We have developed a closed-loop, high-throughput system that applies electrical stimulation and optical recording to facilitate the rapid characterization of extracellular, stimulus-evoked neuronal activity. In our system, a microelectrode array delivers current pulses to a dissociated neuronal culture treated with a calcium-sensitive fluorescent dye; automated real-time image processing of high-speed digital video identifies the neuronal response; and an optimized search routine alters the applied stimulus to achieve a targeted response. Action potentials are detected by measuring the post-stimulus, calcium-sensitive fluorescence at the neuronal somata. The system controller performs directed searches within the strength–duration (SD) stim...
Modern multielectrode array (MEA) systems can record the neuronal activity from thousands of electro...
Experimental neuroscience is witnessing an increased interest in the development and application of ...
Multi-electrode arrays (MEAs) non-invasively record extracellular action potentials (eAPs, also know...
We have developed a high-throughput system of closed-loop electrical stimulation and optical recordi...
Complex operations performed by neuronal networks arise from the orchestrated activities of individu...
A detailed, high-spatiotemporal-resolution characterization of neuronal responses to local electrica...
OBJECTIVE: Closed-loop operation of neuro-electronic systems is desirable for both scientific and cl...
Research on information processing in neuronal networks may lead to a better understanding of many b...
Closed-loop brain computer interfaces are rapidly progressing due to their applications in fundament...
Electrical stimulation is ubiquitous as a method for activating neuronal tissue, but there is still ...
Large circuits of neurons are employed by the brain to encode and process information. How this enco...
<div><p>Fluorescent protein-based sensors for detecting neuronal activity have been developed largel...
Biological neuronal cells communicate using neurochemistry and electrical signals. The same phenomen...
Differential activation of neuronal populations can improve the efficacy of clinical devices such as...
Thesis: Ph. D., Massachusetts Institute of Technology, School of Architecture and Planning, Program ...
Modern multielectrode array (MEA) systems can record the neuronal activity from thousands of electro...
Experimental neuroscience is witnessing an increased interest in the development and application of ...
Multi-electrode arrays (MEAs) non-invasively record extracellular action potentials (eAPs, also know...
We have developed a high-throughput system of closed-loop electrical stimulation and optical recordi...
Complex operations performed by neuronal networks arise from the orchestrated activities of individu...
A detailed, high-spatiotemporal-resolution characterization of neuronal responses to local electrica...
OBJECTIVE: Closed-loop operation of neuro-electronic systems is desirable for both scientific and cl...
Research on information processing in neuronal networks may lead to a better understanding of many b...
Closed-loop brain computer interfaces are rapidly progressing due to their applications in fundament...
Electrical stimulation is ubiquitous as a method for activating neuronal tissue, but there is still ...
Large circuits of neurons are employed by the brain to encode and process information. How this enco...
<div><p>Fluorescent protein-based sensors for detecting neuronal activity have been developed largel...
Biological neuronal cells communicate using neurochemistry and electrical signals. The same phenomen...
Differential activation of neuronal populations can improve the efficacy of clinical devices such as...
Thesis: Ph. D., Massachusetts Institute of Technology, School of Architecture and Planning, Program ...
Modern multielectrode array (MEA) systems can record the neuronal activity from thousands of electro...
Experimental neuroscience is witnessing an increased interest in the development and application of ...
Multi-electrode arrays (MEAs) non-invasively record extracellular action potentials (eAPs, also know...