A 2.5D approach to the mechanics of electrospun fibre mats

scientific article published on 6 September 2017

A 2.5D approach to the mechanics of electrospun fibre mats is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1039/C7SM01241A
P698PubMed publication ID28875212

P50authorAlexander E EhretQ51674136
Manuel ZündelQ57557798
P2093author name stringEdoardo Mazza
P2860cites workMathematical model of mechanical behavior of micro/nanofibrous materials designed for extracellular matrix substitutes.Q51339344
Virtual design of electrospun-like gelatin scaffolds: the effect of three-dimensional fibre orientation on elasticity behaviour.Q51669834
Coupled macroscopic and microscopic scale modeling of fibrillar tissues and tissue equivalents.Q52054972
Toughening in electrospun fibrous scaffoldsQ53101442
Electrospinning of Nanofibers: Reinventing the Wheel?Q55951873
Statistical Thermodynamics of Random Networks [and Discussion]Q56688814
Electrospinning: A Fascinating Method for the Preparation of Ultrathin FibersQ57340829
An Introduction to Electrospinning and NanofibersQ57379940
Orientation image analysis of electrospun submicro-fibers based on Hough transform and Regionprops functionQ57380845
Simulation of the multi-scale convergence in computational homogenization approachesQ57708009
Volume-averaging theory for the study of the mechanics of collagen networksQ59216447
Electrospinning of nano/micro scale poly(L-lactic acid) aligned fibers and their potential in neural tissue engineeringQ28297215
The influence of fiber diameter of electrospun substrates on neural stem cell differentiation and proliferationQ28299395
Fabrication and modeling of dynamic multipolymer nanofibrous scaffoldsQ33697197
Cell infiltration and growth in a low density, uncompressed three-dimensional electrospun nanofibrous scaffoldQ33757301
From single fiber to macro-level mechanics: A structural finite-element model for elastomeric fibrous biomaterialsQ34195352
Geometric characterization and simulation of planar layered elastomeric fibrous biomaterialsQ34759317
Macroporosity enhances vascularization of electrospun scaffoldsQ34774062
Computer‐aided tissue engineering: overview, scope and challengesQ35561636
Statistical geometry of pores and statistics of porous nanofibrous assembliesQ36539841
Measuring fiber alignment in electrospun scaffolds: a user's guide to the 2D fast Fourier transform approachQ37141358
Cross-Linked Fiber Network Embedded in Elastic MatrixQ37205322
The effect of the alignment of electrospun fibrous scaffolds on Schwann cell maturation.Q37268026
Three-dimensional scaffolds for tissue engineering applications: role of porosity and pore sizeQ38106755
Current trends in the design of scaffolds for computer-aided tissue engineeringQ38159099
Electrosprayed nanoparticles and electrospun nanofibers based on natural materials: applications in tissue regeneration, drug delivery and pharmaceuticalsQ38269433
Advances in skin regeneration: application of electrospun scaffoldsQ38365686
Biomaterials based strategies for skeletal muscle tissue engineering: existing technologies and future trendsQ38428238
Mechanical biocompatibility of highly deformable biomedical materialsQ38444709
Multi-functional electrospun nanofibres for advances in tissue regeneration, energy conversion & storage, and water treatmentQ38685882
Constitutive modeling of an electrospun tubular scaffold used for vascular tissue engineeringQ39065022
Elastomeric electrospun polyurethane scaffolds: the interrelationship between fabrication conditions, fiber topology, and mechanical propertiesQ39411585
Relationships between specific surface area and pore size in electrospun polymer fibre networksQ39727226
Aligned and random nanofibrous substrate for the in vitro culture of Schwann cells for neural tissue engineeringQ39875802
The anisotropic mechanical behaviour of electro-spun biodegradable polymer scaffolds: Experimental characterisation and constitutive formulation.Q40613891
Characterization of the complete fiber network topology of planar fibrous tissues and scaffoldsQ42702076
In vitro cell infiltration and in vivo cell infiltration and vascularization in a fibrous, highly porous poly(D,L-lactide) scaffold fabricated by cryogenic electrospinning techniqueQ42808093
Effect of fiber diameter on spreading, proliferation, and differentiation of osteoblastic cells on electrospun poly(lactic acid) substratesQ42812239
Computational predictions of the tensile properties of electrospun fibre meshes: effect of fibre diameter and fibre orientationQ43186631
Effect of fiber diameter, pore size and seeding method on growth of human dermal fibroblasts in electrospun poly(epsilon-caprolactone) fibrous matsQ43263097
Tailoring the porosity and pore size of electrospun synthetic human elastin scaffolds for dermal tissue engineeringQ47370938
Scaling of nonaffine deformation in random semiflexible fiber networks.Q47441300
A discrete network model to represent the deformation behavior of human amnionQ47586176
Affine versus non-affine fibril kinematics in collagen networks: theoretical studies of network behavior.Q51251225
P433issue37
P304page(s)6407-6421
P577publication date2017-09-06
P1433published inSoft MatterQ3488877
P1476titleA 2.5D approach to the mechanics of electrospun fibre mats
P478volume13

Reverse relations

Q55375249Potential of Electrospun Poly(3-hydroxybutyrate)/Collagen Blends for Tissue Engineering Applications.cites workP2860

Search more.