This paper reports on recent research creating a family of electrophoresis-based point of care devices for the determination of a wide range of ionic analytes in various sample matrices. These devices are based on a first version for the point-of-care measurement of Li+, reported in 2010 by Floris etal. (Lab Chip 2010, 10, 1799-1806). With respect to this device, significant improvements in accuracy, precision, detection limit, and reliability have been obtained especially by the use of multiple injections of one sample on a single chip and integrated data analysis. Internal and external validation by clinical laboratories for the determination of analytes in real patients by a self-test is reported. For Li+ in blood better precision than t...
The determination of inorganic cations in blood plasma is demonstrated using a combination of moving...
Introduction:\ud At the present state of micro fluidic chip technology, it is now possible to combin...
This thesis describes the development of a microchip capillary electrophoresis system for measuring ...
This paper reports on recent research creating a family of electrophoresis-based point of care devic...
We present the Medimate Multireader®, the first point-of-care Lab-on-a-Chip device based on Capillar...
We present the Medimate Multireader®, the first point-of-care Lab-on-a-Chip device based on Capillar...
We present the Medimate Multireader R, the first point-of-care lab on a chip device that is based on...
We report on the determination of creatinine in human serum using a point-of-care device suitable fo...
Background: Microchip capillary electrophoresis (CE) is a promising method for chemical analysis of ...
This paper describes a microfluidic capillary electrophoresis device with integrated conductivity de...
A fully integrated paper microfluidic electrochemical device equipped with three different cation pe...
The direct measurement of lithium in whole blood is described. Using microchip capillary electrophor...
The determination of inorganic cations in blood plasma is demonstrated using a combination of moving...
Introduction:\ud At the present state of micro fluidic chip technology, it is now possible to combin...
This thesis describes the development of a microchip capillary electrophoresis system for measuring ...
This paper reports on recent research creating a family of electrophoresis-based point of care devic...
We present the Medimate Multireader®, the first point-of-care Lab-on-a-Chip device based on Capillar...
We present the Medimate Multireader®, the first point-of-care Lab-on-a-Chip device based on Capillar...
We present the Medimate Multireader R, the first point-of-care lab on a chip device that is based on...
We report on the determination of creatinine in human serum using a point-of-care device suitable fo...
Background: Microchip capillary electrophoresis (CE) is a promising method for chemical analysis of ...
This paper describes a microfluidic capillary electrophoresis device with integrated conductivity de...
A fully integrated paper microfluidic electrochemical device equipped with three different cation pe...
The direct measurement of lithium in whole blood is described. Using microchip capillary electrophor...
The determination of inorganic cations in blood plasma is demonstrated using a combination of moving...
Introduction:\ud At the present state of micro fluidic chip technology, it is now possible to combin...
This thesis describes the development of a microchip capillary electrophoresis system for measuring ...