Keyword search (4,164 papers available)

"rhythm" Keyword-tagged Publications:

Title Authors PubMed ID
1 Habitual napping in older adults is accompanied by altered heat-loss rhythms across the circadian cycle and reduced coupling between pre-sleep thermoregulatory dynamics and sleep initiation Dourte M; Hammad G; de Haan S; Deantoni M; Reyt M; Baillet M; Lesoinne A; Muto V; Collette F; Vandewalle G; Peigneux P; Cajochen C; Schmidt C; 41797810
PSYCHOLOGY
2 Smart Optogenetics for Real-Time Automated Control of Cardiac Electrical Activity Deng S; Harlaar N; Zhang J; Dekker SO; Kudryashova NN; Zhou H; Bart CI; Jin T; Derevyanko G; van Driel W; Panfilov AV; Poelma RH; de Vries AAF; Zhang G; De Coster T; Pijnappels DA; 41684280
CHEMBIOCHEM
3 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
4 Imagining the beat: causal evidence for dorsal premotor cortex (dPMC) role in beat imagery via transcranial magnetic stimulation (TMS) Lazzari G; Ferreri L; Cattaneo L; Penhune V; Lega C; 41248776
PSYCHOLOGY
5 Body maps of the sensation of musical groove Witek MAG; Matthews TE; Bechtold TA; Penhune V; 41064243
PSYCHOLOGY
6 Topography of Functional Organization of Beat Perception in Human Premotor Cortex: Causal Evidence From a Transcranial Magnetic Stimulation (TMS) Study Lazzari G; Costantini G; La Rocca S; Massironi A; Cattaneo L; Penhune V; Lega C; 40344601
PSYCHOLOGY
7 An Effective and Fast Model for Characterization of Cardiac Arrhythmia and Congestive Heart Failure Lahmiri S; Bekiros S; 40218199
JMSB
8 Challenges and Approaches in the Study of Neural Entrainment Duecker K; Doelling KB; Breska A; Coffey EBJ; Sivarao DV; Zoefel B; 39358026
CONCORDIA
9 Dopamine dysregulation in Parkinson's disease flattens the pleasurable urge to move to musical rhythms Pando-Naude V; Matthews TE; Højlund A; Jakobsen S; Østergaard K; Johnsen E; Garza-Villarreal EA; Witek MAG; Penhune V; Vuust P; 37724707
PSYCHOLOGY
10 Respiratory sinus arrhythmia, negative social interactions, and fluctuations in unmet interpersonal needs: A daily diary study MacNeil S; Renaud J; Gouin JP; 37208985
PSYCHOLOGY
11 Respiratory sinus arrhythmia moderates the interpersonal consequences of brooding rumination Caldwell W; MacNeil S; Wrosch C; McGrath JJ; Dang-Vu TT; Morin AJS; Gouin JP; 36844897
HKAP
12 Sleep disorders in patients with a neurocognitive disorder C Moderie 34916075
PERFORM
13 Maturation of temporal saccade prediction from childhood to adulthood: predictive saccades, reduced pupil size and blink synchronization Calancie OG; Brien DC; Huang J; Coe BC; Booij L; Khalid-Khan S; Munoz DP; 34759032
PSYCHOLOGY
14 In utero Exposure to Valproic-Acid Alters Circadian Organisation and Clock-Gene Expression: Implications for Autism Spectrum Disorders Ferraro S; de Zavalia N; Belforte N; Amir S; 34650409
CSBN
15 Heart rate variability moderates the between- and within-person associations between daily stress and negative affect da Estrela C; MacNeil S; Gouin JP; 33556470
PERFORM
16 Cerebellar Cortex 4-12 Hz Oscillations and Unit Phase Relation in the Awake Rat. Lévesque M; Gao H; Southward C; Langlois JMP; Léna C; Courtemanche R; 33240052
HKAP
17 The phenotype associated with variants in TANGO2 may be explained by a dual role of the protein in ER-to-Golgi transport and at the mitochondria. Milev MP, Saint-Dic D, Zardoui K, Klopstock T, Law C, Distelmaier F, Sacher M 32909282
BIOLOGY
18 Heart Rate Variability, Sleep Quality, and Depression in the Context of Chronic Stress da Estrela C; McGrath J; Booij L; Gouin JP; 32525208
PERFORM
19 Inactograms and objective sleep measures as means to capture subjective sleep problems in patients with a bipolar disorder. Lavin-Gonzalez P, Bourguignon C, Crescenzi O, Beaulieu S, Storch KF, Linnaranta O 32232937
PSYCHOLOGY
20 The sensation of groove engages motor and reward networks. Matthews TE, Witek MAG, Lund T, Vuust P, Penhune VB 32217163
PSYCHOLOGY
21 Late and Instable Sleep Phasing is Associated With Irregular Eating Patterns in Eating Disorders. Linnaranta O, Bourguignon C, Crescenzi O, Sibthorpe D, Buyukkurt A, Steiger H, Storch KF 32211873
PSYCHOLOGY
22 Voluntary exercise stabilizes photic entrainment of djungarian hamsters (Phodopus sungorus) with a delayed activity onset. Weinert D, Schöttner K, Meinecke AC, Hauer J 29985662
CSBN
23 The Impact of Instrument-Specific Musical Training on Rhythm Perception and Production Matthews TE; Thibodeau JN; Gunther BP; Penhune VB; 26869969
PSYCHOLOGY

