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Engineering Challenges in Tissue Preservation
Bumsoo Han
, John C. Bischof
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peer-review
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Keyphrases
Tissue Preservation
100%
Engineering Challenges
100%
Preservation Methods
100%
Chemical Agents
100%
Cryoprotective Effect
100%
Engineered Tissue
75%
Hypothermic Preservation
75%
High Concentration
50%
Cryopreservation
50%
Vitrification
50%
Native Tissue
50%
Biological Function
25%
Thermal Properties
25%
Extremely Low Temperature
25%
Extracellular Space
25%
Heat Transfer
25%
Tissue-engineered Constructs
25%
Mass Transfer
25%
Freeze-drying
25%
Challenging Problems
25%
Biomedicine
25%
Changes in Mechanical Properties
25%
Tissue Mechanical Properties
25%
Surgeons
25%
Time Limits
25%
Ice Formation
25%
Heat Transfer Model
25%
Transplantation
25%
Phase Change
25%
Storage Time
25%
Loading-unloading
25%
Freeze-thaw
25%
Behavioral Properties
25%
Biophysics
25%
Cryogenic Techniques
25%
Phase Change Behavior
25%
Banking
25%
Safe Transportation
25%
Preservation Approaches
25%
Storage Limitation
25%
Preservation Time
25%
Freezing Injury
25%
Organ Preservation
25%
Cellular Space
25%
Engineering
Engineering
100%
Cryopreservation
100%
Low-Temperature
50%
Limitations
50%
Heat Transfer Model
50%
Shelf Availability
50%
Medicine and Dentistry
Engineered Tissue
100%
Chemical Agent
100%
Cryopreservation
50%
Surgeon
25%
Biological Functions
25%
Behavioral Change
25%
Extracellular Space
25%
Cold Injury
25%
Biochemistry, Genetics and Molecular Biology
Cryopreservation
100%
Biological Functions
20%
Medical Biology
20%
Behavioral Change
20%