award recognizes academic performance, leadership, and ...
The ability to quickly and affordably survey a patient's entire genome is expected to accelerate research, diagnostics, and precision medicine.
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 ...
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