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Updated: Aug 9, 2025

Quantification of Drosophila Grooming Behavior
Published on: July 19, 2017
Somatotopic organization among parallel sensory pathways that promote a grooming sequence in Drosophila
Katharina Eichler1,2, Stefanie Hampel1,2, Adrián Alejandro-García1,2
1Institute of Neurobiology, University of Puerto Rico-Medical Sciences Campus, San Juan, Puerto Rico.
Abstract:
Mechanosensory neurons located across the body surface respond to tactile stimuli and elicit diverse behavioral responses, from relatively simple stimulus location-aimed movements to complex movement sequences. How mechanosensory neurons and their postsynaptic circuits influence such diverse behaviors remains unclear. We previously discovered that Drosophila perform a body location-prioritized grooming sequence when mechanosensory neurons at different locations on the head and body are simultaneously stimulated by dust (Hampel et al., 2017; Seeds et al., 2014). Here, we identify nearly all mechanosensory neurons on the Drosophila head that individually elicit aimed grooming of specific head locations, while collectively eliciting a whole head grooming sequence. Different tracing methods were used to reconstruct the projections of these neurons from different locations on the head to their distinct arborizations in the brain. This provides the first synaptic resolution somatotopic map of a head, and defines the parallel-projecting mechanosensory pathways that elicit head grooming.
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