The role of hyoid muscles in biotremor production in Chamaeleo calyptratus

The production of biotremors has been described in veiled chameleons ( ), but the mechanism by which they are produced is unknown. We gathered muscle activation data via electromyography (EMG), with simultaneous recordings of biotremors using an accelerometer, to test for the role of hyoid muscles i...

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Published inJournal of experimental biology Vol. 223; no. Pt 22
Main Authors Tegge, Samuel M, Anderson, Christopher V, Smith, Michael E, Huskey, Steve
Format Journal Article
LanguageEnglish
Published England 18.11.2020
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Abstract The production of biotremors has been described in veiled chameleons ( ), but the mechanism by which they are produced is unknown. We gathered muscle activation data via electromyography (EMG), with simultaneous recordings of biotremors using an accelerometer, to test for the role of hyoid muscles in biotremor production. We recorded a mean biotremor frequency of 150.87 Hz for females and 136.01 Hz for males. The durations of activity and the latencies to onset and offset for the M. sternohyoideus profundus (SP), M. sternohyoideus superficialis (SS), Mm. mandibulohyoideus (MH) and M. levator scapulae (LS) were all significantly correlated with biotremor durations and biotremor onset and offset, respectively. Linear mixed-effect regression model comparisons of biotremor duration indicated that models containing either the MH and/or the SP and LS account for the most variation in biotremor duration. Twitch times for the SP (100 ms) and the SS (132 ms) at field active body temperature, however, were individually too slow to produce the biotremors at the observed frequency without alteration after production by other anatomical structures. These results implicate the SP, SS, MH and LS in the production of biotremors, but the exact mechanism of production requires further study.
AbstractList The production of biotremors has been described in veiled chameleons ( ), but the mechanism by which they are produced is unknown. We gathered muscle activation data via electromyography (EMG), with simultaneous recordings of biotremors using an accelerometer, to test for the role of hyoid muscles in biotremor production. We recorded a mean biotremor frequency of 150.87 Hz for females and 136.01 Hz for males. The durations of activity and the latencies to onset and offset for the M. sternohyoideus profundus (SP), M. sternohyoideus superficialis (SS), Mm. mandibulohyoideus (MH) and M. levator scapulae (LS) were all significantly correlated with biotremor durations and biotremor onset and offset, respectively. Linear mixed-effect regression model comparisons of biotremor duration indicated that models containing either the MH and/or the SP and LS account for the most variation in biotremor duration. Twitch times for the SP (100 ms) and the SS (132 ms) at field active body temperature, however, were individually too slow to produce the biotremors at the observed frequency without alteration after production by other anatomical structures. These results implicate the SP, SS, MH and LS in the production of biotremors, but the exact mechanism of production requires further study.
The production of biotremors has been described in veiled chameleons (Chamaeleo calyptratus), but the mechanism by which they are produced is unknown. We gathered muscle activation data via electromyography (EMG) with simultaneous recordings of biotremors using an accelerometer to test for the role of hyoid muscles in their production. We recorded mean biotremor frequency of 150.87 Hz for females and 136.01 Hz for males. The durations of activity and the latencies to onset and offset for the M. sternohyoideus profundus (SP), M. sternohyoideus superficialis (SS), Mm. mandibulohyoideus (MH), and Mm. levator scapulae (LS) were all significantly correlated with biotremor durations and biotremor onset and offset, respectively. Linear mixed-effect regression model comparisons of biotremor duration indicate that models containing either MH and/or SP and LS account or the most variation in the biotremor duration. Twitch times for the SP (100 ms) and the SS (132 ms) at field active body temperature, however, were individually too slow to produce the biotremors at the observed frequency without alteration after production by other anatomical structures. These results implicate the SP, SS, MH, and LS in the production of the biotremor, but the exact mechanism of production requires further study.
Author Smith, Michael E
Anderson, Christopher V
Huskey, Steve
Tegge, Samuel M
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Issue Pt 22
Keywords Biotremology
Biotremor
Vibration
Muscle physiology
Chameleons
Communication
Language English
License 2020. Published by The Company of Biologists Ltd.
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Snippet The production of biotremors has been described in veiled chameleons ( ), but the mechanism by which they are produced is unknown. We gathered muscle...
The production of biotremors has been described in veiled chameleons (Chamaeleo calyptratus), but the mechanism by which they are produced is unknown. We...
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Title The role of hyoid muscles in biotremor production in Chamaeleo calyptratus
URI https://www.ncbi.nlm.nih.gov/pubmed/33071217
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