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「脳が「時間の流れ」を調整する仕組み」の検索結果

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("time perception"[MeSH] OR "temporal processing" OR "time perception") AND (brain OR neural OR cerebral OR cortex OR "neural mechanisms")

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  • Hippocampal-cerebellar interaction during spatio-temporal prediction.

    Yoshiyuki Onuki, Eus J W Van Someren, Chris I De Zeeuw 他 · Cerebral cortex (New York, N.Y. : 1991) · 2015

    The hippocampus and cerebellum play a role in the process of temporal memory formation. The interaction between these brain regions during the prediction of motor executions nevertheless remains unclear. Using fMRI, we show here that the hippocampus and cerebellum are co-activated during a timing-dependent task that requires accurate prediction timing of finger movements following preceding visual…

    📄 PubMed で読む (PMID: 23968839)
  • Time-to-contact perception in the brain.

    Robin Baurès, Marie Fourteau, Salomé Thébault 他 · Journal of neuroscience research · 2021

    Time-to-contact (TTC) perception refers to the ability of an observer to estimate the remaining time before an object reaches a point in the environment, and is of crucial importance in daily life. Noninvasive correlational approaches have identified several brain areas sensitive to TTC information. Here we report the results of two studies, including one during an awake brain surgery, that aimed …

    📄 PubMed で読む (PMID: 33070400)
  • The Neural Networks Underlying the Illusion of Time Dilation.

    Muhammad Mubbashir Sheikh, Mohamad Z Koubeissi, Dennis D Spencer 他 · Annals of neurology · 2022

    📄 PubMed で読む (PMID: 34841572)
  • Phoneme representation and classification in primary auditory cortex.

    Nima Mesgarani, Stephen V David, Jonathan B Fritz 他 · The Journal of the Acoustical Society of America · 2008

    A controversial issue in neurolinguistics is whether basic neural auditory representations found in many animals can account for human perception of speech. This question was addressed by examining how a population of neurons in the primary auditory cortex (A1) of the naive awake ferret encodes phonemes and whether this representation could account for the human ability to discriminate them. When …

    📄 PubMed で読む (PMID: 18247893)
  • The devil you know: neuroticism predicts neural response to uncertainty.

    Jacob B Hirsh, Michael Inzlicht · Psychological science · 2008

    Individuals differ in the extent to which they respond negatively to uncertainty. Although some individuals feel little discomfort when facing the unknown, those high in neuroticism find it aversive. We examined neurophysiological responses to uncertainty using an event-related potential framework. Participants completed a time-estimation task while their neural activity was recorded via electroen…

    📄 PubMed で読む (PMID: 19000202)
  • Reading stories activates neural representations of visual and motor experiences.

    Nicole K Speer, Jeremy R Reynolds, Khena M Swallow 他 · Psychological science · 2009

    To understand and remember stories, readers integrate their knowledge of the world with information in the text. Here we present functional neuroimaging evidence that neural systems track changes in the situation described by a story. Different brain regions track different aspects of a story, such as a character's physical location or current goals. Some of these regions mirror those involved whe…

    📄 PubMed で読む (PMID: 19572969)
  • Speech dominance and handedness in the normal human.

    A E Davis, J A Wada · Brain and language · 1978

    📄 PubMed で読む (PMID: 618568)
  • When the brain plays music: auditory-motor interactions in music perception and production.

    Robert J Zatorre, Joyce L Chen, Virginia B Penhune 他 · Nature reviews. Neuroscience · 2007

    Music performance is both a natural human activity, present in all societies, and one of the most complex and demanding cognitive challenges that the human mind can undertake. Unlike most other sensory-motor activities, music performance requires precise timing of several hierarchically organized actions, as well as precise control over pitch interval production, implemented through diverse effect…

    📄 PubMed で読む (PMID: 17585307)
  • The timing of the conscious intention to move.

    Masao Matsuhashi, Mark Hallett · The European journal of neuroscience · 2008

    The foundation of modern neuroscience and psychology about intention for action was laid by B. Libet et al. [(1983) Brain 106, 623-642]. They reported the time of awareness of wanting to move to be about 0.2 s before voluntary movement onset. However, despite repeated confirmation of the result, their method has been criticised for its dependence on self-reported timing and subjective memory, and …

    📄 PubMed で読む (PMID: 19046374)
  • The song system of the human brain.

    Steven Brown, Michael J Martinez, Donald A Hodges 他 · Brain research. Cognitive brain research · 2004

    Although sophisticated insights have been gained into the neurobiology of singing in songbirds, little comparable knowledge exists for humans, the most complex singers in nature. Human song complexity is evidenced by the capacity to generate both richly structured melodies and coordinated multi-part harmonizations. The present study aimed to elucidate this multi-faceted vocal system by using 15O-w…

    📄 PubMed で読む (PMID: 15268914)