Today, millimeter-sized nonspherical any-shape particles serve as flexible, functional scaffold material in chemical and biochemical reactors tailoring their hydrodynamic properties and active surface-to-volume ratio based on the particle's shape. Decreasing the particle size to smaller than 100 μm would be desired as it increases the surface-to-volume ratio and promotes a particle assembly based on surface interactions, allowing the creation of tailored self-assembling 3D scaffolds. This study demonstrates a continuous high-throughput fabrication of microscopic 3D particles with complex shape and sub-micron resolution using continuous two-photon vertical flow lithography. Evolving from there, in-channel particle fabrication into a confined...
Most of in vivo tissue cells reside in 3D extracellular matrix (ECM) with fluid flow. To better stud...
Manufacturing high throughput in vitro models resembling the tissue microenvironment is highly deman...
Abstract Reconfigurable modular microfluidics presents an opportunity for flexibly constructing prot...
There is need of applications of microparticles in various fields including tissue engineering, bios...
Fluidic self assembly (FSA) is a promising new method for manufacturing microscopic assemblies, whic...
The evolution of microfabrication has greatly contributed to the advances in biology and medicine, a...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2017.Cata...
Precisely shaped polymeric particles and structures arewidely used for applications in photonic mate...
The ability to fabricate materials with ultrathin architectures enables the breakthrough of low-dime...
The ability to fabricate materials with ultrathin architectures enables the breakthrough of low-dime...
During the last decade, research and development in microfluidic devices have grown significantly du...
We have developed a method to fabricate microfluidic circuits that facilitate static and dynamic ass...
The translation of continuous-flow microreactor technology to the industrial environment has been li...
We report a novel method for fabrication of three-dimensional (3D) biocompatible micro-fluidic flow ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biological Engineering, 2018.Ca...
Most of in vivo tissue cells reside in 3D extracellular matrix (ECM) with fluid flow. To better stud...
Manufacturing high throughput in vitro models resembling the tissue microenvironment is highly deman...
Abstract Reconfigurable modular microfluidics presents an opportunity for flexibly constructing prot...
There is need of applications of microparticles in various fields including tissue engineering, bios...
Fluidic self assembly (FSA) is a promising new method for manufacturing microscopic assemblies, whic...
The evolution of microfabrication has greatly contributed to the advances in biology and medicine, a...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2017.Cata...
Precisely shaped polymeric particles and structures arewidely used for applications in photonic mate...
The ability to fabricate materials with ultrathin architectures enables the breakthrough of low-dime...
The ability to fabricate materials with ultrathin architectures enables the breakthrough of low-dime...
During the last decade, research and development in microfluidic devices have grown significantly du...
We have developed a method to fabricate microfluidic circuits that facilitate static and dynamic ass...
The translation of continuous-flow microreactor technology to the industrial environment has been li...
We report a novel method for fabrication of three-dimensional (3D) biocompatible micro-fluidic flow ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biological Engineering, 2018.Ca...
Most of in vivo tissue cells reside in 3D extracellular matrix (ECM) with fluid flow. To better stud...
Manufacturing high throughput in vitro models resembling the tissue microenvironment is highly deman...
Abstract Reconfigurable modular microfluidics presents an opportunity for flexibly constructing prot...