scholarly article | Q13442814 |
P50 | author | Jonathan V. Sweedler | Q29922178 |
Stanislav S Rubakhin | Q57295950 | ||
Adina Badea | Q88788083 | ||
Mikhail Kandel | Q47112375 | ||
P2093 | author name string | Gabriel Popescu | |
Ralph G Nuzzo | |||
Emily G Tillmaand | |||
Joselle M McCracken | |||
Aaron W Oraham | |||
Molly B Mevis | |||
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3D Printed Anatomical Nerve Regeneration Pathways | Q27342772 | ||
Integrins: bidirectional, allosteric signaling machines | Q27860700 | ||
3D bioprinting of tissues and organs | Q28245289 | ||
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Geometric control of cell life and death | Q29615213 | ||
Micropatterned methacrylate polymers direct spiral ganglion neurite and Schwann cell growth. | Q30503333 | ||
A new chemotaxis device for cell migration studies | Q30578440 | ||
Engineering the morphology and electrophysiological parameters of cultured neurons by microfluidic surface patterning | Q33203993 | ||
Biological laser printing: a novel technique for creating heterogeneous 3-dimensional cell patterns | Q33206119 | ||
Plasma stencilling methods for cell patterning | Q33442687 | ||
High-throughput laser printing of cells and biomaterials for tissue engineering. | Q33509733 | ||
Laser assisted bioprinting of engineered tissue with high cell density and microscale organization. | Q33617049 | ||
Spatial light interference microscopy (SLIM). | Q33802342 | ||
Patterning proteins and cells using soft lithography | Q33806051 | ||
3D Microperiodic Hydrogel Scaffolds for Robust Neuronal Cultures. | Q33944307 | ||
Synapse microarray identification of small molecules that enhance synaptogenesis. | Q34057828 | ||
Soft lithography in biology and biochemistry | Q34304610 | ||
Synaptic plasticity in micropatterned neuronal networks. | Q51570232 | ||
Inkjet printing of viable mammalian cells. | Q51662738 | ||
Coating process and early stage adhesion evaluation of poly(2-hydroxy-ethyl-methacrylate) hydrogel coating of 316L steel surface for stent applications | Q62470740 | ||
Plasma membrane: rapid isolation and exposure of the cytoplasmic surface by use of positively charged beads | Q67538798 | ||
Cytoscribing: a method for micropositioning cells and the construction of two- and three-dimensional synthetic tissues | Q67969818 | ||
Controlled outgrowth of dissociated neurons on patterned substrates | Q70222115 | ||
Monoclonal Antibody to Thy-1 Enhances Regeneration of Processes by Rat Retinal Ganglion Cells In Culture | Q72576786 | ||
Interaction of basic polyamino acids with the red blood cell. I. Combination of polylysine with single cells | Q73788895 | ||
Multidimensional long-term time-lapse microscopy of in vitro peripheral nerve regeneration | Q80796959 | ||
Neurogenesis and neuronal communication on micropatterned neurochips | Q81045817 | ||
High-throughput printing via microvascular multinozzle arrays | Q85311096 | ||
Micropatterning neuronal networks | Q87937230 | ||
Topographical and physicochemical modification of material surface to enable patterning of living cells | Q34307314 | ||
Neural pathfinding on uni- and multidirectional photopolymerized micropatterns | Q34433972 | ||
Tissue engineering--current challenges and expanding opportunities | Q34522071 | ||
Direct freeform fabrication of seeded hydrogels in arbitrary geometries | Q34537677 | ||
A microfluidic culture platform for CNS axonal injury, regeneration and transport | Q35014942 | ||
Hydrogels for tissue engineering: scaffold design variables and applications | Q35201212 | ||
Nanofibrous collagen nerve conduits for spinal cord repair | Q35916978 | ||
Dispersion-relation phase spectroscopy of intracellular transport | Q36392315 | ||
The neuropathic pain triad: neurons, immune cells and glia | Q36983677 | ||
Hydrogels in Healthcare: From Static to Dynamic Material Microenvironments | Q37074788 | ||
A review of rapid prototyping techniques for tissue engineering purposes | Q37144229 | ||
