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Gellan gum-based granular gels as suspension media for biofabrication
Andrew McCormack
,
Laura M. Porcza
,
Nicholas R. Leslie
, Ferry P. W. Melchels
*
*
Corresponding author for this work
Institute of Biological Chemistry, Biophysics and Bioengineering
School of Engineering & Physical Sciences
Institute of Chemical Sciences
Research output
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Contribution to journal
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Article
›
peer-review
1
Citation (Scopus)
25
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INIS
suspensions
100%
gels
100%
gums
100%
applications
50%
shear
50%
speed
50%
droplets
50%
fabrication
50%
gelation
50%
tissues
25%
water
25%
range
25%
yields
25%
engineering
25%
fluids
25%
cooling
25%
healing
25%
plasticity
25%
tolerance
25%
gelatin
25%
biomimetics
25%
viscosity
25%
hydrogels
25%
cell cultures
25%
filaments
25%
medicine
25%
Engineering
Biofabrication
100%
Gelation
100%
Hydrogel
50%
Engineering
50%
Fits and Tolerances
50%
Regenerative Medicine
50%
Biomimetics
50%
Yield Point
50%
3D Bioprinting
50%
Material Science
Yield Stress
100%
Hydrogel
100%
3D Bioprinting
100%
Viscoplasticity
100%
Chemical Engineering
Gelation
100%
Hydrogel
50%
Biomimetics
50%