Results 151 to 160 of about 100,897 (348)
Back Again to the Future: A New Era for Cerebroprotection
Cerebroprotection is a fresh framework for designing neurological therapy that targets glia and vascular cells, in addition to neurons. In the future, successful cerebroprotection will involve targeting all elements of the neurovascular unit. Preclinical trials must include functional outcomes, as well as lesion morphometry.
Patrick Lyden
wiley +1 more source
Micro/Nanorobot for Drug Delivery—A Review of Material Selections
This review explores material strategies for biomedical micro/nanorobots, emphasizing their roles in propulsion, navigation, drug delivery, and biodegradability. It highlights advancements in metallic, polymeric, and hybrid materials, while addressing clinical translation challenges such as toxicity, immune response, and manufacturability.
Xiaozhuo Wu, Bingyun Li, Malcolm Xing
wiley +1 more source
Detecting hypercoagulability in sepsis: thromboelastometry vs thrombomodulin-modified thrombin generation test [PDF]
VV Osovskikh +5 more
openalex +1 more source
Bioprinted Excitable Tissues with Multistimulation Systems for Promoting Function and Maturation
This review provides an overview of stimulation strategies used to enhance the functional maturation of bioprinted excitable tissues. It addresses key limitations in physiological performance of bioprinted excitable tissues, outlines major stimulation modalities—including electrical, mechanical, optical, magnetic, ultrasound, and hybrid—and examines ...
Uijung Yong, Jinseon Park, Jinah Jang
wiley +1 more source
Multiphasic generation of diacylglycerol in thrombin-activated human platelets [PDF]
MH Werner +2 more
openalex +1 more source
In patients with hemophilia, a decreased thrombin generation profile is associated with a severe bleeding phenotype [PDF]
Marieke J.A. Verhagen +11 more
openalex +1 more source
3D Hydrogel Cell Cultures and Their Biomedical Applications
The review highlights the advantages of hydrogel‐based 3D cell cultures over traditional 2D models. These hydrogels closely mimic natural cellular environments, improving research in tissue engineering, drug discovery, cancer studies, and neuroscience.
Tri Lan Thai +7 more
wiley +1 more source

