Directional Liquid Transport Enabled pH‐Responsive Hierarchical Composite for Enhanced Wound Healing
A hierarchical composite with a gradient architecture transitioning from hydrophobic to hydrophilic layers integrates diode‐like liquid transport, efficient water absorption, breathability, and mechanical robustness. This device enables a multifunctional therapeutic platform with pH‐responsive dual‐drug release, providing synergistic anti‐inflammatory ...
Baolin Wang +5 more
wiley +1 more source
Investigation of the preparation of materials in space. Task 4 - Field management for weightless containerless processing Quarterly progress report, 22 Aug. - 31 Oct. 1969 [PDF]
Weightless containerless processing for space, electromagnetic position control, force measurements and techniques, and ...
Frost, R. T. +6 more
core +1 more source
Nanotherapies for Atherosclerosis: Targeting, Catalysis, and Energy Transduction
Atherosclerosis management is hindered by poor drug targeting and plaque heterogeneity. Nanotechnology overcomes these barriers via three core strategies: (1) target‐engineered nanocarriers that achieve lesion‐specific precision via ligand modification, biomimetic camouflage, stimuli‐responsive release, and self‐propelling nanomotors; (2) catalytic ...
Yuqi Yang +4 more
wiley +1 more source
Numerical Simulation for Electromagnetic Stirring of Mold for 360 mm x 450 mm Bloom Concasting
According to Maxwell electromagnetic field theory a mathematical model for simulating the mold electromagnetic rotary stirring for 360 mm x 450 mm bloom concasting has been established to analyze the distribution characteristics of magnetic flux density ...
陈永, 朱苗勇, 任兵芝
doaj
Time–Frequency Characteristics of Electromagnetic Force and Vibration in Synchronous Generator End Winding Consideration Load Variation [PDF]
Guiji Tang +5 more
openalex +1 more source
Oscillating Casimir force of trapped Bose gas in electromagnetic field [PDF]
Seyit Deniz Han, Ekrem Aydıner
openalex +1 more source
Controllable Dynamic Mechanical Cell Stimulation using Magnetically Actuated Artificial Cilia
This paper introduces a platform based on magnetic artificial cilia for providing controllable dynamic mechanical stimulation to single cells, suitable for investigating large cell populations and enabling live cell imaging. Proof‐of‐principle experiments show that cell morphology is strongly influenced by the artificial cilia, that cellular forces can
Roel Kooi +5 more
wiley +1 more source

