Results 211 to 220 of about 224,556 (309)
Towards Pragmatist Thermodynamics: An Essay on the Natural Philosophy of Entropy and Sustainability. [PDF]
Herrmann-Pillath C.
europepmc +1 more source
Bioprinting Organs—Science or Fiction?—A Review From Students to Students
Bioprinting artificial organs has the potential to revolutionize the medical field. This is a comprehensive review of the bioprinting workflow delving into the latest advancements in bioinks, materials and bioprinting techniques, exploring the critical stages of tissue maturation and functionality.
Nicoletta Murenu +18 more
wiley +1 more source
Quantifying the compressibility of the human brain. [PDF]
Weaver NJ +3 more
europepmc +1 more source
Maximum entropy principle for Kaniadakis statistics and networks
A. Macedo-Filho +3 more
openalex +2 more sources
We developed a micro‐sized, biocompatible implant for postoperative sustained delivery of anti‐fibrotic antibodies in glaucoma surgery. Machine learning‐guided optimization of polymer composition, implant geometry, and porosity enabled precise control of drug release.
Mengqi Qin +5 more
wiley +1 more source
Radiation-entropy generation by leaf and negentropy build-up of plant as dissipative structure. [PDF]
Mahulikar SP, Rastogi P, Erkoreka A.
europepmc +1 more source
Aqueous Two‐Phase Bioinks for Discrete Packing and Compartmentalization of 3D Bioprinted Cells
Aqueous two‐phase systems (ATPS) enable the formation of biomimetic interfaces crucial for tissue engineering. However, clinical translation remains limited by the challenge of precisely controlling cellular compartmentalization. Here, we developed ATPS biomaterial inks for 3D bioprinting allowing tuneable droplet formation via NaCl modulation.
Martina Marcotulli +14 more
wiley +1 more source
Heavy-tailed update distributions arise from information-driven self-organization in nonequilibrium learning. [PDF]
Zhang XY, Tang C.
europepmc +1 more source
Decellularized Extracellular Matrix (dECM) in Tendon Regeneration: A Comprehensive Review
Decellularized Extracellular Matrix (dECM) offers a promising solution by replicating the native tendon microenvironment and promoting regeneration. This review highlights advances in the decellularization methods, as well as their integration with emerging technologies and translational progress in tendon tissue engineering.
Kumaresan Sakthiabirami +4 more
wiley +1 more source

