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Investigation of synergistic effects of inductive and conductive factors in gelatin-based cryogels for bone tissue engineering
Han Tsung Liao, K. T. Shalumon, Kun Hung Chang, Chialin Sheu,
Jyh Ping Chen
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此作品的通信作者
化工與材料工程學系(含學碩博士班及碩士在職專班)
Chang Gung University
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引文 斯高帕斯(Scopus)
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Biochemistry, Genetics and Molecular Biology
Bone
100%
Protein
57%
Leporidae
28%
Cross-Link
28%
Collagen
28%
Bone Development
28%
Osteocalcin
28%
Kinetics
14%
Upregulation
14%
Nested Gene
14%
Animal Models
14%
Cell Proliferation
14%
Association
14%
Regeneration
14%
Computer Assisted Tomography
14%
Cellular Differentiation
14%
In Vitro Study
14%
Confocal Microscopy
14%
Sustained Drug Release
14%
Ossification
14%
Porosity
14%
Bone Regeneration
14%
Water Transport
14%
Bone Morphogenetic Protein
14%
Pore Size
14%
Osteopontin
14%
Mineralization
14%
Elevated Alkaline Phosphatase
14%
In Vitro Release
14%
Nursing and Health Professions
Gelatin
100%
Cryogel
100%
Bone Morphogenetic Protein 2
91%
Protein
33%
Analysis
16%
Marker
16%
Collagen
16%
Osteocalcin
16%
Water
8%
Swelling
8%
Computer Assisted Tomography
8%
Pore Size
8%
Alkaline Phosphatase
8%
Confocal Microscopy
8%
Bone Morphogenetic Protein
8%
Osteopontin
8%
Porosity
8%
Sustained Drug Release
8%
Pharmacology, Toxicology and Pharmaceutical Science
Gelatin
100%
Bone Morphogenetic Protein 2
100%
Protein
36%
Collagen
18%
Leporidae
18%
Osteocalcin
18%
Cell Proliferation
9%
Water
9%
Sustained Release
9%
Bone Morphogenetic Protein
9%
Swelling
9%
Alkaline Phosphatase
9%
Osteopontin
9%
Chemical Engineering
Water
100%
Cross-Link (Molecular Structure)
100%
Material Science
Protein
71%
Collagen
28%
Pore Size
14%
Phosphatase
14%
Void Fraction
14%
Tomography
14%
Toughness
14%
Swelling
14%
Cell Proliferation
14%