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Temperature Induced Syllable Breaking Unveils Nonlinearly Interacting Timescales in Birdsong Motor Pathway

Goldin, Matías Alejandro et al · Public Library Science · 2013

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The nature of telencephalic control over premotor and motor circuits is debated. Hypotheses range from complete usurping of downstream circuitry to highly interactive mechanisms of control. We show theoretically and experimentally, that telencephalic song motor control in canaries is consistent with a highly interactive strategy. As predicted from a theoretical model of respiratory control, mild cooling of a forebrain nucleus (HVC) led to song stretching, but further cooling caused progressive restructuring of song, consistent with the hypothesis that respiratory gestures are subharmonic responses to a timescale present in the output of HVC. This interaction between a life-sustaining motor function (respiration) and telencephalic song motor control suggests a more general mechanism of how nonlinear integration of evolutionarily new brain structures into existing circuitry gives rise to diverse, new behavior. Fil: Goldin, Matías Alejandro. Universidad de Buenos Aires. Facultad de Cs.exactas y Naturales. Departamento de Fisica. Laboratorio de Sistemas Dinamicos; Fil: Alonso, Leandro Martín. Universidad de Buenos Aires. Facultad de Cs.exactas y Naturales. Departamento de Fisica. Laboratorio de Sistemas Dinamicos;

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APA 7

Goldin, M. A. E. A. (2013). Temperature Induced Syllable Breaking Unveils Nonlinearly Interacting Timescales in Birdsong Motor Pathway. http://hdl.handle.net/11336/575

MLA

Goldin, Matías Alejandro et al. "Temperature Induced Syllable Breaking Unveils Nonlinearly Interacting Timescales in Birdsong Motor Pathway." 2013. http://hdl.handle.net/11336/575.

Chicago

Goldin, Matías Alejandro et al. 2013. "Temperature Induced Syllable Breaking Unveils Nonlinearly Interacting Timescales in Birdsong Motor Pathway.". http://hdl.handle.net/11336/575.

Harvard

Goldin, M. A. E. A. 2013, Temperature Induced Syllable Breaking Unveils Nonlinearly Interacting Timescales in Birdsong Motor Pathway, Public Library Science, available at: http://hdl.handle.net/11336/575 [Accessed 9 Aug. 2026].

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Title
Temperature Induced Syllable Breaking Unveils Nonlinearly Interacting Timescales in Birdsong Motor Pathway
Author / contributors
Goldin, Matías Alejandro et al
Publisher
Public Library Science
Publication year
2013
ISSN
1932-6203
ISSN
1932-6203
Language
English

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