In this paper we present a novel, computationally and memory efficient way of modeling the spatial dependency of measured spike waveforms in extracellular recordings of neuronal activity. We use compartment models to simulate action potentials in neurons and then apply linear source approximation to calculate the resulting extracellular spike waveform on a three dimensional grid of measurement points surrounding the neurons. We then apply traditional compression techniques and polynomial fitting to obtain a compact mathematical description of the spatial dependency of the spike waveform. We show how the compressed models can be used to efficiently calculate the spike waveform from a neuron in a large set of measurement points simultaneously...
Extracellular recordings are a key tool to study the activity of neurons in vivo. Especially in the ...
Excitable cells, such as neurons, produce action potentials (APs) that in extracel- lular recordings...
Excitable cells, such as neurons, produce action potentials (APs) that in extracel- lular recordings...
In this paper we present a novel, computationally and memory efficient way of modeling the spatial d...
International audienceSimulating extracellular recordings of neuronal populations is an important an...
Extracellular recordings are a key tool to study the activity of neurons in vivo. Especially in the ...
Extracellular recordings are a key tool to study the activity of neurons in vivo. Especially in the ...
With the advent of high-density multi-electrode arrays we are now able to measure the activity of h...
A well defined set of design criteria is of great importance in the process of designing brain machi...
Extracellular recordings are a key tool to study the activity of neurons in vivo. Especially in the ...
Extracellular recordings are a key tool to study the activity of neurons in vivo. Especially in the ...
This dissertation describes a novel mathematical algorithm for extracting spike data and positional ...
Brain machine interfaces with chronically implanted microelectrode arrays for signal acquisition req...
Multi-electrode arrays (MEAs) non-invasively record extracellular action potentials (eAPs, also know...
Extracellular recordings are a key tool to study the activity of neurons in vivo. Especially in the ...
Extracellular recordings are a key tool to study the activity of neurons in vivo. Especially in the ...
Excitable cells, such as neurons, produce action potentials (APs) that in extracel- lular recordings...
Excitable cells, such as neurons, produce action potentials (APs) that in extracel- lular recordings...
In this paper we present a novel, computationally and memory efficient way of modeling the spatial d...
International audienceSimulating extracellular recordings of neuronal populations is an important an...
Extracellular recordings are a key tool to study the activity of neurons in vivo. Especially in the ...
Extracellular recordings are a key tool to study the activity of neurons in vivo. Especially in the ...
With the advent of high-density multi-electrode arrays we are now able to measure the activity of h...
A well defined set of design criteria is of great importance in the process of designing brain machi...
Extracellular recordings are a key tool to study the activity of neurons in vivo. Especially in the ...
Extracellular recordings are a key tool to study the activity of neurons in vivo. Especially in the ...
This dissertation describes a novel mathematical algorithm for extracting spike data and positional ...
Brain machine interfaces with chronically implanted microelectrode arrays for signal acquisition req...
Multi-electrode arrays (MEAs) non-invasively record extracellular action potentials (eAPs, also know...
Extracellular recordings are a key tool to study the activity of neurons in vivo. Especially in the ...
Extracellular recordings are a key tool to study the activity of neurons in vivo. Especially in the ...
Excitable cells, such as neurons, produce action potentials (APs) that in extracel- lular recordings...
Excitable cells, such as neurons, produce action potentials (APs) that in extracel- lular recordings...