Organic electrochemical transistors (OECTs) are receiving a great deal of attention as amplifying transducers for electrophysiology. A key limitation of this type of transistors, however, lies in the fact that their output is a current, while most electrophysiology equipment requires a voltage input. A simple circuit is built and modeled that uses a drain resistor to produce a voltage output. It is shown that operating the OECT in the saturation regime provides increased sensitivity while maintaining a linear signal transduction. It is demonstrated that this circuit provides high quality recordings of the human heart using readily available electrophysiology equipment, paving the way for the use of OECTs in the clinic
Biological environments use ions in charge transport for information transmission. The properties of...
The development of transistors with high gain is essential for applications ranging from switching e...
Organic Electrochemical Transistor (OECTs) are devices that can measure the ionic content of liquid ...
Organic electrochemical transistors (OECTs) are receiving a great deal of attention as amplifying tr...
The ability of organic electrochemical transistors is explored to record human electrophysiological ...
The portability of physiological monitoring has necessitated the biocompatibility of components used...
Electrical signals are fundamental to key biological events such as brain activity, heartbeat, or vi...
Organic electrochemical transistors (OECTs) are presently a focus of intense research and hold great...
Organic electrochemical transistors (OECTs) have emerged as versatile electrophysiological sensors d...
A visible trend over the past few years involves the application of organic electronic materials to ...
Organic Electrochemical Transistors (OECTs) have been proposed as low cost chemical sensors for the ...
Some advantages of Organic Electro-Chemical Transistor (OECT) such as high transconductance, biocomp...
The development of transistors with high gain is crucial for applications where extracellular potent...
In this progress report an overview is given on the use of the organic electrochemical transistor (O...
The development of transistors with high gain is essential for applications ranging from switching e...
Biological environments use ions in charge transport for information transmission. The properties of...
The development of transistors with high gain is essential for applications ranging from switching e...
Organic Electrochemical Transistor (OECTs) are devices that can measure the ionic content of liquid ...
Organic electrochemical transistors (OECTs) are receiving a great deal of attention as amplifying tr...
The ability of organic electrochemical transistors is explored to record human electrophysiological ...
The portability of physiological monitoring has necessitated the biocompatibility of components used...
Electrical signals are fundamental to key biological events such as brain activity, heartbeat, or vi...
Organic electrochemical transistors (OECTs) are presently a focus of intense research and hold great...
Organic electrochemical transistors (OECTs) have emerged as versatile electrophysiological sensors d...
A visible trend over the past few years involves the application of organic electronic materials to ...
Organic Electrochemical Transistors (OECTs) have been proposed as low cost chemical sensors for the ...
Some advantages of Organic Electro-Chemical Transistor (OECT) such as high transconductance, biocomp...
The development of transistors with high gain is crucial for applications where extracellular potent...
In this progress report an overview is given on the use of the organic electrochemical transistor (O...
The development of transistors with high gain is essential for applications ranging from switching e...
Biological environments use ions in charge transport for information transmission. The properties of...
The development of transistors with high gain is essential for applications ranging from switching e...
Organic Electrochemical Transistor (OECTs) are devices that can measure the ionic content of liquid ...