Understanding the mechanisms of learning requires characterizing how the response properties of individual neurons and interactions across populations of neurons change over time. To study learning in vivo, we need the ability to track an electrophysiological signature that uniquely identifies each recorded neuron for extended periods of time. We have identified such an extracellular signature using a statistical framework that allows quantification of the accuracy by which stable neurons can be identified across successive recording sessions. Our statistical framework uses spike waveform information recorded on a tetrode's four channels to define a measure of similarity between neurons recorded across time. We use this framework to quantit...
Addressing how neural circuits underlie behavior is routinely done by measuring electrical activity ...
When a cortical neuron is repeatedly injected with the same fluctuating current stimulus (frozen noi...
The computational processes deployed by the brain to represent, process and transmit information are...
Understanding the mechanisms of learning requires characterizing how the response properties of indi...
Understanding the mechanisms of learning requires characterizing how the response properties of indi...
Understanding the mechanisms of learning requires characterizing how the response properties of indi...
Understanding the mechanisms of learning requires characterizing how the response properties of indi...
Understanding the mechanisms of learning and memory consolidation requires characterizing how the re...
Recording extracellulary from neurons in the brains of animals in vivo is among the most established...
The use of chronic intracortical multielectrode arrays has become increasingly prevalent in neurophy...
<div><p>Recording extracellulary from neurons in the brains of animals in vivo is among the most est...
To date, the neuronal mechanisms of brain processes have been primarily studied by analyzing the act...
To date, the neuronal mechanisms of brain processes have been primarily studied by analyzing the act...
Accurate tracking of the same neurons across multiple days is crucial for studying changes in neuron...
Electrophysiology is an important technique using chronically-implanted electrode arrays, which allo...
Addressing how neural circuits underlie behavior is routinely done by measuring electrical activity ...
When a cortical neuron is repeatedly injected with the same fluctuating current stimulus (frozen noi...
The computational processes deployed by the brain to represent, process and transmit information are...
Understanding the mechanisms of learning requires characterizing how the response properties of indi...
Understanding the mechanisms of learning requires characterizing how the response properties of indi...
Understanding the mechanisms of learning requires characterizing how the response properties of indi...
Understanding the mechanisms of learning requires characterizing how the response properties of indi...
Understanding the mechanisms of learning and memory consolidation requires characterizing how the re...
Recording extracellulary from neurons in the brains of animals in vivo is among the most established...
The use of chronic intracortical multielectrode arrays has become increasingly prevalent in neurophy...
<div><p>Recording extracellulary from neurons in the brains of animals in vivo is among the most est...
To date, the neuronal mechanisms of brain processes have been primarily studied by analyzing the act...
To date, the neuronal mechanisms of brain processes have been primarily studied by analyzing the act...
Accurate tracking of the same neurons across multiple days is crucial for studying changes in neuron...
Electrophysiology is an important technique using chronically-implanted electrode arrays, which allo...
Addressing how neural circuits underlie behavior is routinely done by measuring electrical activity ...
When a cortical neuron is repeatedly injected with the same fluctuating current stimulus (frozen noi...
The computational processes deployed by the brain to represent, process and transmit information are...