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「太鼓のリズムが脳を変える神経科学的メカニズム」の検索結果

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(drumming OR taiko OR percussion) AND (brain OR neural OR neuroplasticity OR "brain plasticity") AND (rhythm OR rhythmic)

💡 太鼓・打楽器を広く含め、脳の変化・神経可塑性とリズムの関連を捉える包括的クエリ

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  • Infant Spontaneous Motor Tempo.

    Sinead Rocha, Victoria Southgate, Denis Mareschal 他 · Developmental science · 2021

    Spontaneous Motor Tempo (SMT) is influenced by individual differences in age and body size. We present the first data documenting the SMT of infants from 5 to 37 months of age using a simple drumming task. As in late childhood and adulthood, we predicted that infant SMT would slow across the first years of life. However, we find that older infants drum more quickly than younger infants. Furthermor…

    📄 PubMed で読む (PMID: 32860482)
  • Sex differences in temperature rhythm disruption after traumatic brain injury.

    Ann N Hoffman, Sonya Watson, Yuqing Huang 他 · Experimental neurology · 2025

    Circadian rhythms are a natural endogenous process that regulates many bodily functions including body temperature and are linked to overall health. Disruptions in circadian rhythms have far reaching effects on systems vulnerable to traumatic brain injury (TBI), including sleep, neuroendocrine and immune function, and mental health. Whether TBI affects temperature rhythms differently in females an…

    📄 PubMed で読む (PMID: 40683588)
  • Physiological tremor in human jaw-muscle system.

    D Junge, J R Rosenberg, D M Halliday 他 · Archives of oral biology · 1998

    Small, quasi-rhythmical tremor of the jaw occurs at rest and during voluntary movements. In peripheral limbs, tremor consists of a component due to mechanical resonance properties of the system, and a neurogenic component mediated by a central pacemaker or neural loops. The present study attempted to determine if these components were present in jaw tremor measured with a position transducer held …

    📄 PubMed で読む (PMID: 9569990)
  • Optogenetic Stimulation of CA1 Pyramidal Neurons at Theta Enhances Recognition Memory in Brain Injured Animals.

    John I Broussard, John B Redell, Jing Zhao 他 · Journal of neurotrauma · 2023

    Abstract The hippocampus plays a prominent role in learning and memory formation. The functional integrity of this structure is often compromised after traumatic brain injury (TBI), resulting in lasting cognitive dysfunction. The activity of hippocampal neurons, particularly place cells, is coordinated by local theta oscillations. Previous studies aimed at examining hippocampal theta oscillations …

    📄 PubMed で読む (PMID: 37387400)
  • Combining Phase Advancement and Period Correction Explains Rushing during Joint Rhythmic Activities.

    Thomas Wolf, Cordula Vesper, Natalie Sebanz 他 · Scientific reports · 2019

    When people engage in rhythmic joint actions, from simple clapping games to elaborate joint music making, they tend to increase their tempo unconsciously. Despite the rich literature on rhythmic performance in humans, the mechanisms underlying joint rushing are still unknown. We propose that joint rushing arises from the concurrent activity of two separate mechanisms. The phase advance mechanism w…

    📄 PubMed で読む (PMID: 31249346)
  • Acute Non-Convulsive Status Epilepticus after Experimental Traumatic Brain Injury in Rats.

    Pedro Andrade, Ivette Banuelos-Cabrera, Niina Lapinlampi 他 · Journal of neurotrauma · 2019

    Severe traumatic brain injury (TBI) induces seizures or status epilepticus (SE) in 20-30% of patients during the acute phase. We hypothesized that severe TBI induced with lateral fluid-percussion injury (FPI) triggers post-impact SE. Adult Sprague-Dawley male rats were anesthetized with isoflurane and randomized into the sham-operated experimental control or lateral FPI-induced severe TBI groups. …

    📄 PubMed で読む (PMID: 30543155)
  • Improvised herding: Mapping biobehavioral mechanisms that underlie group efficacy during improvised social interaction.

    David M Greenberg, Nir Milstein, Avi Gilboa 他 · Psychophysiology · 2023

    Improvisation is a natural occurring phenomenon that is central to social interaction. Yet, improvisation is an understudied area in group processes and intergroup relations. Here we build on theory and research about human herding to study the contributions of improvisation on group efficacy and its biobehavioral underpinnings. We employed a novel multimodal approach and integrative method when o…

    📄 PubMed で読む (PMID: 37073965)
  • Chronic decrease in wakefulness and disruption of sleep-wake behavior after experimental traumatic brain injury.

    Mark D Skopin, Shruti V Kabadi, Shaun S Viechweg 他 · Journal of neurotrauma · 2015

    Traumatic brain injury (TBI) can cause sleep-wake disturbances and excessive daytime sleepiness. The pathobiology of sleep disorders in TBI, however, is not well understood, and animal models have been underused in studying such changes and potential underlying mechanisms. We used the rat lateral fluid percussion (LFP) model to analyze sleep-wake patterns as a function of time after injury. Rapid-…

    📄 PubMed で読む (PMID: 25242371)
  • Collective dynamics support group drumming, reduce variability, and stabilize tempo drift.

    Dobromir Dotov, Lana Delasanta, Daniel J Cameron 他 · eLife · 2022

    Humans are social animals who engage in a variety of collective activities requiring coordinated action. Among these, music is a defining and ancient aspect of human sociality. Human social interaction has largely been addressed in dyadic paradigms, and it is yet to be determined whether the ensuing conclusions generalize to larger groups. Studied more extensively in non-human animal behavior, the…

    📄 PubMed で読む (PMID: 36317963)
  • Seasonal Variation in Forebrain Region Sizes in Male Ruffed Grouse (Bonasa umbellus).

    Justin M Krilow, Andrew N Iwaniuk · Brain, behavior and evolution · 2015

    The song system of songbirds has provided significant insight into the underlying mechanisms and behavioural consequences of seasonal neuroplasticity. The extent to which seasonal changes in brain region volumes occur in non-songbird species has, however, remained largely untested. Here, we tested whether brain region volumes varied with season in the ruffed grouse (Bonasa umbellus), a gallinaceou…

    📄 PubMed で読む (PMID: 25997574)