AbstractWe present an electrode based on complementary metal oxide semiconductor (CMOS) technology that can be made fully biocompatible and chemically inert using a simple, low-cost and non-specialised process. Since these devices are based on ubiquitous CMOS technology, the integrated circuits can be readily developed to include appropriate amplifiers, filters and wireless subsystems, thus reducing the complexity and cost of external systems. The unprocessed CMOS aluminium electrodes are modified using anodisation and plating techniques which do not require intricate and expensive semiconductor processing equipment and can be performed on the bench-top as a clean-room environment is not required. The resulting transducers are able to detec...
Cells are the basic structural biological units of all known living organisms. They are highly sophi...
This paper proposes a new method for bio-impedance measurement useful to 2D processing of cell cult...
This paper focuses on CMOS biosensor technologies for cellular biosensing applications. We first pre...
AbstractWe present an electrode based on complementary metal oxide semiconductor (CMOS) technology t...
The adaptation of standard integrated circuit (IC) technology for biosensors in drug discovery pharm...
The adaptation of standard integrated circuit (IC) technology as a transducer in cell-based biosenso...
AbstractMicrofabrication techniques and, in particular, complementary-metal-oxide-semiconductor (CMO...
abstract: Analysing and measuring of biological or biochemical processes are of utmost importance fo...
This study designs a low-voltage, label-free and fully integrated impedance-based biosensor using st...
Bioelectronics effectively bridges the gap between the biochemical and the electrical domains, integ...
AbstractMicrofabrication techniques and, in particular, complementary-metal-oxide-semiconductor (CMO...
The electrophysiological observation of neurological cells has allowed much knowledge to be gathered...
We present a complementary metal oxide semiconductor (CMOS) process with floating gate field-effect ...
Deoxyribonucleic acid (DNA) biosensor is a powerful tool that utilizes the DNA hybridization procedu...
Since the invention of Polymerase Chain Reaction (PCR)-based amplification of nucleic acids by Kary ...
Cells are the basic structural biological units of all known living organisms. They are highly sophi...
This paper proposes a new method for bio-impedance measurement useful to 2D processing of cell cult...
This paper focuses on CMOS biosensor technologies for cellular biosensing applications. We first pre...
AbstractWe present an electrode based on complementary metal oxide semiconductor (CMOS) technology t...
The adaptation of standard integrated circuit (IC) technology for biosensors in drug discovery pharm...
The adaptation of standard integrated circuit (IC) technology as a transducer in cell-based biosenso...
AbstractMicrofabrication techniques and, in particular, complementary-metal-oxide-semiconductor (CMO...
abstract: Analysing and measuring of biological or biochemical processes are of utmost importance fo...
This study designs a low-voltage, label-free and fully integrated impedance-based biosensor using st...
Bioelectronics effectively bridges the gap between the biochemical and the electrical domains, integ...
AbstractMicrofabrication techniques and, in particular, complementary-metal-oxide-semiconductor (CMO...
The electrophysiological observation of neurological cells has allowed much knowledge to be gathered...
We present a complementary metal oxide semiconductor (CMOS) process with floating gate field-effect ...
Deoxyribonucleic acid (DNA) biosensor is a powerful tool that utilizes the DNA hybridization procedu...
Since the invention of Polymerase Chain Reaction (PCR)-based amplification of nucleic acids by Kary ...
Cells are the basic structural biological units of all known living organisms. They are highly sophi...
This paper proposes a new method for bio-impedance measurement useful to 2D processing of cell cult...
This paper focuses on CMOS biosensor technologies for cellular biosensing applications. We first pre...