Keyword search (4,163 papers available)

"Penhune VB" Authored Publications:

Title Authors PubMed ID
1 Tuned to walk: cue type, beat perception, and gait dynamics during rhythmic stimulation in aging Parker A; Dalla Bella S; Penhune VB; Young L; Grenet D; Li KZH; 41661338
PSYCHOLOGY
2 Patterns of Cerebellar-Cortical Structural Covariance Mirror Anatomical Connectivity of Sensorimotor and Cognitive Networks Alasmar Z; Chakravarty MM; Penhune VB; Steele CJ; 39791308
SOH
3 The pleasurable urge to move to music is unchanged in people with musical anhedonia Romkey ID; Matthews T; Foster N; Dalla Bella S; Penhune VB; 39774498
PSYCHOLOGY
4 Music reward sensitivity is associated with greater information transfer capacity within dorsal and motor white matter networks in musicians Matthews TE; Lumaca M; Witek MAG; Penhune VB; Vuust P; 39052097
PSYCHOLOGY
5 Context changes judgments of liking and predictability for melodies Albury AW; Bianco R; Gold BP; Penhune VB; 38034280
PSYCHOLOGY
6 Using cortico-cerebellar structural patterns to classify early- and late-trained musicians Shenker JJ; Steele CJ; Zatorre RJ; Penhune VB; 37326147
PSYCHOLOGY
7 Early musical training shapes cortico-cerebellar structural covariation Shenker JJ; Steele CJ; Chakravarty MM; Zatorre RJ; Penhune VB; 34657166
PSYCHOLOGY
8 Effector-independent brain network for auditory-motor integration: fMRI evidence from singing and cello playing Segado M; Zatorre RJ; Penhune VB; 33989814
PSYCHOLOGY
9 The sensation of groove engages motor and reward networks. Matthews TE, Witek MAG, Lund T, Vuust P, Penhune VB 32217163
PSYCHOLOGY
10 Music predictability and liking enhance pupil dilation and promote motor learning in non-musicians. Bianco R, Gold BP, Johnson AP, Penhune VB 31745159
PSYCHOLOGY
11 The descending motor tracts are different in dancers and musicians. Giacosa C, Karpati FJ, Foster NEV, Hyde KL, Penhune VB 31620887
PSYCHOLOGY
12 Dance and music share gray matter structural correlates. Karpati FJ, Giacosa C, Foster NEV, Penhune VB, Hyde KL 27923638
IMAGING
13 Efficacy of Auditory versus Motor Learning for Skilled and Novice Performers. Brown RM, Penhune VB 30156505
IMAGING
14 The effects of practice and delay on motor skill learning and retention Savion-Lemieux T; Penhune VB; 15551084
MLNP
15 Developmental contributions to motor sequence learning Savion-Lemieux T; Bailey JA; Penhune VB; 19363605
CONCORDIA
16 Parallel contributions of cerebellar, striatal and M1 mechanisms to motor sequence learning Penhune VB; Steele CJ; 22004979
PSYCHOLOGY
17 The Impact of Instrument-Specific Musical Training on Rhythm Perception and Production Matthews TE; Thibodeau JN; Gunther BP; Penhune VB; 26869969
PSYCHOLOGY
18 The sensation of groove is affected by the interaction of rhythmic and harmonic complexity Matthews TE; Witek MAG; Heggli OA; Penhune VB; Vuust P; 30629596
MLNP
19 The effect of practice pattern on the acquisition, consolidation, and transfer of visual-motor sequences Savion-Lemieux T; Penhune VB; 20526710
CRDH
20 The role of musical training in emergent and event-based timing. Baer LH, Thibodeau JL, Gralnick TM, Li KZ, Penhune VB 23717275
CRDH
21 Effects of age and cognitive load on response reprogramming. Korotkevich Y, Trewartha KM, Penhune VB, Li KZ 25511168
CRDH
22 Regional cerebellar volumes are related to early musical training and finger tapping performance. Baer LH, Park MT, Bailey JA, Chakravarty MM, Li KZ, Penhune VB 25583606
PSYCHOLOGY
23 Contributions of age of start, cognitive abilities and practice to musical task performance in childhood Ireland K; Iyer TA; Penhune VB; 31022272
CONCORDIA
24 Rhythm and time in the premotor cortex. Penhune VB, Zatorre RJ 31158227
PSYCHOLOGY
25 Structural Covariance Analysis Reveals Differences Between Dancers and Untrained Controls. Karpati FJ, Giacosa C, Foster NEV, Penhune VB, Hyde KL 30319377
PSYCHOLOGY

 

Title:Efficacy of Auditory versus Motor Learning for Skilled and Novice Performers.
Authors:Brown RMPenhune VB
Link:https://www.ncbi.nlm.nih.gov/pubmed/30156505?dopt=Abstract
DOI:10.1162/jocn_a_01309
Publication:Journal of cognitive neuroscience
Keywords:
PMID:30156505 Category:J Cogn Neurosci Date Added:2019-06-20
Dept Affiliation: IMAGING
1 Concordia University, Montreal, Canada.

Description:

Efficacy of Auditory versus Motor Learning for Skilled and Novice Performers.

J Cogn Neurosci. 2018 11;30(11):1657-1682

Authors: Brown RM, Penhune VB

Abstract

Humans must learn a variety of sensorimotor skills, yet the relative contributions of sensory and motor information to skill acquisition remain unclear. Here we compare the behavioral and neural contributions of perceptual learning to that of motor learning, and we test whether these contributions depend on the expertise of the learner. Pianists and nonmusicians learned to perform novel melodies on a piano during fMRI scanning in four learning conditions: listening (auditory learning), performing without auditory feedback (motor learning), performing with auditory feedback (auditory-motor learning), or observing visual cues without performing or listening (cue-only learning). Visual cues were present in every learning condition and consisted of musical notation for pianists and spatial cues for nonmusicians. Melodies were performed from memory with no visual cues and with auditory feedback (recall) five times during learning. Pianists showed greater improvements in pitch and rhythm accuracy at recall during auditory learning compared with motor learning. Nonmusicians demonstrated greater rhythm improvements at recall during auditory learning compared with all other learning conditions. Pianists showed greater primary motor response at recall during auditory learning compared with motor learning, and response in this region during auditory learning correlated with pitch accuracy at recall and with auditory-premotor network response during auditory learning. Nonmusicians showed greater inferior parietal response during auditory compared with auditory-motor learning, and response in this region correlated with pitch accuracy at recall. Results suggest an advantage for perceptual learning compared with motor learning that is both general and expertise-dependent. This advantage is hypothesized to depend on feedforward motor control systems that can be used during learning to transform sensory information into motor production.

PMID: 30156505 [PubMed - in process]





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