Spike-timing variability has a large effect on neural information processing. However, for many systems little is known about the noise sources causing the spike-response variability. Here we investigate potential sources of spike-response variability in auditory receptor neurons of locusts, a classic insect model system. At low-spike frequencies, our data show negative interspike-interval (ISI) correlations and ISI distributions thatmatch the inverse Gaussian distribution. These findings can be explained by awhite-noise source that interacts with an adaptation current. At higher spike frequencies, more strongly peaked distributions and positive ISI correlations appear, as expected from a canonical model of suprathreshold firing driven by t...
Spike generation in neurons produces a temporal point process, whose statistics is governed by intri...
Spike-frequency adaptation affects the response characteristics of many sensory neurons, and differe...
Spike-frequency adaptation affects the response characteristics of many sensory neurons, and differe...
Spike-timing variability has a large effect on neural information processing. However, for many syst...
Spike-timing variability has a large effect on neural information processing. However, for many syst...
Spike-timing variability has a large effect on neural information processing. However, for many syst...
Spike-timing variability has a large effect on neural information processing. However, for many syst...
Spike-timing variability has a large effect on neural information processing. However, for many syst...
Channel noise is the dominant intrinsic noise source of neurons causing variability in the timing of...
Channel noise is the dominant intrinsic noise source of neurons causing variability in the timing of...
Channel noise is the dominant intrinsic noise source of neurons causing variability in the timing of...
Channel noise is the dominant intrinsic noise source of neurons causing variability in the timing of...
Channel noise is the dominant intrinsic noise source of neurons causing variability in the timing of...
Channel noise is the dominant intrinsic noise source of neurons causing variability in the timing of...
Spike-frequency adaptation affects the response characteristics of many sensory neurons, and differe...
Spike generation in neurons produces a temporal point process, whose statistics is governed by intri...
Spike-frequency adaptation affects the response characteristics of many sensory neurons, and differe...
Spike-frequency adaptation affects the response characteristics of many sensory neurons, and differe...
Spike-timing variability has a large effect on neural information processing. However, for many syst...
Spike-timing variability has a large effect on neural information processing. However, for many syst...
Spike-timing variability has a large effect on neural information processing. However, for many syst...
Spike-timing variability has a large effect on neural information processing. However, for many syst...
Spike-timing variability has a large effect on neural information processing. However, for many syst...
Channel noise is the dominant intrinsic noise source of neurons causing variability in the timing of...
Channel noise is the dominant intrinsic noise source of neurons causing variability in the timing of...
Channel noise is the dominant intrinsic noise source of neurons causing variability in the timing of...
Channel noise is the dominant intrinsic noise source of neurons causing variability in the timing of...
Channel noise is the dominant intrinsic noise source of neurons causing variability in the timing of...
Channel noise is the dominant intrinsic noise source of neurons causing variability in the timing of...
Spike-frequency adaptation affects the response characteristics of many sensory neurons, and differe...
Spike generation in neurons produces a temporal point process, whose statistics is governed by intri...
Spike-frequency adaptation affects the response characteristics of many sensory neurons, and differe...
Spike-frequency adaptation affects the response characteristics of many sensory neurons, and differe...