Inferring spike-timing-dependent plasticity from spike train data
Stevenson, Ian, Koerding, Konrad
–Neural Information Processing Systems
Synaptic plasticity underlies learning and is thus central for development, memory, and recovery from injury. However, it is often difficult to detect changes in synaptic strength in vivo, since intracellular recordings are experimentally challenging. Here we present two methods aimed at inferring changes in the coupling between pairs of neurons from extracellularly recorded spike trains. First, using a generalized bilinear model with Poisson output we estimate time-varying coupling assuming that all changes are spike-timing-dependent. This approach allows model-based estimation of STDP modification functions from pairs of spike trains.
Neural Information Processing Systems
Feb-15-2020, 00:11:01 GMT
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