Discover how Aggregation-Induced Emission (AIE) is revolutionizing materials science, from brighter OLED displays to advanced bioimaging and smart sensors.
Exploring how cold atmospheric plasma (CAP) is revolutionizing dental care by effectively combating oral biofilms without antibiotic resistance.
Discover how bioinspired freeze casting is revolutionizing material science by mimicking nature's designs through ice templating and energy field control.
Discover how alginate/chitosan microcapsules made using membrane emulsification are revolutionizing targeted drug delivery with precise control and reduced side effects.
Comparative analysis of three fixation methods for femoral neck fractures in young adults: Cannulated Screws, Dynamic Hip Screw with Derotational Screw, and Proximal Femoral Locking Plate.
Exploring how nanometer-scale metal particles from hip implants trigger biological responses leading to implant failure
Revolutionary DNA sensor system using TOP1A enzyme for rapid, specific tuberculosis detection at point-of-care settings.
Exploring supramolecular peptide amphiphile vesicles and their revolutionary applications in medicine through host-guest complexation.
Network proteomics deciphers the intricate social network of proteins, revealing how protein structures dictate relationships that sustain life or trigger disease.
Exploring Johns Hopkins' NeuroEngineering Training Initiative (NETI) and its groundbreaking work at the intersection of neuroscience and engineering.