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Alternate soaking enables easy control of mineralized collagen scaffold mechanics from nano-to macro-scale
Brendan H. Grue, Luke C. Vincent,
Laurent Kreplak
,
Samuel P. Veres
Chemical Engineering
科研成果
:
期刊稿件
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同行评审
6
引用 (Scopus)
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探究 'Alternate soaking enables easy control of mineralized collagen scaffold mechanics from nano-to macro-scale' 的科研主题。它们共同构成独一无二的指纹。
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Keyphrases
Collagen Fibrils
100%
Scaffold Mechanics
100%
Alternate Soaking Process
100%
Mineralized Collagen Scaffolds
100%
Flexural Modulus
75%
Indentation Modulus
50%
Carbonate
25%
Mechanical Properties
25%
Stem Cells
25%
Citrate
25%
Collagen
25%
Ultrastructure
25%
5-cycle
25%
Aspartic Acid
25%
Functional Response
25%
Controllable Mechanical Properties
25%
Mineralized Collagen
25%
Bone Tissue Regeneration
25%
0-cycles
25%
Scaffold Mechanical Properties
25%
Chemical Characteristics
25%
Cryosectioning
25%
Sequential Exposure
25%
Tissue Scaffolds
25%
Decellularized Tendon
25%
Phosphate Solution
25%
Bioresorbable Scaffold
25%
Highly Aligned
25%
Flexural Test
25%
Nanomechanics
25%
Cellular Interactions
25%
Inorganic Minerals
25%
Collagen Sheet
25%
Radial Modulus
25%
Surface Architecture
25%
Engineering
Mineralisation
100%
Macroscale
100%
Collagen Scaffold
100%
Flexural Modulus
42%
Indentation
28%
Nanoscale
14%
Phosphate Solution
14%
Bone Tissue Regeneration
14%
Stem Cell
14%
Nanomechanics
14%
Material Science
Indentation
100%
Chemical Property
50%
Scanning Electron Microscopy
50%
Nanomechanics
50%
Flexural Testing
50%
Stem Cell
50%