Engineering
Axisymmetric Flow
20%
Barrier Layer
33%
Basic Oxygen Furnace
100%
Bone Tissue Engineering
100%
Bottom-Up Approach
20%
Building Block
40%
Casting Solution
50%
Cell Compatibility
20%
Cement Matrix
10%
Cement Mortar
10%
Cementitious Matrix
10%
Compression Strength
10%
Compressive Strength
10%
Culture Condition
20%
Degradation Mechanism
10%
Delivery Vehicle
20%
Design Model
100%
Engineering Application
50%
Fabrication Method
50%
Fine Aggregate
30%
Fresh State
100%
Furnace Slag
100%
Grain Boundaries
100%
Hardened State
100%
Hollow-Fiber Membrane
50%
Illustrates
20%
Infrastructure
10%
Internals
33%
Isothermal
10%
Macro Void
50%
Mesenchymal Stem Cell
20%
Microcarrier
100%
Microcrystalline
50%
Microparticles
20%
Microstructural Evolution
20%
Osteogenic Differentiation
20%
Pancreatic Cell
50%
Porosity
100%
Porous Structure
50%
Portland Cement
10%
Pozzolanic Reactivity
10%
Ray Diffraction
10%
Relative Permittivity
33%
Sensing Application
33%
Setting Time
10%
Tissue Regeneration
89%
Two Dimensional
20%
Young's Modulus
69%
Material Science
Calorimetry
50%
Capacitance
100%
Capacitor
33%
Cementitious Material
50%
Chemical Property
20%
Chirality
80%
Compressive Strength
50%
Corrosion
100%
Dielectric Spectroscopy
100%
Doping (Additives)
100%
Electron Microprobe
50%
Grain Boundaries
100%
Koji
25%
Microparticle
100%
Microstructural Evolution
100%
Nanofiltration Membrane
5%
Nanostructured Material
100%
Nitrogen Adsorption
33%
Organic Solvents
100%
Osteoblast
100%
Permittivity
66%
Polyaniline
100%
Portland Cement
50%
Stem Cell
100%
X-Ray Diffraction
50%
Young's Modulus
100%
Biochemistry, Genetics and Molecular Biology
Aptamer
100%
Blood Plasma
33%
Cell Adhesion
33%
Cell Culture
66%
Cellular Differentiation
100%
Dexamethasone
33%
Dielectric Spectroscopy
100%
Floor Plate
100%
Fucosylation
8%
Gas Permeability
33%
Glutamine Synthetase
33%
Hepatocyte
66%
Hollow Fiber Membrane
33%
Hydrophobicity
66%
Impedance
33%
Koji
33%
Laminin
33%
Maturation
33%
Microscopy
33%
Oncostatin M
33%
Polysaccharide
100%
Pore Density
66%
Pore Size
66%
Porosity
100%
Progenitor Cell
66%
Prostate-Specific Antigen
100%
Solution and Solubility
33%
Tissue Regeneration
33%
Transdifferentiation
66%
Transferrin
33%
Young Modulus
33%