Back to results
Bibliographic record · Consultation and access
Artículo

Local field potentials in a pre-motor region predict learned vocal sequences

Brown, Daril E. et al · Plos · 2021

Supplementary material available
Quick overview. Review the resource’s basic details, then access the content using the main button. This page shows only the information needed to identify, cite, and open the work.

Resource access

Open the content from the main option or choose another available source.

CONICET Digital CONICET Digital OAI-PMH
Entrar por CONICET Digital
Main access

Supplementary material available

El enlace apunta a material asociado, anexos, tablas, datos o página complementaria. No se marca como libro/texto completo.
Open material

Summary

Descripción general del contenido del recurso.

Neuronal activity within the premotor region HVC is tightly synchronized to, and crucial for, the articulate production of learned song in birds. Characterizations of this neural activity detail patterns of sequential bursting in small, carefully identified subsets of neurons in the HVC population. The dynamics of HVC are well described by these characterizations, but have not been verified beyond this scale of measurement. There is a rich history of using local field potentials (LFP) to extract information about behavior that extends beyond the contribution of individual cells. These signals have the advantage of being stable over longer periods of time, and they have been used to study and decode human speech and other complex motor behaviors. Here we characterize LFP signals presumptively from the HVC of freely behaving male zebra finches during song production to determine if population activity may yield similar insights into the mechanisms underlying complex motor-vocal behavior. Following an initial observation that structured changes in the LFP were distinct to all vocalizations during song, we show that it is possible to extract time-varying features from multiple frequency bands to decode the identity of specific vocalization elements (syllables) and to predict their temporal onsets within the motif. This demonstrates the utility of LFP for studying vocal behavior in songbirds. Surprisingly, the time frequency structure of HVC LFP is qualitatively similar to well-established oscillations found in both human and non-human mammalian motor areas. This physiological similarity, despite distinct anatomical structures, may give insight into common computational principles for learning and/or generating complex motor-vocal behaviors. Fil: Brown, Daril E.. University of California at San Diego; Estados Unidos Fil: Chavez, Jairo I.. University of California at San Diego; Estados Unidos

How to cite

Elegí el formato que necesitás y copiá la referencia al portapapeles.

APA 7

Brown, D. E. E. A. (2021). Local field potentials in a pre-motor region predict learned vocal sequences. http://hdl.handle.net/11336/174758

MLA

Brown, Daril E. et al. "Local field potentials in a pre-motor region predict learned vocal sequences." 2021. http://hdl.handle.net/11336/174758.

Chicago

Brown, Daril E. et al. 2021. "Local field potentials in a pre-motor region predict learned vocal sequences.". http://hdl.handle.net/11336/174758.

Harvard

Brown, D. E. E. A. 2021, Local field potentials in a pre-motor region predict learned vocal sequences, Plos, available at: http://hdl.handle.net/11336/174758 [Accessed 8 Aug. 2026].

Share and print

Save the record, copy its permanent link, or print it as a PDF.

Export reference

You can export the record in common formats for use in a reference manager.

Resource details

Bibliographic information to help confirm that this is the correct material.

Title
Local field potentials in a pre-motor region predict learned vocal sequences
Author / contributors
Brown, Daril E. et al
Publisher
Plos
Publication year
2021
ISSN
1553-7358
ISSN
1553-7358
Language
English

Subjects

Explore related resources through these subjects.

Copied