Acoustic communication often involves complex sound motifs in which the relative durations of individual elements, but not their absolute durations, convey meaning. Decoding such signals requires an explicit or implicit calculation of the ratios between time intervals. Using grasshopper communication as amodel, we demonstrate how this seemingly difficult computation can be solved in real time by a small set of auditory neurons. One of these cells, an ascending interneuron, generates bursts of action potentials in response to the rhythmic syllable–pause structure of grasshopper calls. Our data show that these bursts are preferentially triggered at syllable onset; the number of spikes within the burst is linearly correlated with the duration ...
Various classes of neurons alternate between high-frequency discharges and silent intervals. This ph...
Various classes of neurons alternate between high-frequency discharges and silent intervals. This ph...
Despite their simple auditory systems, some insect species recognize certain temporal aspects of aco...
Acoustic communication often involves complex sound motifs in which the relative durations of indivi...
Acoustic communication often involves complex sound motifs in which the relative durations of indivi...
Acoustic communication often involves complex sound motifs in which the relative durations of indivi...
Acoustic communication often involves complex sound motifs in which the relative durations of indivi...
Acoustic communication often involves complex sound motifs in which the relative durations of indivi...
Various classes of neurons alternate between high-frequency discharges and silent intervals. This ph...
At the single-neuron level, precisely timed spikes can either constitute firing-rate codes or spike-...
doi:10.1088/1367-2630/10/1/015012 Abstract. Sound patterns are defined by the temporal relations of ...
Various classes of neurons alternate between high-frequency discharges and silent intervals. This ph...
Despite their simple auditory systems, some insect species recognize certain temporal aspects of aco...
Various classes of neurons alternate between high-frequency discharges and silent intervals. This ph...
Various classes of neurons alternate between high-frequency discharges and silent intervals. This ph...
Various classes of neurons alternate between high-frequency discharges and silent intervals. This ph...
Various classes of neurons alternate between high-frequency discharges and silent intervals. This ph...
Despite their simple auditory systems, some insect species recognize certain temporal aspects of aco...
Acoustic communication often involves complex sound motifs in which the relative durations of indivi...
Acoustic communication often involves complex sound motifs in which the relative durations of indivi...
Acoustic communication often involves complex sound motifs in which the relative durations of indivi...
Acoustic communication often involves complex sound motifs in which the relative durations of indivi...
Acoustic communication often involves complex sound motifs in which the relative durations of indivi...
Various classes of neurons alternate between high-frequency discharges and silent intervals. This ph...
At the single-neuron level, precisely timed spikes can either constitute firing-rate codes or spike-...
doi:10.1088/1367-2630/10/1/015012 Abstract. Sound patterns are defined by the temporal relations of ...
Various classes of neurons alternate between high-frequency discharges and silent intervals. This ph...
Despite their simple auditory systems, some insect species recognize certain temporal aspects of aco...
Various classes of neurons alternate between high-frequency discharges and silent intervals. This ph...
Various classes of neurons alternate between high-frequency discharges and silent intervals. This ph...
Various classes of neurons alternate between high-frequency discharges and silent intervals. This ph...
Various classes of neurons alternate between high-frequency discharges and silent intervals. This ph...
Despite their simple auditory systems, some insect species recognize certain temporal aspects of aco...