Related Experiment Video
Updated: Mar 9, 2026

Concurrent Recording of Co-localized Electroencephalography and Local Field Potential in Rodent
Published on: November 30, 2017
Arrestant Effect of Human Scalp Components on Head Louse (Phthiraptera: Pediculidae) Behavior
Isabel Ortega-Insaurralde1, Ariel Ceferino Toloza1, Paola Gonzalez-Audino1
1Centro de investigaciones de plagas e insecticidas (CITEDEF-CONICET), Juan Bautista de Lasalle 4397 (B1603ALO), Villa Martelli, Buenos Aires, Argentina (iortega@citedef.gob.ar; atoloza@conicet.gov.ar; pgonzalezaudino@citedef.gob.ar; mpicollo@gmail.com).
Abstract:
Relevant evidence has shown that parasites process host-related information using chemical, visual, tactile, or auditory cues. However, the cues that are involved in the host-parasite interaction between Pediculus humanus capitis (De Geer 1767) and humans have not been identified yet. In this work, we studied the effect of human scalp components on the behavior of adult head lice. Filter paper segments were rubbed on volunteers' scalps and then placed in the experimental arena, where adult head lice were individually tested. The movement of the insects was recorded for each arena using the software EthoVision. Average movement parameters were calculated for the treatments in the bioassays such as total distance, velocity, number of times a head louse crossed between zones of the arena, and time in each zone of the arena. We found that scalp components induced head lice to decrease average locomotor activity and to remain arrested on the treated paper. The effect of the ageing of human scalp samples in the response of head lice was not statistically significant (i.e., human scalp samples of 4, 18, 40, and 60 h of ageing did not elicit a significant change in head louse behavior). When we analyzed the effect of the sex in the response of head lice to human scalp samples, males demonstrated significant differences. Our results showed for the first time the effect of host components conditioning head lice behavior. We discuss the role of these components in the dynamic of head lice infestation.
More Related Videos
06:45Electrophysiological Recording of The Central Nervous System Activity of Third-Instar Drosophila Melanogaster
Published on: November 21, 2018
13:04Combined Recording of Mechanically Stimulated Afferent Output and Nerve Terminal Labelling in Mouse Hair Follicle Lanceolate Endings
Published on: May 7, 2016