An Overrepresentation of High Frequencies in the Mouse Inferior Colliculus Supports the Processing of Ultrasonic Vocalizations

Mice are of paramount importance in biomedical research and their vocalizations are a subject of interest for researchers across a wide range of health-related disciplines due to their increasingly important value as a phenotyping tool in models of neural, speech and language disorders. However, the...

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Published inPloS one Vol. 10; no. 8; p. e0133251
Main Authors Garcia-Lazaro, Jose A., Shepard, Kathryn N., Miranda, Jason A., Liu, Robert C., Lesica, Nicholas A.
Format Journal Article
LanguageEnglish
Published United States Public Library of Science 05.08.2015
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Abstract Mice are of paramount importance in biomedical research and their vocalizations are a subject of interest for researchers across a wide range of health-related disciplines due to their increasingly important value as a phenotyping tool in models of neural, speech and language disorders. However, the mechanisms underlying the auditory processing of vocalizations in mice are not well understood. The mouse audiogram shows a peak in sensitivity at frequencies between 15-25 kHz, but weaker sensitivity for the higher ultrasonic frequencies at which they typically vocalize. To investigate the auditory processing of vocalizations in mice, we measured evoked potential, single-unit, and multi-unit responses to tones and vocalizations at three different stages along the auditory pathway: the auditory nerve and the cochlear nucleus in the periphery, and the inferior colliculus in the midbrain. Auditory brainstem response measurements suggested stronger responses in the midbrain relative to the periphery for frequencies higher than 32 kHz. This result was confirmed by single- and multi-unit recordings showing that high ultrasonic frequency tones and vocalizations elicited responses from only a small fraction of cells in the periphery, while a much larger fraction of cells responded in the inferior colliculus. These results suggest that the processing of communication calls in mice is supported by a specialization of the auditory system for high frequencies that emerges at central stations of the auditory pathway.
AbstractList Mice are of paramount importance in biomedical research and their vocalizations are a subject of interest for researchers across a wide range of health-related disciplines due to their increasingly important value as a phenotyping tool in models of neural, speech and language disorders. However, the mechanisms underlying the auditory processing of vocalizations in mice are not well understood. The mouse audiogram shows a peak in sensitivity at frequencies between 15-25 kHz, but weaker sensitivity for the higher ultrasonic frequencies at which they typically vocalize. To investigate the auditory processing of vocalizations in mice, we measured evoked potential, single-unit, and multi-unit responses to tones and vocalizations at three different stages along the auditory pathway: the auditory nerve and the cochlear nucleus in the periphery, and the inferior colliculus in the midbrain. Auditory brainstem response measurements suggested stronger responses in the midbrain relative to the periphery for frequencies higher than 32 kHz. This result was confirmed by single- and multi-unit recordings showing that high ultrasonic frequency tones and vocalizations elicited responses from only a small fraction of cells in the periphery, while a much larger fraction of cells responded in the inferior colliculus. These results suggest that the processing of communication calls in mice is supported by a specialization of the auditory system for high frequencies that emerges at central stations of the auditory pathway.
Audience Academic
Author Lesica, Nicholas A.
Garcia-Lazaro, Jose A.
Shepard, Kathryn N.
Liu, Robert C.
Miranda, Jason A.
AuthorAffiliation Utrecht University, NETHERLANDS
2 Department of Biology, Emory University, 1510 Clifton Road, Atlanta, Georgia, 30322, United States of America
1 Ear Institute, University College London, 332 Grays Inn Road, London, WC1X 8EE, United Kingdom
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– name: 2 Department of Biology, Emory University, 1510 Clifton Road, Atlanta, Georgia, 30322, United States of America
– name: 1 Ear Institute, University College London, 332 Grays Inn Road, London, WC1X 8EE, United Kingdom
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BackLink https://www.ncbi.nlm.nih.gov/pubmed/26244986$$D View this record in MEDLINE/PubMed
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Competing Interests: The authors have declared that no competing interests exist.
Conceived and designed the experiments: JAGL NAL RCL. Performed the experiments: JAGL NAL KNS JAM. Analyzed the data: JAGL NAL. Wrote the paper: JAGL NAL RCL.
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15680687 - Neuroscience. 2005;131(1):1-11
14714820 - J Acoust Soc Am. 2003 Dec;114(6 Pt 1):3412-22
511644 - J Am Aud Soc. 1979 Mar-Apr;4(5):173-8
6685321 - Physiol Behav. 1983 Jul;31(1):91-6
17596418 - J Neurophysiol. 2007 Sep;98(3):1806-9
19515648 - Biol Lett. 2009 Oct 23;5(5):589-92
8974996 - Hear Res. 1995 Oct;90(1-2):185-91
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22764225 - J Neurosci. 2012 Jul 4;32(27):9159-72
22984567 - PLoS One. 2012;7(9):e44816
23726970 - Hear Res. 2013 Nov;305:45-56
15697193 - Contemp Top Lab Anim Sci. 2005 Jan;44(1):17-22
4044904 - J Comp Neurol. 1985 Aug 1;238(1):65-76
23874516 - PLoS One. 2013;8(7):e68113
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3837108 - J Comp Physiol A. 1985 Nov;157(5):687-97
20534473 - Proc Natl Acad Sci U S A. 2010 Jun 15;107(24):11074-9
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9840503 - Acta Otolaryngol. 1998 Sep;118(5):673-80
23047723 - J Comp Neurol. 2013 May 1;521(7):1510-32
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8441017 - J Neurosci. 1993 Mar;13(3):931-40
20579107 - Genes Brain Behav. 2011 Feb;10(1):17-27
3681389 - J Neurophysiol. 1987 Oct;58(4):643-54
9823479 - Cereb Cortex. 1998 Oct-Nov;8(7):575-92
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SSID ssj0053866
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Snippet Mice are of paramount importance in biomedical research and their vocalizations are a subject of interest for researchers across a wide range of health-related...
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doaj
pubmedcentral
proquest
gale
pubmed
crossref
SourceType Open Website
Open Access Repository
Aggregation Database
Index Database
Enrichment Source
StartPage e0133251
SubjectTerms Anesthesia
Animal models
Animal vocalizations
Animals
Audiometry
Auditory nerve
Auditory pathway
Auditory Pathways - physiology
Auditory Perception - physiology
Auditory system
Biology
Brain stem
Cochlea
Cochlear Nerve - physiology
Cochlear nuclei
Cochlear Nucleus - physiology
Colliculus
Communication
Evoked Potentials, Auditory, Brain Stem - physiology
High frequencies
Inferior Colliculi - physiology
Inferior colliculus
Information processing
Mesencephalon
Mice
Neurology
Neurosciences
Phenotyping
Sensitivity
Specialization
Ultrasonic Waves
Vocalization behavior
Vocalization, Animal - physiology
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Title An Overrepresentation of High Frequencies in the Mouse Inferior Colliculus Supports the Processing of Ultrasonic Vocalizations
URI https://www.ncbi.nlm.nih.gov/pubmed/26244986
https://www.proquest.com/docview/1701897722
https://www.proquest.com/docview/1702651575
https://pubmed.ncbi.nlm.nih.gov/PMC4526676
https://doaj.org/article/dd895be427164658b35d3ea0d793bc0c
http://dx.doi.org/10.1371/journal.pone.0133251
Volume 10
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