Sub-and Supra-Second Timing: Brain, Learning and Development

Sub-and Supra-Second Timing: Brain, Learning and Development

Author: Lihan Chen

Publisher: Frontiers Media SA

Published: 2016-08-15

Total Pages: 164

ISBN-13: 2889198987

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Time perception in the range of milliseconds to a few seconds is essential for many important sensory and perceptual tasks including speech perception, motion perception, motor coordination, and cross-modal interaction. For the brain to be in synchrony with the environment, the physical differences in the speeds of light and sound, as well as stimuli from other modalities such as odors, must be processed and coordinated (Pöppel & Bao 2014; Bao et al., 2015). Time is a subjective feeling that is modulated by emotional states which trigger temporal distortions (temporal dilation vs. contraction) (Wittmann et al., 2014), hence give rise to subjective time that may be different to event time as initially registered in the brain. Recent research suggests that time perception in a multisensory world is subject to prior task experience and shaped by (statistical) learning processes. Humans are active learners. That is, the engagement of the own body in a timing task within a perceptual-action loop will make a noticeable difference in timing performance, as compared to when humans only passively perceive the same perceptual scenario (Bao et al., 2015; Chen & Vroomen, 2013). This Research Topic of “Sub-and Supra-Second Timing: Brain, Learning and Development” has integrated sixteen submissions of novel research on sub- and supra-timing. We have categorized the papers in this topic into the following four themes, from which we can deduce trends of research about multisensory timing in the sub- and supra-second range: Sensory timing, interaction and reliability Adaptive representation of time, learning and temporal prediction Sensorimotor synchronization, embodiment and coordination Perspective of psychological moment and temporal organization Overall, the collections in “Sub-and Supra-Second Timing: Brain, Learning and Development” show some recent trends and debates in multisensory timing research as well as provide a venue to inspire future work in multisensory timing.


Timing and Time Perception: Procedures, Measures, & Applications

Timing and Time Perception: Procedures, Measures, & Applications

Author:

Publisher: BRILL

Published: 2018-04-10

Total Pages: 372

ISBN-13: 9004280200

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Timing and Time Perception: Procedures, Measures, and Applications is a one-of-a-kind, collective effort to present the most utilized and known methods on timing and time perception. Specifically, it covers methods and analysis on circadian timing, synchrony perception, reaction/response time, time estimation, and alternative methods for clinical/developmental research. The book includes experimental protocols, programming code, and sample results and the content ranges from very introductory to more advanced so as to cover the needs of both junior and senior researchers. We hope that this will be the first step in future efforts to document experimental methods and analysis both in a theoretical and in a practical manner. Contributors are: Patricia V. Agostino, Rocío Alcalá-Quintana, Fuat Balcı, Karin Bausenhart, Richard Block, Ivana L. Bussi, Carlos S. Caldart, Mariagrazia Capizzi, Xiaoqin Chen, Ángel Correa, Massimiliano Di Luca, Céline Z. Duval, Mark T. Elliott, Dagmar Fraser, David Freestone, Miguel A. García-Pérez, Anne Giersch, Simon Grondin, Nori Jacoby, Florian Klapproth, Franziska Kopp, Maria Kostaki, Laurence Lalanne, Giovanna Mioni, Trevor B. Penney, Patrick E. Poncelet, Patrick Simen, Ryan Stables, Rolf Ulrich, Argiro Vatakis, Dominic Ward, Alan M. Wing, Kieran Yarrow, and Dan Zakay.


Neurophysiology of Silence Part B: Theory and Review

Neurophysiology of Silence Part B: Theory and Review

Author:

Publisher: Elsevier

Published: 2023-09-13

Total Pages: 158

ISBN-13: 0443236143

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Progress in Brain Research serial highlights new advances in the field with this new volume presenting interesting chapters. Each chapter is written by an international board of authors - Provides the authority and expertise of leading contributors from an international board of authors - Presents the latest release in Progress in Brain Research serials - Updated release includes the latest information on Neurophysiology of Silence


Music and the Aging Brain

Music and the Aging Brain

Author: Lola Cuddy

Publisher: Academic Press

Published: 2020-05-28

Total Pages: 476

ISBN-13: 0128174234

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Music and the Aging Brain describes brain functioning in aging and addresses the power of music to protect the brain from loss of function and how to cope with the ravages of brain diseases that accompany aging. By studying the power of music in aging through the lens of neuroscience, behavioral, and clinical science, the book explains brain organization and function. Written for those researching the brain and aging, the book provides solid examples of research fundamentals, including rigorous standards for sample selection, control groups, description of intervention activities, measures of health outcomes, statistical methods, and logically stated conclusions. - Summarizes brain structures supporting music perception and cognition - Examines and explains music as neuroprotective in normal aging - Addresses the association of hearing loss to dementia - Promotes a neurological approach for research in music as therapy - Proposes questions for future research in music and aging


Cephalopod Cognition

Cephalopod Cognition

Author: Anne-Sophie Darmaillacq

Publisher: Cambridge University Press

Published: 2014-07-10

Total Pages: 267

ISBN-13: 1107015561

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Focusing on comparative cognition in cephalopods, this book illuminates the wide range of mental function in this often overlooked group.


