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Pins, George D.
删除限定条件 Committee: Pins, George D.
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Evaluation of a Novel Electrospun Polymer Dermal Regeneration Composite Matrix
关键词:
Biomaterials
,
Electrospinning
, and
dermal regeneration
创造者:
Molignano, Jennifer Elizabeth
Advisor:
Pins, George D
出版者:
Worcester Polytechnic Institute
创建日期:
2013-12-20
Resource Type:
Thesis
Degree:
MS
Unit (Department):
Biomedical Engineering
Towards the Fabrication of a Fibrin Based Vascular Network
关键词:
Vascular Engineering
,
Fibrin
, and
Vasculature
创造者:
Santos, Johanna Eleanor
Advisor:
Pins, George D
出版者:
Worcester Polytechnic Institute
创建日期:
2018-08-16
Resource Type:
Thesis
Degree:
MS
Unit (Department):
Biomedical Engineering
A Comparative Analysis of the Biomechanics and Biochemistry of Cell-Derived and Cell-Remodeled Matrices: Implications for Wound Healing and Regenerative Medicine
关键词:
strength
,
fibrin gel
,
glycosaminoglycans
,
tissue growth
,
Regenerative medicine
,
wound-healing model
,
tissue formation
,
human
,
proteoglycans
,
biomechanical characterization
,
UTS
,
biochemical characterization
,
fibroblast-populated
,
growth factors
,
cell-derived matrix
,
mechanics
,
Fibroblasts
,
collagen
,
serum-free
,
extensibility
,
total protein content
,
tension
,
chemically-defined medium
,
thickness
,
cell-remodeled matrix
,
tissue regeneration
,
collagen gel
, and
failure strain
创造者:
Ahlfors, Jan-Eric Wilhelm
Advisor:
Billiar, Kristen
出版者:
Worcester Polytechnic Institute
创建日期:
2004-05-03
Resource Type:
Thesis
Degree:
MS
Unit (Department):
Biomedical Engineering
Micropatterned Fibrin Hydrogels for Increased Cardiomyocyte Alignment
关键词:
Electrical stimulation
,
hiPS-CM
,
Micropatterning
,
Cardiac tissue engineering
,
Fibrin scaffold
, and
Cardiac patches
创造者:
English, Elizabeth J
Advisor:
Pins, George D
出版者:
Worcester Polytechnic Institute
创建日期:
2019-12-09
Resource Type:
Thesis
Degree:
MS
Unit (Department):
Biomedical Engineering
Designing Modular Fibrin Composite Scaffolds for Enhanced Ventricular Myocardium Regeneration
关键词:
cardiac patch
and
fibrin composite
创造者:
Chrobak, Megan O'Brien
Advisor:
Pins, George D
出版者:
Worcester Polytechnic Institute
创建日期:
2017-12-04
Resource Type:
Dissertation
Degree:
PhD
Unit (Department):
Biomedical Engineering
The Incorporation of Decellularized Cardiac ECM into Fibrin Microthreads
关键词:
extracellular matrix
,
decellularized
, and
microthreads
创造者:
Marengo, Kaitlyn A
Advisor:
Gaudette, Glenn R.
出版者:
Worcester Polytechnic Institute
创建日期:
2017-05-26
Resource Type:
Thesis
Degree:
MS
Unit (Department):
Biomedical Engineering
Designing Fibrin Microthread Scaffolds for Skeletal Muscle Regeneration
关键词:
Regenerative medicine
,
Biomaterials
,
Tissue Engineering
,
skeletal muscle regeneration
,
Stem cells
,
microthreads
,
myoblasts
,
volumetric muscle loss
,
ECM proteins
,
Fibrin
, and
hepatocyte growth factor
创造者:
Grasman, Jonathan M
Advisor:
Pins, George D
出版者:
Worcester Polytechnic Institute
创建日期:
2015-01-09
Resource Type:
Dissertation
Degree:
PhD
Unit (Department):
Biomedical Engineering
Extending the Window of Use for Human Mesenchymal Stem Cell Seeded Biological Sutures
关键词:
fibrin sutures
,
Regenerative medicine
,
fibrinolysis
, and
human mesenchymal stem cells
创造者:
Coffin, Spencer
Advisor:
Gaudette, Glenn R.
出版者:
Worcester Polytechnic Institute
创建日期:
2015-04-29
Resource Type:
Thesis
Degree:
MS
Unit (Department):
Biomedical Engineering
Fabrication and Characterization of Electrospun Poly-Caprolactone-Gelatin Composite Cuffs for Tissue Engineered Blood Vessels
关键词:
Electrospinning
,
Vascular Tissue Engineering
, and
Biomaterials
创造者:
Mayor, Elizabeth Laura
Advisor:
Rolle, Marsha Whitney
出版者:
Worcester Polytechnic Institute
创建日期:
2015-04-29
Resource Type:
Thesis
Degree:
MS
Unit (Department):
Biomedical Engineering
Engineering the Keratinocyte Microenvironment: Harnessing Topography to Direct Cellular Function
关键词:
dermal–epidermal junction
,
keratinocyte function
,
microtopography
, and
tissue engineered skin
创造者:
Clement, Amanda Lynn
Advisor:
Pins, George D
出版者:
Worcester Polytechnic Institute
创建日期:
2015-01-12
Resource Type:
Dissertation
Degree:
PhD
Unit (Department):
Biomedical Engineering
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1
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36
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