A well defined set of design criteria is of great importance in the process of designing brain machine interfaces (BMI) based on extracellular recordings with chronically implanted micro-electrode arrays in the central nervous system (CNS). In order to compare algorithms and evaluate their performance under various circumstances, ground truth about their input needs to be present. Obtaining ground truth from real data would require optimal algorithms to be used, given that those exist. This is not possible since it relies on the very algorithms that are to be evaluated. Using realistic models of the recording situation facilitates the simulation of extracellular recordings. The simulation gives access to a priori known signal characteristic...
New silicon-based multielectrodes comprising hundreds or more electrodecontacts offer unprecedented ...
Recording extracellulary from neurons in the brains of animals in vivo is among the most established...
Recording of neural activity with extracellular microelectrode arrays (MEAs) is a powerful technique...
Brain machine interfaces with chronically implanted microelectrode arrays for signal acquisition req...
Spike detection and spike sorting techniques are often difficult to assess because of the lack of gr...
Spike detection and spike sorting techniques are often difficult to assess because of the lack of gr...
This dataset contains synthetic data from simulations (for a total duration of 10 minutes) including...
When recording neural activity from extracellular electrodes, both in vivo and in vitro, spike sorti...
In this paper we present a novel, computationally and memory efficient way of modeling the spatial d...
In this paper we present a novel, computationally and memory efficient way of modeling the spatial d...
International audienceIn order to simulate the spiking activity of in-vitro neuron networks recorded...
International audienceThe analysis of multi-unit extracellular recordings of brain activity has led ...
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 ...
Brain-machine interfaces (BMIs) provide a uni- or bidirectional communication link between the centr...
New silicon-based multielectrodes comprising hundreds or more electrodecontacts offer unprecedented ...
Recording extracellulary from neurons in the brains of animals in vivo is among the most established...
Recording of neural activity with extracellular microelectrode arrays (MEAs) is a powerful technique...
Brain machine interfaces with chronically implanted microelectrode arrays for signal acquisition req...
Spike detection and spike sorting techniques are often difficult to assess because of the lack of gr...
Spike detection and spike sorting techniques are often difficult to assess because of the lack of gr...
This dataset contains synthetic data from simulations (for a total duration of 10 minutes) including...
When recording neural activity from extracellular electrodes, both in vivo and in vitro, spike sorti...
In this paper we present a novel, computationally and memory efficient way of modeling the spatial d...
In this paper we present a novel, computationally and memory efficient way of modeling the spatial d...
International audienceIn order to simulate the spiking activity of in-vitro neuron networks recorded...
International audienceThe analysis of multi-unit extracellular recordings of brain activity has led ...
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 ...
Brain-machine interfaces (BMIs) provide a uni- or bidirectional communication link between the centr...
New silicon-based multielectrodes comprising hundreds or more electrodecontacts offer unprecedented ...
Recording extracellulary from neurons in the brains of animals in vivo is among the most established...
Recording of neural activity with extracellular microelectrode arrays (MEAs) is a powerful technique...