We present a new method for fabricating three-dimensional paper-based fluidic devices that uses toner as a thermal adhesive to bond multiple layers of patterned paper together. The fabrication process is rapid, involves minimal equipment (a laser printer and a laminator) and produces complex channel networks with dimensions down to 1 mm. The devices can run multiple diagnostic assays on one or more samples simultaneously, can incorporate positive and negative controls and can be programmed to display the results of the assays in a variety of patterns. The patterns of the results can encode information, which could be used to identify counterfeit devices, identify samples, encrypt the results for patient privacy or monitor patient compliance
3D printed and paper-based Microfluidics are promising formats for applications that require portabl...
We demonstrate the use of laser-based direct-write methods, namely laser-induced forward transfer an...
Rapid diagnostic testing at a patient's location, so-called 'point-of-care' (POC) testing, is essent...
Paper-based microfluidics is a rapidly progressing inter-disciplinary technology driven by the need ...
This paper describes three-dimensional microfluidic paper-based analytical devices (3-D mu PADs) tha...
This paper describes three-dimensional microfluidic paper-based analytical devices (3-D µPADs) that ...
This paper describes three-dimensional microfluidic paper-based analytical devices (3-D mu PADs) tha...
This paper describes three-dimensional microfluidic paper-based analytical devices (3-D mu PADs) tha...
This article introduces fully enclosed microfluidic paper-based analytical devices (microPADs) fabri...
Research done on paper based microfluidic has been escalating since 2007 as paper is because attract...
Research done on paper based microfluidic has been escalating since 2007 as paper is because attract...
Access to medical care is a significant challenge facing developing countries. The World Health Org...
Access to medical care is a significant challenge facing developing countries. The World Health Org...
The demand for low-cost alternatives to conventional point-of-care (POC) diagnostic tools has led to...
Microfluidic engineering technology has been widely used for implementing lab-on-chip (LOC) type poi...
3D printed and paper-based Microfluidics are promising formats for applications that require portabl...
We demonstrate the use of laser-based direct-write methods, namely laser-induced forward transfer an...
Rapid diagnostic testing at a patient's location, so-called 'point-of-care' (POC) testing, is essent...
Paper-based microfluidics is a rapidly progressing inter-disciplinary technology driven by the need ...
This paper describes three-dimensional microfluidic paper-based analytical devices (3-D mu PADs) tha...
This paper describes three-dimensional microfluidic paper-based analytical devices (3-D µPADs) that ...
This paper describes three-dimensional microfluidic paper-based analytical devices (3-D mu PADs) tha...
This paper describes three-dimensional microfluidic paper-based analytical devices (3-D mu PADs) tha...
This article introduces fully enclosed microfluidic paper-based analytical devices (microPADs) fabri...
Research done on paper based microfluidic has been escalating since 2007 as paper is because attract...
Research done on paper based microfluidic has been escalating since 2007 as paper is because attract...
Access to medical care is a significant challenge facing developing countries. The World Health Org...
Access to medical care is a significant challenge facing developing countries. The World Health Org...
The demand for low-cost alternatives to conventional point-of-care (POC) diagnostic tools has led to...
Microfluidic engineering technology has been widely used for implementing lab-on-chip (LOC) type poi...
3D printed and paper-based Microfluidics are promising formats for applications that require portabl...
We demonstrate the use of laser-based direct-write methods, namely laser-induced forward transfer an...
Rapid diagnostic testing at a patient's location, so-called 'point-of-care' (POC) testing, is essent...