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A novel seamless elastic scaffold for vascular tissue engineering
Sang Heon Kim
, Eunna Chung
, Sang Hoon Kim
, Youngmee Jung
, Young Ha Kim
, Soo Hyun Kim
Research output
:
Contribution to journal
›
Article
›
peer-review
13
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Citations (Scopus)
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Keyphrases
Poly(L-lactide-co-ε-caprolactone)
100%
Tubular Scaffold
100%
Elastic Scaffold
100%
Tissue Engineered Vascular Graft
100%
Cylindrical Shafts
100%
Scaffold for Vascular Tissue Engineering
100%
Dip Coating
50%
Gel Spinning
50%
Mechanical Properties
50%
Blood Vessels
50%
Vascular Graft
50%
Elastic Properties
50%
Porous Layer
50%
Burst Pressure
50%
NaCl Particles
50%
Gel State
50%
Inner Layer
50%
Percentage Elongation
50%
Blood Leakage
50%
Suture Retention Strength
50%
Fibrous Network
50%
Blood Vessel Tissue Engineering
50%
Longitudinal Tensile Strength
50%
Leak Test
50%
Axis Orbit
50%
Mechanically Strong
50%
Engineering
Grafts
100%
Tissue Regeneration
100%
Caprolactone
66%
Limitations
33%
Circumferential
33%
Porous Layer
33%
Burst Pressure
33%
Elongation at Break
33%
Prosthetics
33%
Blood Vessel Tissue Engineering
33%
Longitudinal Tensile Strength
33%
Retention Strength
33%
Gel State
33%
Medicine and Dentistry
Tissue Regeneration
100%
Vascular Tissue
100%
Blood Vessel Graft
100%
Vascular Bundle
66%
Prosthetics
33%
Engineered Tissue
33%
Table Salt
33%
Suture
33%
Material Science
Shaft
100%
Ultimate Tensile Strength
50%
Elasticity
50%