We report the fabrication and characterization of carbon microelectrode arrays (MEAs) and their application to spatially and temporally resolve neurotransmitter release from single pheochromocytoma (PC12) cells. The carbon MEAs are composed of individually addressable 2.5-m-radius microdisks embedded in glass. The fabrication involves pulling a multibarrel glass capillary containing a single carbon fiber in each barrel into a sharp tip, followed by beveling the electrode tip to form an array (10-20 m) of carbon microdisks. This simple fabrication procedure eliminates the need for complicated wiring of the independent electrodes, thus allowing preparation of high-density individually addressable microelectrodes. The carbon MEAs have been cha...
We report the lithographic microfabrication of a movable thin film microelectrode array (MEA) probe ...
Carbon-fiber-microelectrode arrays (MEAs) have been utilized to electrochemically image neurochemica...
Nanobiotechnology is a field that utilizes the techniques of nano- and microfabrication to study bio...
Fabrication of carbon microelectrode arrays, with up to 15 electrodes in total tips as small as 10-5...
We report the fabrication and characterization of microwell-based individually addressable microelec...
We report the fabrication and characterization of micro well-based individually addressable ultra-mi...
We report the fabrication and characterization of microwell-based individually addressable microelec...
Fabrication of carbon microelectrode arrays, with up to 15 electrodes in total tips as small as 10–5...
We report the application of individually addressable microelectrode arrays (MEAs) to study the hete...
We report the lithographic microfabrication of a movable thin film microelectrode array (MEA) probe ...
We present a disposable system for recording neurotransmitter release from individual cells in vitro...
Thin-film platinum ultramicroelectrode arrays (MEAs) with subcellular microelectrodes were developed...
Biomedical Tissue Engineering, Biomaterials, & Medical Devices Poster SessionNeurons and endocrine c...
Exocytosis is an ultrafast cellular process which facilitates neuron–neuron communication in the bra...
Thin-film platinum ultramicroelectrode arrays (MEAs) with subcellular microelectrodes were developed...
We report the lithographic microfabrication of a movable thin film microelectrode array (MEA) probe ...
Carbon-fiber-microelectrode arrays (MEAs) have been utilized to electrochemically image neurochemica...
Nanobiotechnology is a field that utilizes the techniques of nano- and microfabrication to study bio...
Fabrication of carbon microelectrode arrays, with up to 15 electrodes in total tips as small as 10-5...
We report the fabrication and characterization of microwell-based individually addressable microelec...
We report the fabrication and characterization of micro well-based individually addressable ultra-mi...
We report the fabrication and characterization of microwell-based individually addressable microelec...
Fabrication of carbon microelectrode arrays, with up to 15 electrodes in total tips as small as 10–5...
We report the application of individually addressable microelectrode arrays (MEAs) to study the hete...
We report the lithographic microfabrication of a movable thin film microelectrode array (MEA) probe ...
We present a disposable system for recording neurotransmitter release from individual cells in vitro...
Thin-film platinum ultramicroelectrode arrays (MEAs) with subcellular microelectrodes were developed...
Biomedical Tissue Engineering, Biomaterials, & Medical Devices Poster SessionNeurons and endocrine c...
Exocytosis is an ultrafast cellular process which facilitates neuron–neuron communication in the bra...
Thin-film platinum ultramicroelectrode arrays (MEAs) with subcellular microelectrodes were developed...
We report the lithographic microfabrication of a movable thin film microelectrode array (MEA) probe ...
Carbon-fiber-microelectrode arrays (MEAs) have been utilized to electrochemically image neurochemica...
Nanobiotechnology is a field that utilizes the techniques of nano- and microfabrication to study bio...