Interval Timing and Time-Based Decision Making

Interval Timing and Time-Based Decision Making

Author: Warren H. Meck

Publisher: Frontiers Media SA

Published: 2012-05-01

Total Pages: 480

ISBN-13: 288919034X

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The perception of time is crucial for everyday activities from the sleep–wake cycle to playing and appreciating music, verbal communication, to the determination of the value of a particular behavior. With regard to the last point, making decisions is heavily influenced by the duration of the various options, the duration of the expected delays for receiving the options, and the time constraints for making a choice. Recent advances suggest that the brain represents time in a distributed manner and reflects time as a result of temporal changes in network states and/or by the coincidence detection of the phase of different neural populations. Moreover, intrinsic oscillatory properties of neural circuits could determine timed motor responses. This Research Topic, partly an emergence of a Satellite EBBS meeting sponsored by the COST-Action TIMELY, will discuss how time in the physical world is reconstructed, distorted and modified in brain networks by emotion, learning and neuropathology. This Research Topic on Timing contains up-to-date reviews regarding the relationship between time and decision-making with respect to the underlying psychological and physiological mechanisms responsible for anticipation and evaluation processes.


Spike-timing dependent plasticity

Spike-timing dependent plasticity

Author: Henry Markram

Publisher: Frontiers E-books

Published:

Total Pages: 575

ISBN-13: 2889190439

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Hebb's postulate provided a crucial framework to understand synaptic alterations underlying learning and memory. Hebb's theory proposed that neurons that fire together, also wire together, which provided the logical framework for the strengthening of synapses. Weakening of synapses was however addressed by "not being strengthened", and it was only later that the active decrease of synaptic strength was introduced through the discovery of long-term depression caused by low frequency stimulation of the presynaptic neuron. In 1994, it was found that the precise relative timing of pre and postynaptic spikes determined not only the magnitude, but also the direction of synaptic alterations when two neurons are active together. Neurons that fire together may therefore not necessarily wire together if the precise timing of the spikes involved are not tighly correlated. In the subsequent 15 years, Spike Timing Dependent Plasticity (STDP) has been found in multiple brain brain regions and in many different species. The size and shape of the time windows in which positive and negative changes can be made vary for different brain regions, but the core principle of spike timing dependent changes remain. A large number of theoretical studies have also been conducted during this period that explore the computational function of this driving principle and STDP algorithms have become the main learning algorithm when modeling neural networks. This Research Topic will bring together all the key experimental and theoretical research on STDP.


Phonological and phonetic competence: between grammar, signal processing, and neural activity

Phonological and phonetic competence: between grammar, signal processing, and neural activity

Author: Ulrike Domahs

Publisher: Frontiers Media SA

Published: 2016-06-10

Total Pages: 162

ISBN-13: 288919809X

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The starting point for this Research Topic was a Priority Programme on experimental research in phonology and phonetics which was funded by the German Science Foundation (DFG) from 2006 to 2013. Based on this programme, the aim of this Research Topic is to draw together empirical work in the field of segmental and prosodic processing and representation and phonological theory. Contributions are encouraged that focus on the exploration of human cognitive, articulatory and perceptual abilities dealing with all types of phonetic and phonological entities. More specifically, papers are encouraged that address the interface of the speech sound systems investigated in phonology, the representation about articulation, perception, acquisition and processing established in phonetics and psycholinguistics, neurolinguistics. Topics of investigation could be: (1) phonological representations in the mental lexicon – specified minimally in terms of categorical phonological information or as variable phonetic imprint of the occurrences in the input, (2) sounds and sound-changing processes – systemic and functional aspects, (3) prosodic units such as syllables and metrical feet, as well as the phonological phrases that are connected to syntactic units of the sentence – systemic- properties, processing and phonetic consequences, (4) tones as building blocks of the sentence melody – their relation to the level of linguistic expressions on the one hand, their phonetic realisation (e.g., tonal height and contours) and perception on the other hand. Experimental contributions making use of behavioural methods including eye movement studies and methods like EEG, fMRI, MEG and EPA to investigate production and perception of phonetic and phonological entities are particularly welcome. We welcome original research articles, reviews, theory articles, methodological articles, as well as brief commentaries/opinion pieces (for further information see here).