 

Title:Topography of Functional Organization of Beat Perception in Human Premotor Cortex: Causal Evidence From a Transcranial Magnetic Stimulation (TMS) Study
Authors:Lazzari GCostantini GLa Rocca SMassironi ACattaneo LPenhune VLega C
Link:https://pubmed.ncbi.nlm.nih.gov/40344601/
DOI:10.1002/hbm.70225
Publication:Human brain mapping
Keywords:musicpremotor cortexrhythm perceptionsupplementary motor areastranscranial magnetic stimulation
PMID:40344601 Category: Date Added:2025-05-09
Dept Affiliation: PSYCHOLOGY
1 Department of Brain and Behavioral Sciences, University of Pavia, Pavia, Italy.
2 Department of Psychology, University of Milano-Bicocca, Milan, Italy.
3 Center for Mind/Brain Sciences (CIMeC), University of Trento, Trento, Italy.
4 Psychology Department, Concordia University, Montreal, Canada.
5 Montreal Laboratory for Brain, Music and Sound (BRAMS), The Centre for Research in Brain, Language and Music (CRBLM), Montreal, Canada.

Description:

Humans can flexibly extract a regular beat from complex rhythmic auditory patterns, as often occurs in music. Contemporary models of beat perception suggest that the premotor cortex (PMC) and the supplementary motor area (SMA) are integral to this process. However, how these motor planning regions actively contribute to beat perception, along with any potential hemispheric specialization, remains open questions. Therefore, following the validation of stimuli in a behavioral experiment (Experiment I, N = 29, 12 males, mean age = 23.8 ± 0.7 years), we employed transcranial magnetic stimulation (TMS) to test the causal contribution of these regions to beat perception. In Experiment II (N = 40, 16 males, mean age = 23.2 ± 2.37 years), we applied online repetitive TMS (rTMS) over a defined grid encompassing the right rostral and caudal dPMC, SMA, and pre-SMA, and a sham control location. Results showed that stimulation of the caudal portion of right dPMC selectively affected beat perception compared to all other regions. In Experiment III (preregistered, N = 42, 17 males, mean age = 23.5 ± 2.61 years), we tested the lateralization of this contribution by applying rTMS over right and left caudal dPMC. Our results showed that only stimulation over right, but not left, dPMC modulated beat perception. Finally, across all three experiments, individual differences in musical reward predicted beat perception sensitivity. Together, these results support the causal role of the right dPMC in generating internal action predictions and perceptual expectations regarding ongoing sequential events, in line with recent models emphasizing the role of the dorsal auditory stream in beat-based temporal perception. These findings offer valuable insights into the functional organization of the premotor cortex, contributing to a deeper understanding of the neural mechanisms involved in human rhythm perception.





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