A simple method for microfluidic paper-based sample concentration using ion concentration polarization (ICP) with smartphone detection is developed. The concise and low-cost microfluidic paper-based ICP analytical device, which consists of a black backing layer, a nitrocellulose membrane, and two absorbent pads, is fabricated with the simple lamination method which is widely used for lateral flow strips. Sample concentration on the nitrocellulose membrane is monitored in real time by a smartphone whose camera is used to collect the fluorescence images from the ICP device. A custom image processing algorithm running on the smartphone is used to track the concentrated sample and obtain its fluorescence signal intensity for quantitative analys...
AbstractIon perm-selectivity is one of the major proprieties of nanofluidic devices. Within the infl...
Cell phones and smart phones can be reconfigured as biomedical sensor devices but this requires spec...
Cell phones and smart phones can be reconfigured as biomedical sensor devices but this requires spec...
A simple method for microfluidic paper-based sample concentration using ion concentration polarizati...
Microfluidic paper-based analytical devices (mu PADs) for molecular detection have great potential i...
Detection concentration of diluted anlaytes is a problem remaining in the fields of diagnosis and mo...
The purpose of this thesis is to perform fluorescence polarization(FP) analysis of biomolecules usin...
DoctorIon concentration polarization (ICP) is an electrochemical phenomenon that takes place in memb...
We describe the design and characteristics of a paper-based analytical device for analyte concentrat...
In this work, an Android application for measurement of nitrite concentration and pH determination i...
Microfluidic paper-based analytical devices (??PADs) have a high potential for miniaturizing complex...
This thesis focuses on the development of two new applications using ion concentration polarization ...
ABSTRACT: Low-cost paper-based assays are emerging as the platform for diagnostics worldwide. Paper ...
Non-invasive diagnosis on biological liquid samples, such as urine, sweat, saliva, and tears, may al...
icrofluidic paper-based analytical devices (mu PADs) have attracted much attention over the past dec...
AbstractIon perm-selectivity is one of the major proprieties of nanofluidic devices. Within the infl...
Cell phones and smart phones can be reconfigured as biomedical sensor devices but this requires spec...
Cell phones and smart phones can be reconfigured as biomedical sensor devices but this requires spec...
A simple method for microfluidic paper-based sample concentration using ion concentration polarizati...
Microfluidic paper-based analytical devices (mu PADs) for molecular detection have great potential i...
Detection concentration of diluted anlaytes is a problem remaining in the fields of diagnosis and mo...
The purpose of this thesis is to perform fluorescence polarization(FP) analysis of biomolecules usin...
DoctorIon concentration polarization (ICP) is an electrochemical phenomenon that takes place in memb...
We describe the design and characteristics of a paper-based analytical device for analyte concentrat...
In this work, an Android application for measurement of nitrite concentration and pH determination i...
Microfluidic paper-based analytical devices (??PADs) have a high potential for miniaturizing complex...
This thesis focuses on the development of two new applications using ion concentration polarization ...
ABSTRACT: Low-cost paper-based assays are emerging as the platform for diagnostics worldwide. Paper ...
Non-invasive diagnosis on biological liquid samples, such as urine, sweat, saliva, and tears, may al...
icrofluidic paper-based analytical devices (mu PADs) have attracted much attention over the past dec...
AbstractIon perm-selectivity is one of the major proprieties of nanofluidic devices. Within the infl...
Cell phones and smart phones can be reconfigured as biomedical sensor devices but this requires spec...
Cell phones and smart phones can be reconfigured as biomedical sensor devices but this requires spec...