Keyword search (4,163 papers available)

"integration" Keyword-tagged Publications:

Title Authors PubMed ID
1 NIRSTORM: a Brainstorm extension dedicated to functional near-infrared spectroscopy data analysis, advanced 3D reconstructions, and optimal probe design Delaire É; Vincent T; Cai Z; Machado A; Hugueville L; Schwartz D; Tadel F; Cassani R; Bherer L; Lina JM; Pélégrini-Issac M; Grova C; 40375973
SOH
2 Machine learning innovations in CPR: a comprehensive survey on enhanced resuscitation techniques Islam S; Rjoub G; Elmekki H; Bentahar J; Pedrycz W; Cohen R; 40336660
ENCS
3 Integrating past experiences Leir TMW; Gardner MPH; 40146623
PSYCHOLOGY
4 Human Auditory-Motor Networks Show Frequency-Specific Phase-Based Coupling in Resting-State MEG Bedford O; Noly-Gandon A; Ara A; Wiesman AI; Albouy P; Baillet S; Penhune V; Zatorre RJ; 39757971
PSYCHOLOGY
5 Leveraging Personal Technologies in the Treatment of Schizophrenia Spectrum Disorders: Scoping Review D' Arcey J; Torous J; Asuncion TR; Tackaberry-Giddens L; Zahid A; Ishak M; Foussias G; Kidd S; 39348196
PSYCHOLOGY
6 Changes in social functioning and circulating oxytocin and vasopressin following the migration to a new country Gouin JP; Pournajafi-Nazarloo H; Carter CS; 25446216
PSYCHOLOGY
7 What Comes First, Acculturation or Adjustment? A Longitudinal Investigation of Integration Versus Mental Resources Hypotheses Doucerain MM; Amiot CE; Jurcik T; Ryder AG; 38031873
CONCORDIA
8 Audiovisual integration in children with cochlear implants revealed through EEG and fNIRS Alemi R; Wolfe J; Neumann S; Manning J; Towler W; Koirala N; Gracco VL; Deroche M; 37989460
PSYCHOLOGY
9 Visual biases in evaluation of speakers' and singers' voice type by cis and trans listeners Marchand Knight J; Sares AG; Deroche MLD; 37205083
PSYCHOLOGY
10 Activity and Interconnections of Individual and Collective Actors: An Integrative Approach to Small Group Research Sidorenkov AV; Borokhovski EF; 37041377
CONCORDIA
11 The MyLo CRISPR-Cas9 Toolkit: A Markerless Yeast Localization and Overexpression CRISPR-Cas9 Toolkit Bean BDM; Whiteway M; Martin VJJ; 35708612
BIOLOGY
12 Understanding Associative Learning Through Higher-Order Conditioning Gostolupce D; Lay BPP; Maes EJP; Iordanova MD; 35517574
PSYCHOLOGY
13 Guidance to (Re)integrate Caregivers as Essential Care Partners Into the LTC Setting: A Rapid Review Palubiski LM; Tulsieram KL; Archibald D; Conklin J; Elliott J; Hsu A; Stolee P; Sveistrup H; Kothari A; 35183492
CONCORDIA
14 The trade-off between pulse duration and power in optical excitation of midbrain dopamine neurons approximates Bloch's law Pallikaras V; Carter F; Velazquez-Martinez DN; Arvanitogiannis A; Shizgal P; 34864162
PSYCHOLOGY
15 Spoken Word Segmentation in First and Second Language: When ERP and Behavioral Measures Diverge Gilbert AC; Lee JG; Coulter K; Wolpert MA; Kousaie S; Gracco VL; Klein D; Titone D; Phillips NA; Baum SR; 34603133
PSYCHOLOGY
16 War and reintegration for girls and young women in northern Uganda: A scoping review Savard M; Michaelsen S; 34479000
EDUCATION
17 Effector-independent brain network for auditory-motor integration: fMRI evidence from singing and cello playing Segado M; Zatorre RJ; Penhune VB; 33989814
PSYCHOLOGY
18 Reconsidering Reconciliation Within Families of Youth Who Sexually Offend. Gervais CLM, Johnston MS 33435796
CONCORDIA
19 Pantomime (Not Silent Gesture) in Multimodal Communication: Evidence From Children's Narratives. Marentette P, Furman R, Suvanto ME, Nicoladis E 33329222
PSYCHOLOGY
20 Osseointegration Pharmacology: A Systematic Mapping Using Artificial Intelligence Mahri M; Shen N; Berrizbeitia F; Rodan R; Daer A; Faigan M; Taqi D; Wu KY; Ahmadi M; Ducret M; Emami E; Tamimi F; 33181361
CONCORDIA
21 BENIN: Biologically enhanced network inference. Wonkap SK, Butler G 32698722
ENCS
22 Partially Overlapping Brain Networks for Singing and Cello Playing. Segado M, Hollinger A, Thibodeau J, Penhune V, Zatorre RJ 29892211
PSYCHOLOGY
23 Neural network retuning and neural predictors of learning success associated with cello training Wollman I; Penhune V; Segado M; Carpentier T; Zatorre RJ; 29891670
PSYCHOLOGY
24 Attachment style and changes in systemic inflammation following migration to a new country among international students. Gouin JP, MacNeil S 30406717
PERFORM

