Temporal integration at consecutive processing stages in the auditory pathway of the grasshopper

Author:

Wirtssohn Sarah12,Ronacher Bernhard12

Affiliation:

1. Behavioural Physiology Group, Department of Biology, Humboldt-Universität zu Berlin, Berlin, Germany; and

2. Bernstein Center for Computational Neuroscience Berlin, Berlin, Germany

Abstract

Temporal integration in the auditory system of locusts was quantified by presenting single clicks and click pairs while performing intracellular recordings. Auditory neurons were studied at three processing stages, which form a feed-forward network in the metathoracic ganglion. Receptor neurons and most first-order interneurons (“local neurons”) encode the signal envelope, while second-order interneurons (“ascending neurons”) tend to extract more complex, behaviorally relevant sound features. In different neuron types of the auditory pathway we found three response types: no significant temporal integration (some ascending neurons), leaky energy integration (receptor neurons and some local neurons), and facilitatory processes (some local and ascending neurons). The receptor neurons integrated input over very short time windows (<2 ms). Temporal integration on longer time scales was found at subsequent processing stages, indicative of within-neuron computations and network activity. These different strategies, realized at separate processing stages and in parallel neuronal pathways within one processing stage, could enable the grasshopper's auditory system to evaluate longer time windows and thus to implement temporal filters, while at the same time maintaining a high temporal resolution.

Funder

Gouvernement du Canada | Canadian Institutes of Health Research (Instituts de recherche en santé du Canada)

National Sciences and Engineering Research Council of Canada

Publisher

American Physiological Society

Subject

Physiology,General Neuroscience

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