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poly(epsilon-caprolactone fumarate)
Known as:
PCLF cpd
National Institutes of Health
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Related topics
Related topics
2 relations
Broader (2)
Fumarates
Polyesters
Papers overview
Semantic Scholar uses AI to extract papers important to this topic.
2020
2020
Enhanced Nerve Cell Proliferation and Differentiation on Electrically Conductive Scaffolds Embedded with Graphene and Carbon Nanotubes.
Yuan Sun
,
Xifeng Liu
,
+4 authors
Lichun Lu
Journal of Biomedical Materials Research. Part A
2020
Corpus ID: 218837625
Conduits that promote nerve regeneration are currently of great medical concern, particularly when gaps exist between nerve…
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2018
2018
Fabrication, characterization, and biocompatibility assessment of a novel elastomeric nanofibrous scaffold: A potential scaffold for soft tissue engineering.
Elham Shamirzaei Jeshvaghani
,
L. Ghasemi‐Mobarakeh
,
+5 authors
I. Chronakis
Journal of Biomedical Materials Research. Part B…
2018
Corpus ID: 25807693
With regard to flexibility and strength properties requirements of soft biological tissue, elastomeric materials could be more…
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Highly Cited
2017
Highly Cited
2017
Effects of Dimethyloxalylglycine-Embedded Poly(ε-caprolactone) Fiber Meshes on Wound Healing in Diabetic Rats.
Qiankun Zhang
,
Joung-Hwan Oh
,
Chan Ho Park
,
J. Baek
,
H. Ryoo
,
K. Woo
ACS Applied Materials and Interfaces
2017
Corpus ID: 206440196
Impaired wound healing in diabetic patients is associated with altered inflammatory responses, poor angiogenesis, deficient…
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2016
2016
Two high performance position estimation schemes based on sliding-mode observer for sensorless SPMSM drives
Haitao Yang
,
Yongchang Zhang
,
Nong Zhang
IEEE 8th International Power Electronics and…
2016
Corpus ID: 42465963
To improve the control performance of surface permanent magnet synchronous motor (SPMSM) without speed sensor, two sensorless…
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Highly Cited
2011
Highly Cited
2011
Material properties and electrical stimulation regimens of polycaprolactone fumarate-polypyrrole scaffolds as potential conductive nerve conduits.
P. Moroder
,
M. Runge
,
+5 authors
M. Yaszemski
Acta Biomaterialia
2011
Corpus ID: 33024544
Highly Cited
2010
Highly Cited
2010
The development of electrically conductive polycaprolactone fumarate-polypyrrole composite materials for nerve regeneration.
M. Runge
,
M. Dadsetan
,
+6 authors
M. Yaszemski
Biomaterials
2010
Corpus ID: 206024445
2004
2004
Material properties and biocompatibility of self-crosslinkable poly(caprolactone fumarate) copolymer as a scaffold for guided tissue regeneration
E. Jabbari
,
Lichun Lu
,
+7 authors
M. Yaszemski
2004
Corpus ID: 28525551
Introduction Many clinical situations require treatment options for bone defects. Biodegradable scaffolds that can be injected…
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