Thin-film platinum ultramicroelectrode arrays (MEAs) with subcellular microelectrodes were developed for the spatial measurement of neurotransmitter release across single cells or clusters of single cells. MEAs consisting of 16, 25, and 36 square ultramicroelectrodes with respective widths of 4, 3, and 2 μm were fabricated on glass substrates by photolithography, thin-film deposition, and reactive ion etching. The electrodes in each MEA are tightly defined in a 30 μm × 30 μm square, which is potentially useful to measure exocytosis across a single cell or clusters of single cells. These MEAs have been characterized with scanning electron microscopy and cyclic voltammetry and show excellent stability and reproducibility. Culturing PC12 cells...
Neurotransmission is a key process of communication between neurons. Although much is known about th...
Biomedical Tissue Engineering, Biomaterials, & Medical Devices Poster SessionNeurons and endocrine c...
Carbon-fiber-microelectrode arrays (MEAs) have been utilized to electrochemically image neurochemica...
Thin-film platinum ultramicroelectrode arrays (MEAs) with subcellular microelectrodes were developed...
Thin-film platinum ultramicroelectrode arrays (MEAs) with subcellular microelectrodes were developed...
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...
We report the fabrication and characterization of microwell-based individually addressable microelec...
We report the application of individually addressable microelectrode arrays (MEAs) to study the hete...
We report the fabrication and characterization of carbon microelectrode arrays (MEAs) and their appl...
We report the lithographic microfabrication of a movable thin film microelectrode array (MEA) probe ...
Ultramicroelectrodes are useful for neurotransmitter release from cells because they can be position...
We report the lithographic microfabrication of a movable thin film microelectrode array (MEA) probe ...
Unraveling the mechanistic details of neurotransmitter exocytosis is arguably among the most importa...
Real-time investigations of neurotransmitter release provide a direct insight on the mechanisms invo...
Neurotransmission is a key process of communication between neurons. Although much is known about th...
Biomedical Tissue Engineering, Biomaterials, & Medical Devices Poster SessionNeurons and endocrine c...
Carbon-fiber-microelectrode arrays (MEAs) have been utilized to electrochemically image neurochemica...
Thin-film platinum ultramicroelectrode arrays (MEAs) with subcellular microelectrodes were developed...
Thin-film platinum ultramicroelectrode arrays (MEAs) with subcellular microelectrodes were developed...
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...
We report the fabrication and characterization of microwell-based individually addressable microelec...
We report the application of individually addressable microelectrode arrays (MEAs) to study the hete...
We report the fabrication and characterization of carbon microelectrode arrays (MEAs) and their appl...
We report the lithographic microfabrication of a movable thin film microelectrode array (MEA) probe ...
Ultramicroelectrodes are useful for neurotransmitter release from cells because they can be position...
We report the lithographic microfabrication of a movable thin film microelectrode array (MEA) probe ...
Unraveling the mechanistic details of neurotransmitter exocytosis is arguably among the most importa...
Real-time investigations of neurotransmitter release provide a direct insight on the mechanisms invo...
Neurotransmission is a key process of communication between neurons. Although much is known about th...
Biomedical Tissue Engineering, Biomaterials, & Medical Devices Poster SessionNeurons and endocrine c...
Carbon-fiber-microelectrode arrays (MEAs) have been utilized to electrochemically image neurochemica...