To test a 3D approach for neural network formation, alignment, and patterning that is reproducible and sufficiently stable to allow for easy manipulation.A novel cell culture system was designed by engineering a method for the directional growth of neurons. This uses NG108-15 neuroblastoma x glioma hybrid cells cultured on suspended and aligned electrospun fibers. These fiber networks improved cellular directionality, with alignment angle standard deviations significantly lower on fibers than on regular culture surfaces. Morphological studies found nuclear aspect ratios and cell projection lengths to be unchanged, indicating that cells maintained neural morphology while growing on fibers and forming a 3D network. Furthermore, fibronectin-co...
Spinal cord injury is debilitating with functional loss often permanent due to a lack of neuro-regen...
Spinal cord injury is debilitating with functional loss often permanent due to a lack of neuro-regen...
169 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1997.Neuronal growth can be contro...
Aligned, electrospun fibers have shown great promise in facilitating directed neurite outgrowth with...
Three aligned, electrospun fiber scaffolds with unique surface features were created from poly-L-lac...
Electrospun nanofibers with uniaxial alignment have recently gained its popularity as scaffolds for ...
Electrospun nanofibers with uniaxial alignment have recently gained its popularity as scaffolds for ...
Implementing patterned fibrous matrices can offer a highly valuable platform for spatially orchestra...
Electrospun fibrous substrates mimicking extracellular matrices can be prepared by electrospinning, ...
We demonstrate an artificial three-dimensional (3D) electrical active human neuronal network system,...
We demonstrate an artificial three-dimensional (3D) electrical active human neuronal network system,...
Over the past 5 decades, there has been a drive to apply technology to enhance neural regeneration i...
Over the past 5 decades, there has been a drive to apply technology to enhance\ud neural regeneratio...
Aligned, electrospun polymer fibers have shown considerable promise in directing regenerating axons ...
Aim: The overall aim is to develop robust models for neuroscience research, with neural cells arrang...
Spinal cord injury is debilitating with functional loss often permanent due to a lack of neuro-regen...
Spinal cord injury is debilitating with functional loss often permanent due to a lack of neuro-regen...
169 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1997.Neuronal growth can be contro...
Aligned, electrospun fibers have shown great promise in facilitating directed neurite outgrowth with...
Three aligned, electrospun fiber scaffolds with unique surface features were created from poly-L-lac...
Electrospun nanofibers with uniaxial alignment have recently gained its popularity as scaffolds for ...
Electrospun nanofibers with uniaxial alignment have recently gained its popularity as scaffolds for ...
Implementing patterned fibrous matrices can offer a highly valuable platform for spatially orchestra...
Electrospun fibrous substrates mimicking extracellular matrices can be prepared by electrospinning, ...
We demonstrate an artificial three-dimensional (3D) electrical active human neuronal network system,...
We demonstrate an artificial three-dimensional (3D) electrical active human neuronal network system,...
Over the past 5 decades, there has been a drive to apply technology to enhance neural regeneration i...
Over the past 5 decades, there has been a drive to apply technology to enhance\ud neural regeneratio...
Aligned, electrospun polymer fibers have shown considerable promise in directing regenerating axons ...
Aim: The overall aim is to develop robust models for neuroscience research, with neural cells arrang...
Spinal cord injury is debilitating with functional loss often permanent due to a lack of neuro-regen...
Spinal cord injury is debilitating with functional loss often permanent due to a lack of neuro-regen...
169 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1997.Neuronal growth can be contro...