Mathematical Analysis of the Role of Heterogeneous Distribution of Excitable and Non-excitable Cells on Early Afterdepolarizations [PDF]
Seung‐Hyun Kim, Daisuke Sato
openalex +1 more source
This study introduces the first miniaturized, patient‐specific carotid artery model created via 3D printing using GelMA with embedded vascular cells. Combining CFD, PIV, and flow perfusion, the model replicates anatomically dependent hemodynamics and cellular responses.
Jorge A. Catano +7 more
wiley +1 more source
Effects of individual variation and seasonal vaccination on disease risks. [PDF]
Hart WS +7 more
europepmc +1 more source
Seeing inside the Body Using Wearable Sensing and Imaging Technologies
This review explores wearable technologies for noninvasive internal health monitoring. It categorizes approaches into indirect sensing (e.g., bioelectrical and biochemical signals) and direct imaging (e.g., wearable ultrasound and EIT), highlighting multimodal integration and system‐level innovation toward personalized, continuous healthcare.
Sumin Kim +3 more
wiley +1 more source
Bayesian modelling of oxygen saturation (SpO<sub>2</sub>) of cardiac patients using the asymmetric generalized error distribution. [PDF]
Abebe TN, Goshu AT.
europepmc +1 more source
Mathematical modeling of groundwaters pressure distribution in the underground structures by cylindrical form zone [PDF]
Valeriy Telichenko +3 more
openalex +1 more source
This study presents a bone‐on‐a‐chip platform incorporating TPMS scaffolds to study geometry‐dependent osteogenesis under dynamic flow. By tuning pore shape and solidity, it precisely controls mechanical cues, revealing how topological features and shear stress affect osteogenic differentiation and matrix formation.
Donggyu Kim +5 more
wiley +1 more source
A time-fractional model of hydromagnetic slip flow of viscous fluid in rotational frame with heat and mass transfer. [PDF]
Ahmad S +6 more
europepmc +1 more source
AI‐Assisted Design and Evaluation of SLM‐Ti64 Implants for Enhanced Bone Regeneration
AI‐driven simulations of biological healing, combining biomechanical modeling and machine learning, enable personalized orthopedic treatments. By decoding healing patterns influenced by implants and patient‐specific factors, this approach advances fracture repair understanding, optimizes implant design, and supports precision medicine and sustainable ...
Muhammad Usama Zaheer +3 more
wiley +1 more source