Aligned neurite outgrowth and directed cell migration in self-assembled monodomain gels | Q37398957 | ||
Neuronal electrophysiological function and control of neurite outgrowth on electrospun polymer nanofibers are cell type dependent | Q37610693 | ||
Label-free characterization of emerging human neuronal networks | Q37657189 | ||
Thermal inkjet printing in tissue engineering and regenerative medicine | Q37995757 | ||
A Systems-Level Analysis of the Peripheral Nerve Intrinsic Axonal Growth Program | Q38973189 | ||
Synergistic hierarchical silicone-modified polysaccharide hybrid as a soft scaffold to control cell adhesion and proliferation. | Q38998878 | ||
Micropatterned coumarin polyester thin films direct neurite orientation | Q39107632 | ||
Development of multifunctional films for peripheral nerve regeneration. | Q39331641 | ||
An aligned 3D neuronal-glial co-culture model for peripheral nerve studies. | Q39608967 | ||
Bio rapid prototyping by extruding/aspirating/refilling thermoreversible hydrogel | Q39660769 | ||
A modified microstamping technique enhances polylysine transfer and neuronal cell patterning | Q40648447 | ||
Nerve guidance conduits based on double-layered scaffolds of electrospun nanofibers for repairing the peripheral nervous system | Q41396881 | ||
Electrical and neurotrophin enhancement of neurite outgrowth within a 3D collagen scaffold. | Q41769642 | ||
Direct-write assembly of 3D silk/hydroxyapatite scaffolds for bone co-cultures | Q42011503 | ||
Label-free intracellular transport measured by spatial light interference microscopy. | Q42023950 | ||
Regulation of axon guidance and extension by three-dimensional constraints | Q42411971 | ||
Programming Mechanical and Physicochemical Properties of 3D Hydrogel Cellular Microcultures via Direct Ink Writing | Q42813589 | ||
Protein thiolation and reversible protein-protein conjugation. N-Succinimidyl 3-(2-pyridyldithio)propionate, a new heterobifunctional reagent | Q42935742 | ||
Complex heterogeneous tissue constructs containing multiple cell types prepared by inkjet printing technology | Q44313480 | ||
Two pole air gap electrospinning: Fabrication of highly aligned, three-dimensional scaffolds for nerve reconstruction. | Q44958930 | ||
Micropatterned substrates coated with neuronal adhesion molecules for high-content study of synapse formation | Q45897965 | ||
Indirect coating of RGD peptides using a poly-L-lysine spacer enhances jaw periosteal cell adhesion, proliferation, and differentiation into osteogenic tissue | Q46290931 | ||
Microstamp patterns of biomolecules for high-resolution neuronal networks | Q48007909 | ||
Label-Free Imaging of Single Microtubule Dynamics Using Spatial Light Interference Microscopy | Q48035417 | ||
Three-dimensional intracellular transport in neuron bodies and neurites investigated by label-free dispersion-relation phase spectroscopy. | Q48682718 | ||
High fidelity neuronal networks formed by plasma masking with a bilayer membrane: analysis of neurodegenerative and neuroprotective processes | Q49119378 | ||
Precision extruding deposition (PED) fabrication of polycaprolactone (PCL) scaffolds for bone tissue engineering | Q50454039 | ||
Biomimetic 4D printing. | Q51547189 | ||
P433 | issue | 36 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | 3D printing | Q229367 |
P304 | page(s) | 30318-30328 | |
P577 | publication date | 2017-08-31 | |
P1433 | published in | ACS Applied Materials and Interfaces | Q2819060 |
P1476 | title | 3D-Printed pHEMA Materials for Topographical and Biochemical Modulation of Dorsal Root Ganglion Cell Response | |
P478 | volume | 9 |
Q55119997 | Real-time halo correction in phase contrast imaging. |
Q55196061 | The potential role of bioengineering and three-dimensional printing in curing global corneal blindness. |
Q47094803 | Three-dimensional mesostructures as high-temperature growth templates, electronic cellular scaffolds, and self-propelled microrobots. |
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