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Organic-inorganic nanocomposite gels as an in situ gelation biomaterial for injectable accommodative intraocular lens
M. Annaka,
Kell Mortensen
, T. Matsuura, M. Ito, K. Nochioka, N. Ogata
Xray and Neutron Science
Biocomplexity
13
Citations (Scopus)
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Dive into the research topics of 'Organic-inorganic nanocomposite gels as an in situ gelation biomaterial for injectable accommodative intraocular lens'. Together they form a unique fingerprint.
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Engineering & Materials Science
Intraocular lenses
100%
Gelation
78%
Biomaterials
69%
Nanocomposites
60%
Gels
59%
Silica nanoparticles
38%
Lenses
25%
Polyethylene glycols
24%
Refractive index
16%
Neutron scattering
10%
Turbidity
8%
Sol-gels
8%
Phase diagrams
8%
Biomechanics
7%
Temperature
7%
Needles
6%
Crystalline materials
6%
Gages
6%
Hysteresis
6%
Large scale systems
5%
Elastic moduli
5%
Chemical Compounds
Intraocular
81%
Biomaterial
48%
Nanocomposite
37%
Gel
35%
Poly(ethylene Glycol)
15%
Nanoparticle
12%
Refractive Index
12%
Shear Modulus
8%
Small Angle Neutron Scattering
7%
Turbidity
6%
Needle Like Crystal
6%
Hysteresis
6%
Sol
5%
Phase Diagrams
5%
Modification
3%
Aqueous Solution
3%
Composite Material
3%
Application
1%