The effects of carotid plaque classification and bifurcation angle on plaque: a computational fluid dynamics simulation. [PDF]
Chen A +5 more
europepmc +1 more source
This work presents a low‐cost, reagent‐free point‐of‐care biosensor integrating redox‐active polyphenol red molecularly imprinted polymers (pPhR MIPs) on highly porous gold (HPG) electrodes for ultrasensitive detection of phosphorylated tau 181 (p‐Tau 181), an Alzheimer’s disease biomarker, in undiluted biofluids.
Sudhaunsh Deshpande +4 more
wiley +1 more source
A Variable Cross-Section Microfluidic Channel for Simultaneous Reproduction of Low Oscillatory and Pulsatile Wall Shear Stress at the Carotid Bifurcation: A Computational Fluid Dynamics-Based Study. [PDF]
Li YJ +7 more
europepmc +1 more source
Harnessing Next‐Generation 3D Cancer Models to Elucidate Tumor‐Microbiome Crosstalk
Centralizes the microbiome within 3D tumor‐microbiome model platforms, including spheroids, organoids, 3D‐bioprinted constructs, and microfluidic chips, each enabling structured host‐tumor‐microbe studies. These systems support bacterial colonization, facilitating investigation of microbial impacts on tumor growth, immunity, and therapy. The microbiome
Marina Green Buzhor +12 more
wiley +1 more source
Unsuccessful aortic fenestration for aortic dissection complicated with mesenteric malperfusion analyzed using computational fluid dynamics: a case report. [PDF]
Iwanaga S +7 more
europepmc +1 more source
Microphysiological Systems of Lymphatics and Immune Organs
This review surveys recent progress in engineering lymphatic microenvironments and immune organoids within microphysiological systems, emphasizing innovative strategies to recreate the biochemical and biophysical complexity of native lymphatic tissues.
Ishita Jain +2 more
wiley +1 more source
The application of computational fluid dynamics in hepatic portal vein haemodynamics research: a narrative review. [PDF]
Wu X, Xiao H, Ma L.
europepmc +1 more source
Biodegradable Implantable Electronics with Wireless Technology for Real‐Time Clinical Applications
The article explores how bioresorbable implantable electronics merge wireless communication and power delivery with biodegradable materials to enable real‐time clinical applications. It highlights advances in materials, system design, and medical uses across neural, cardiovascular, digestive, immune, and drug‐delivery systems.
Myeongki Cho +4 more
wiley +1 more source

