Oriented arrays of nanofibers are ubiquitous in nature and have been widely used in recreation of the biological functions such as bone and muscle tissue regenerations. However, it remains a challenge to produce nanofiber arrays with a complex organization by using current fabrication techniques such as electrospinning and extrusion. In this work, we propose a method to fabricate the complex organization of nanofiber structures templated by a spatially varying ordered liquid crystal host, which follows the pattern produced by a maskless projection display system. By programming the synchronization of the rotated polarizer and projected segments with different shapes, various configurations of nanofiber organization ranging from a single to ...
Electroactive nanofibers were fabricated by in situ polymerization of aniline on the surface of toba...
Electrospun nanofibers represent a class of versatile scaffolds for tissue engineering applications ...
The continuous evolution of tissue engineering scaffolds has been driven by the desire to recapitula...
Oriented arrays of nanofibers are ubiquitous in nature and have been widely used in recreation of th...
Electrospun nanofibers with uniaxial alignment have recently gained its popularity as scaffolds for ...
The ability to control the alignment and organization of cell populations has great potential for ti...
Extrusion, electrospinning, and microdrawing are widely used to create fibrous polymer mats, but the...
Surfaces decorated with oriented arrays of fibers are ubiquitous in the natural world because they c...
Central and peripheral neural injuries are traumatic and can lead to loss of motor and sensory funct...
Due to their biomimetic properties, electrospun nanofibers have been widely used in neurobiology stu...
Over the past 5 decades, there has been a drive to apply technology to enhance neural regeneration i...
The goal of this protocol is to report a simple method for generating nanofiber scaffolds with grada...
Central and peripheral neural injuries are traumatic and can lead to loss of motor and sensory funct...
Polymer nanofibers and microfibers are an invaluable tool to biomedical research. Due to their vers...
Electrospun nanofibers can be readily assembled into various types of scaffolds for applications in ...
Electroactive nanofibers were fabricated by in situ polymerization of aniline on the surface of toba...
Electrospun nanofibers represent a class of versatile scaffolds for tissue engineering applications ...
The continuous evolution of tissue engineering scaffolds has been driven by the desire to recapitula...
Oriented arrays of nanofibers are ubiquitous in nature and have been widely used in recreation of th...
Electrospun nanofibers with uniaxial alignment have recently gained its popularity as scaffolds for ...
The ability to control the alignment and organization of cell populations has great potential for ti...
Extrusion, electrospinning, and microdrawing are widely used to create fibrous polymer mats, but the...
Surfaces decorated with oriented arrays of fibers are ubiquitous in the natural world because they c...
Central and peripheral neural injuries are traumatic and can lead to loss of motor and sensory funct...
Due to their biomimetic properties, electrospun nanofibers have been widely used in neurobiology stu...
Over the past 5 decades, there has been a drive to apply technology to enhance neural regeneration i...
The goal of this protocol is to report a simple method for generating nanofiber scaffolds with grada...
Central and peripheral neural injuries are traumatic and can lead to loss of motor and sensory funct...
Polymer nanofibers and microfibers are an invaluable tool to biomedical research. Due to their vers...
Electrospun nanofibers can be readily assembled into various types of scaffolds for applications in ...
Electroactive nanofibers were fabricated by in situ polymerization of aniline on the surface of toba...
Electrospun nanofibers represent a class of versatile scaffolds for tissue engineering applications ...
The continuous evolution of tissue engineering scaffolds has been driven by the desire to recapitula...