Engineering & Materials Science
Polyethylene glycols
66%
Glycols
65%
Biocompatibility
63%
Polyurethanes
55%
Polypropylenes
52%
Propylene
27%
Platelets
18%
Adhesion
12%
Nuclear magnetic resonance
11%
Assays
10%
Differential scanning calorimetry
10%
Contact angle
10%
Cells
9%
Raw materials
8%
Gel permeation chromatography
7%
Fibroblasts
6%
Hydrophilicity
6%
Block copolymers
6%
Cell culture
6%
Ethylene glycol
6%
Fourier transform infrared spectroscopy
5%
Crystallinity
5%
Blood vessels
5%
Molecular weight
5%
Polymerization
5%
Thermogravimetric analysis
5%
Muscle
4%
Thermodynamic properties
4%
Tissue
3%
Water
2%
Medicine & Life Sciences
poly(4-hydroxybutanoate)
100%
Propylene Glycol
68%
Polyurethanes
64%
Ethylene Glycol
63%
Differential Scanning Calorimetry
11%
Blood Platelets
11%
1,6-hexamethylene diisocyanate
8%
Isocyanates
7%
3-Hydroxybutyric Acid
6%
Proton Magnetic Resonance Spectroscopy
5%
Fourier Transform Infrared Spectroscopy
5%
Hydrophobic and Hydrophilic Interactions
5%
Hydroxyl Radical
5%
Polymerization
4%
Gel Chromatography
4%
Smooth Muscle Myocytes
4%
Magnetic Resonance Spectroscopy
3%
Molecular Weight
3%
Hot Temperature
3%
Cell Culture Techniques
3%
Fibroblasts
3%
Rabbits
3%
Water
3%
Cell Line
2%
Blood Vessels
2%
Chemical Compounds
Glycol
47%
Poly(propylene)
43%
Propene
42%
Poly(ethylene Glycol)
41%
Block Like Crystal
34%
Differential Scanning Calorimetry
10%
Diisocyanate
8%
Isocyanate
7%
1H NMR Spectrum
6%
Ethylene Glycol
6%
Hydroxyl
6%
Raw Material
6%
Block Copolymer
5%
Crystallinity
5%
Thermogravimetric Analysis
5%
Molecular Structure
5%
Amorphous Material
5%
Polymerization Reaction
4%
Length
4%
Fourier Transform Infrared Spectroscopy
4%
Weight
3%
Amount
3%