We present a cost-effective and highly-portable plastic prototype that can be interfaced with a cell phone to implement an optofluidic imaging cytometry platform. It is based on a PMMA microfluidic chip that fits inside an opto-mechanical platform fabricated by a 3D printer. The fluorescence excitation and imaging is performed using the LED and the CMOS from the cell phone increasing the compactness of the system. A custom developed application is used to analyze the images and provide a value of particle concentration
Abstract Background Real-time monitoring of cellular responses to dynamic changes in their environme...
In this study, we demonstrate that a disposable chip periodically patterned with, suitable ligands, ...
Fluorescence microscopy is one of the workhorses of biomedical research and laboratory diagnosis; ho...
We present a cost-effective and highly-portable plastic prototype that can be interfaced with a cell...
We have developed a novel imaging cytometry system using a poly(methyl methacrylate (PMMA)) based mi...
Portable sensors and biomedical devices are influenced by the recent advances in microfluidics techn...
In this work, we report a system-level integration of portable microscopy and microfluidics for the ...
It is at the heart of biological and medical research to try and understand how cells communicate wi...
<p>(a) Mobile phone microscopy optical layout for fluorescence imaging. The same apparatus was used ...
This PhD research project aimed to develop miniaturised opto-fluidic systems for cell manipulation a...
We have introduced a new hybrid fabrication method for lab-on-a-chip devices through the combination...
We have introduced a new hybrid fabrication method for lab-on-a-chip devices through the combination...
Portable smartphone-based fluorescent microscopes are becoming popular because of their capability t...
Lab-on-chips (LoCs) are microsystems capable of manipulating small amounts of fluids in microfluidic...
Optical imaging of nanoscale objects, whether it is based on scattering or fluorescence, is a challe...
Abstract Background Real-time monitoring of cellular responses to dynamic changes in their environme...
In this study, we demonstrate that a disposable chip periodically patterned with, suitable ligands, ...
Fluorescence microscopy is one of the workhorses of biomedical research and laboratory diagnosis; ho...
We present a cost-effective and highly-portable plastic prototype that can be interfaced with a cell...
We have developed a novel imaging cytometry system using a poly(methyl methacrylate (PMMA)) based mi...
Portable sensors and biomedical devices are influenced by the recent advances in microfluidics techn...
In this work, we report a system-level integration of portable microscopy and microfluidics for the ...
It is at the heart of biological and medical research to try and understand how cells communicate wi...
<p>(a) Mobile phone microscopy optical layout for fluorescence imaging. The same apparatus was used ...
This PhD research project aimed to develop miniaturised opto-fluidic systems for cell manipulation a...
We have introduced a new hybrid fabrication method for lab-on-a-chip devices through the combination...
We have introduced a new hybrid fabrication method for lab-on-a-chip devices through the combination...
Portable smartphone-based fluorescent microscopes are becoming popular because of their capability t...
Lab-on-chips (LoCs) are microsystems capable of manipulating small amounts of fluids in microfluidic...
Optical imaging of nanoscale objects, whether it is based on scattering or fluorescence, is a challe...
Abstract Background Real-time monitoring of cellular responses to dynamic changes in their environme...
In this study, we demonstrate that a disposable chip periodically patterned with, suitable ligands, ...
Fluorescence microscopy is one of the workhorses of biomedical research and laboratory diagnosis; ho...