Nanowire-based field-effect transistors, including devices with planar and three-dimensional configurations, are being actively explored as detectors for extra- and intracellular recording due to their small size and high sensitivities. Here we report the synthesis, fabrication, and characterization of a new needle-shaped nanoprobe based on an active silicon nanotube transistor, ANTT, that enables high-resolution intracellular recording. In the ANTT probe, the source/drain contacts to the silicon nanotube are fabricated on one end, passivated from external solution, and then time-dependent changes in potential can be recorded from the opposite nanotube end via the solution filling the tube. Measurements of conductance versus water-gate pote...
Recording intracellular bioelectrical signals is central to understanding the fundamental behaviour ...
The computational complexity of the brain depends in part on a neuron's capacity to integrate electr...
Nanoelectronic devices offer substantial potential for interrogating biological systems, although ne...
<p>Nanowire-based field-effect transistors, including devices with planar and three-dimensional conf...
The ability to make electrical measurements inside cells has led to many important advances in elect...
The ability to make electrical measurements inside cells has led to many important advances in elect...
Semiconductor nanowires configured as the active channels of field-effect transistors (FETs) have be...
New tools for intracellular electrophysiology that push the limits of spatiotemporal resolution whil...
The miniaturization of bioelectronic intracellular probes with a wide dynamic frequency range can op...
Recent advance in free-standing nanowire transistor bioprobes opens up new opportunities of accurate...
To achieve intracellular recording of action potentials by using simple devices that can be easily f...
The patch-clamp technique is one of the best approaches to investigate neural excitability. Impressi...
Single walled carbon nanotube (SWNT) field effect transistors (NTFETs) are quickly becoming the foun...
The computational complexity of the brain depends in part on a neuron’s capacity to integrate electr...
Electrophysiological studies of electrogenic cells help elucidate, diagnose, and modulate cellular e...
Recording intracellular bioelectrical signals is central to understanding the fundamental behaviour ...
The computational complexity of the brain depends in part on a neuron's capacity to integrate electr...
Nanoelectronic devices offer substantial potential for interrogating biological systems, although ne...
<p>Nanowire-based field-effect transistors, including devices with planar and three-dimensional conf...
The ability to make electrical measurements inside cells has led to many important advances in elect...
The ability to make electrical measurements inside cells has led to many important advances in elect...
Semiconductor nanowires configured as the active channels of field-effect transistors (FETs) have be...
New tools for intracellular electrophysiology that push the limits of spatiotemporal resolution whil...
The miniaturization of bioelectronic intracellular probes with a wide dynamic frequency range can op...
Recent advance in free-standing nanowire transistor bioprobes opens up new opportunities of accurate...
To achieve intracellular recording of action potentials by using simple devices that can be easily f...
The patch-clamp technique is one of the best approaches to investigate neural excitability. Impressi...
Single walled carbon nanotube (SWNT) field effect transistors (NTFETs) are quickly becoming the foun...
The computational complexity of the brain depends in part on a neuron’s capacity to integrate electr...
Electrophysiological studies of electrogenic cells help elucidate, diagnose, and modulate cellular e...
Recording intracellular bioelectrical signals is central to understanding the fundamental behaviour ...
The computational complexity of the brain depends in part on a neuron's capacity to integrate electr...
Nanoelectronic devices offer substantial potential for interrogating biological systems, although ne...