 

Title:Partially Overlapping Brain Networks for Singing and Cello Playing.
Authors:Segado MHollinger AThibodeau JPenhune VZatorre RJ
Link:https://www.ncbi.nlm.nih.gov/pubmed/29892211?dopt=Abstract
DOI:10.3389/fnins.2018.00351
Publication:Frontiers in neuroscience
Keywords:auditory-motor integrationauditory-vocal integrationcello playingfMRIlarynx motor representationsinging
PMID:29892211 Category:Front Neurosci Date Added:2019-06-20
Dept Affiliation: PSYCHOLOGY
1 Montreal Neurological Institute, Montreal, QC, Canada.
2 BRAMS International Laboratory for Brain, Music, and Sound Research, Montreal, QC, Canada.
3 Centre for Interdisciplinary Research in Music Media and Technology, Montreal, QC, Canada.
4 Department of Psychology, Concordia University, Montreal, QC, Canada.

Description:

Partially Overlapping Brain Networks for Singing and Cello Playing.

Front Neurosci. 2018;12:351

Authors: Segado M, Hollinger A, Thibodeau J, Penhune V, Zatorre RJ

Abstract

This research uses an MR-Compatible cello to compare functional brain activation during singing and cello playing within the same individuals to determine the extent to which arbitrary auditory-motor associations, like those required to play the cello, co-opt functional brain networks that evolved for singing. Musical instrument playing and singing both require highly specific associations between sounds and movements. Because these are both used to produce musical sounds, it is often assumed in the literature that their neural underpinnings are highly similar. However, singing is an evolutionarily old human trait, and the auditory-motor associations used for singing are also used for speech and non-speech vocalizations. This sets it apart from the arbitrary auditory-motor associations required to play musical instruments. The pitch range of the cello is similar to that of the human voice, but cello playing is completely independent of the vocal apparatus, and can therefore be used to dissociate the auditory-vocal network from that of the auditory-motor network. While in the MR-Scanner, 11 expert cellists listened to and subsequently produced individual tones either by singing or cello playing. All participants were able to sing and play the target tones in tune (<50C deviation from target). We found that brain activity during cello playing directly overlaps with brain activity during singing in many areas within the auditory-vocal network. These include primary motor, dorsal pre-motor, and supplementary motor cortices (M1, dPMC, SMA),the primary and periprimary auditory cortices within the superior temporal gyrus (STG) including Heschl's gyrus, anterior insula (aINS), anterior cingulate cortex (ACC), and intraparietal sulcus (IPS), and Cerebellum but, notably, exclude the periaqueductal gray (PAG) and basal ganglia (Putamen). Second, we found that activity within the overlapping areas is positively correlated with, and therefore likely contributing to, both singing and playing in tune determined with performance measures. Third, we found that activity in auditory areas is functionally connected with activity in dorsal motor and pre-motor areas, and that the connectivity between them is positively correlated with good performance on this task. This functional connectivity suggests that the brain areas are working together to contribute to task performance and not just coincidently active. Last, our findings showed that cello playing may directly co-opt vocal areas (including larynx area of motor cortex), especially if musical training begins before age 7.

PMID: 29892211 [PubMed]





BookR developed by Sriram Narayanan
for the Concordia University School of Health
Copyright © 2011-2026
Cookie settings
Concordia University