Design, synthesis and properties of a degradable polyurethane scaffold for meniscus regeneration.
about
Development of dopant-free conductive bioelastomers.Nanotechnology biomimetic cartilage regenerative scaffolds.Multilayered silk scaffolds for meniscus tissue engineering.Changes in articular cartilage after meniscectomy and meniscus replacement using a biodegradable porous polymer implant.Printing cell-laden gelatin constructs by free-form fabrication and enzymatic protein crosslinkingThe knee meniscus: structure-function, pathophysiology, current repair techniques, and prospects for regeneration.Frictional properties of the meniscus improve after scaffold-augmented repair of partial meniscectomy: a pilot study.Meniscus tissue engineering using a novel combination of electrospun scaffolds and human meniscus cells embedded within an extracellular matrix hydrogelEngineering meniscus structure and function via multi-layered mesenchymal stem cell-seeded nanofibrous scaffoldsOrganized nanofibrous scaffolds that mimic the macroscopic and microscopic architecture of the knee meniscus.Porosity and cell preseeding influence electrospun scaffold maturation and meniscus integration in vitro.The collagen meniscus implant.Tissue engineering with meniscus cells derived from surgical debrisMeniscus tissue engineering on the nanoscale: from basic principles to clinical applicationStem cell-based meniscus tissue engineeringFabrication and evaluation of physical properties and cytotoxicity of zein-based polyurethanes.The Role of Cells in Meniscal Guided Tissue Regeneration: A Proof of Concept Study in a Goat Model.Finite Element Analysis of Meniscal Anatomical 3D Scaffolds: Implications for Tissue Engineering.Collagen scaffold meniscus implant integration in a canine model: a histological analysis.Effect on tissue differentiation and articular cartilage degradation of a polymer meniscus implant: A 2-year follow-up study in dogs.Anisotropic Porous Biodegradable Scaffolds for Musculoskeletal Tissue Engineering.Establishment of novel meniscal scaffold structures using polyglycolic and poly-l-lactic acids.Successful Total Meniscus Reconstruction Using a Novel Fiber-Reinforced Scaffold: A 16- and 32-Week Study in an Ovine Model.Exploiting novel sterilization techniques for porous polyurethane scaffolds.Effect of load on the repair of osteochondral defects using a porous polymer scaffold.
P2860
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P2860
Design, synthesis and properties of a degradable polyurethane scaffold for meniscus regeneration.
description
2004 nî lūn-bûn
@nan
2004年の論文
@ja
2004年学术文章
@wuu
2004年学术文章
@zh-cn
2004年学术文章
@zh-hans
2004年学术文章
@zh-my
2004年学术文章
@zh-sg
2004年學術文章
@yue
2004年學術文章
@zh
2004年學術文章
@zh-hant
name
Design, synthesis and properti ...... old for meniscus regeneration.
@en
Design, synthesis and properti ...... old for meniscus regeneration.
@nl
type
label
Design, synthesis and properti ...... old for meniscus regeneration.
@en
Design, synthesis and properti ...... old for meniscus regeneration.
@nl
prefLabel
Design, synthesis and properti ...... old for meniscus regeneration.
@en
Design, synthesis and properti ...... old for meniscus regeneration.
@nl
P2093
P1476
Design, synthesis and properti ...... old for meniscus regeneration.
@en
P2093
A J Pennings
A J Schouten
J H De Groot
N Ramrattan
R G J C Heijkants
R P H Veth
R V van Calck
T G van Tienen
P304
P356
10.1023/B:JMSM.0000021114.39595.1E
P577
2004-04-01T00:00:00Z
P5875
P6179
1021550516