Platforms that offer massively parallel, label-free biosensing can, in principle, be created by combining all-electrical detection with low-cost integrated circuits. Examples include fieldeffect transistor arrays, which are used for mapping neuronal signals1,2 and sequencing DNA3,4. Despite these successes, however, bioelectronics has so far failed to deliver a broadly applicable biosensing platform. This is due, in part, to the fact that d.c. or low-frequency signals cannot be used to probe beyond the electrical double layer formed by screening salt ions5–8, which means that under physiological conditions the sensing of a target analyte located even a short distance from the sensor (∼1 nm) is severely hampered. Here, we show that high-freq...
Dielectric properties of biological cells are functions of cellular structure, content, state, and p...
This research utilizes Electrical Impedance Spectroscopy, a technique classically used for electroch...
Charge based detection of bio-analytes using field-effect-transistors (FET's) presents an attractive...
Platforms that offer massively parallel, label-free biosensing can, in principle, be created by comb...
We describe the realization of a fully-electronic label-free temperature-controlled biosensing platf...
Electrochemical biosensors are attractive due to their ease of integration,\ud miniaturization and c...
ConspectusWe have developed a measurement platform for performing high-frequency AC detection at nan...
A microarray biosensor that measures the electrical impedance of cell suspensions is presented. Sing...
High frequency impedance spectroscopy (HFIS) biosensors based on nano-electrode arrays (NEA) demons...
Label-free, rapid detection of biomolecules in microliter volumes of highly diluted solutions (subfe...
We present a 16 x 16 CMOS biosensor array aiming at impedance detection of whole-cell bacteria. Each...
One major drawback of impedimetric biosensors is their inability to work efficiently in high-salt so...
We introduce an integrated array of glass nanopores on a silicon microchip fabricated in a batch pro...
Detection of physical changes of cells is emerging as a new diagnostic approach to determine their p...
We report unprecedented ultra high frequency capacitance spectroscopy measurements up to 500 MHz on ...
Dielectric properties of biological cells are functions of cellular structure, content, state, and p...
This research utilizes Electrical Impedance Spectroscopy, a technique classically used for electroch...
Charge based detection of bio-analytes using field-effect-transistors (FET's) presents an attractive...
Platforms that offer massively parallel, label-free biosensing can, in principle, be created by comb...
We describe the realization of a fully-electronic label-free temperature-controlled biosensing platf...
Electrochemical biosensors are attractive due to their ease of integration,\ud miniaturization and c...
ConspectusWe have developed a measurement platform for performing high-frequency AC detection at nan...
A microarray biosensor that measures the electrical impedance of cell suspensions is presented. Sing...
High frequency impedance spectroscopy (HFIS) biosensors based on nano-electrode arrays (NEA) demons...
Label-free, rapid detection of biomolecules in microliter volumes of highly diluted solutions (subfe...
We present a 16 x 16 CMOS biosensor array aiming at impedance detection of whole-cell bacteria. Each...
One major drawback of impedimetric biosensors is their inability to work efficiently in high-salt so...
We introduce an integrated array of glass nanopores on a silicon microchip fabricated in a batch pro...
Detection of physical changes of cells is emerging as a new diagnostic approach to determine their p...
We report unprecedented ultra high frequency capacitance spectroscopy measurements up to 500 MHz on ...
Dielectric properties of biological cells are functions of cellular structure, content, state, and p...
This research utilizes Electrical Impedance Spectroscopy, a technique classically used for electroch...
Charge based detection of bio-analytes using field-effect-transistors (FET's) presents an attractive...