Keyphrases
Craniomaxillofacial Reconstruction
100%
Composite Tissue
100%
Intraoperative Bioprinting
100%
Bioprinting
83%
Differentiation Factors
38%
Specific Intent
33%
Proposed Work
33%
Localized Delivery
27%
Craniomaxillofacial
27%
Craniomaxillofacial Defects
27%
Extracellular Matrix Protein 1 (ECM1)
27%
Tissue Anatomy
27%
Dermal Layer
27%
Adipokinetic Hormone
27%
3D Bioprinting
27%
Compartmentalization
27%
Human Adipose-derived Stem Cells (hADSCs)
27%
Vascularization
27%
Rat Model
19%
Successful Completion
19%
Regenerative Medicine
13%
Highly Effective
13%
Stem Cells
13%
Gene Therapy
13%
Hard Tissue
13%
Adipocyte
13%
Layer Stacking
13%
MiR-148a
13%
Bone Tissue Regeneration
13%
MicroRNA
13%
Skin Tissue Regeneration
13%
Three-layer Composites
13%
Surgery Plastic
13%
Manual Intervention
13%
Skin Biology
13%
Bone Mechanics
13%
Complex Interactions
13%
Athymic Rat
13%
Native Tissue
13%
Plastic Surgery
13%
In Situ
13%
Engineered Tissue
13%
Rodent Models
13%
Bone Biology
13%
Bone Tissue
13%
Essential Domain
13%
Stem Cell-derived
13%
Defect Information
13%
Multi-layer Skin Tissue
13%
MiR-210
13%
Cell-derived
13%
Craniomaxillofacial Surgery
13%
Stratified Layer
13%
Personalized Reconstruction
13%
Defect Area
13%
Gene Delivery
13%
Bioprinting Technology
11%
Multiple Tissues
11%
Cellular Factors
8%
Tissue Compartments
5%
Multilayer Composite
5%
Soft Tissue Reconstruction
5%
Immunodeficient
5%
Tissue Heterogeneity
5%
Regeneration
5%
Adipose-derived Stem Cells
5%
Soft Tissue
5%
Dermis
5%
Human Progenitor Cells
5%
Cranium
5%
Stem Cell Factor
5%
Surgical Environment
5%
Tissue Components
5%
Bone Construct
5%
MiRNA Mimics
5%
Natural Form
5%
Bench to Bedside
5%
Calvaria
5%
Medicine and Dentistry
Adipose Tissue
83%
Bone Tissue
49%
Dermis
40%
Adipose Derived Stem Cell
40%
Tissue Regeneration
40%
Extracellular Matrix
33%
Tissue (Anatomy)
33%
Vascularity
33%
microRNA
33%
Stem Cell
23%
Hard Tissue
23%
Adipocyte
16%
Engineered Tissue
16%
Calvaria
16%
Medicine
16%
Gene Therapy
16%
Plastic Surgery
16%
Gene Targeting
16%
Progenitor Cell
6%
Regeneration
6%