Strain independent twist sensor based on uneven platinum coated hollow core fiber structure

Optics Express
|September 11, 2019
PubMed

Related Concept Videos

Production of Extracellular Matrix Fibers via Sacrificial Hollow Fiber Membrane Cell Culture06:01

Production of Extracellular Matrix Fibers via Sacrificial Hollow Fiber Membrane Cell Culture

The goal of this protocol is production of whole extracellular matrix fibers targeted for wound repair which are suitable for preclinical evaluation as part of a regenerative scaffold implant. These fibers are produced by the culture of fibroblasts on hollow fiber membranes and extracted by dissolution of the membranes.
7.9K
Hollow Fiber Bioreactors for In Vivo-like Mammalian Tissue Culture08:28

Hollow Fiber Bioreactors for In Vivo-like Mammalian Tissue Culture

The functional behavior of cells in culture can be improved by culturing in more in vivo-like 3-dimensional culture environments16-21. This manuscript describes the set-up and operation of a hollow fiber bioreactor system for in vivo-like mammalian tissue...
16.9K
Fiber Optic Distributed Sensors for High-resolution Temperature Field Mapping09:48

Fiber Optic Distributed Sensors for High-resolution Temperature Field Mapping

We demonstrate use of a fiber optic distributed sensor for mapping the temperature field of mixing air jets. The Rayleigh scattering-based sensor generates thousands of data points along a single fiber to provide exceptional spatial resolution that is unattainable with traditional sensors such as...
12.4K
A Salt-Templated Synthesis Method for Porous Platinum-based Macrobeams and Macrotubes13:08

A Salt-Templated Synthesis Method for Porous Platinum-based Macrobeams and Macrotubes

A synthesis method to obtain porous platinum-based macrotubes and macrobeams with a square cross section through chemical reduction of insoluble salt-needle templates is...
9.6K
Core/shell Printing Scaffolds For Tissue Engineering Of Tubular Structures05:52

Core/shell Printing Scaffolds For Tissue Engineering Of Tubular Structures

Presented here is a simple-to-use, core/shell, three-dimensional bioprinting set-up for one-step fabrication of hollow scaffolds, suitable for tissue engineering of vascular and other tubular...
9.9K
A Polymer-based Piezoelectric Vibration Energy Harvester with a 3D Meshed-Core Structure09:51

A Polymer-based Piezoelectric Vibration Energy Harvester with a 3D Meshed-Core Structure

In this study, we fabricated a flexible 3D mesh structure and applied it to the elastic layer of a bimorph cantilever-type vibration energy harvester for the purpose of lowering resonance frequency and increasing output...
25.9K