Results for ' developmental temporalities'

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  1.  26
    The developmental profile of temporal binding: From childhood to adulthood.Sara Lorimer, Teresa McCormack, Emma Blakey, David A. Lagnado, Christoph Hoerl, Emma Tecwyn & Marc J. Buehner - 2020 - Quarterly Journal of Experimental Psychology 73 (10):1575-1586.
    Temporal binding refers to a phenomenon whereby the time interval between a cause and its effect is perceived as shorter than the same interval separating two unrelated events. We examined the developmental profile of this phenomenon by comparing the performance of groups of children (aged 6-7-, 7-8-, and 9-10- years) and adults on a novel interval estimation task. In Experiment 1, participants made judgments about the time interval between i) their button press and a rocket launch, and ii) a (...)
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  2.  7
    Temporal and spatial regulation of developmentally expressed genes in Caulobacter.James W. Gober & Lucy Shapiro - 1991 - Bioessays 13 (6):277-283.
    Fundamental problems in developmental biology, such as the generation of asymmetry, differential transcription, and the execution of positional information, are all exhibited by a prokaryotic system, the Caulobacter cell cycle. Progeny cells resulting from each cell division have different developmental programs with respect to patterns of transcription and the initiation of DNA replication. The binary fission that yields dissimilar progeny results from asymmetry generated in the parent cell. An aspect of this fundamental developmental event is the temporally‐controlled (...)
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  3. The temporal organization of language: developmental and neuropsychological aspects.Angela D. Friederici - 1996 - In B. Velichkovsky & Duane M. Rumbaugh (eds.), Communicating Meaning: The Evolution and Development of Language. Hillsdale, NJ: Lawrence Erlbaum Associates. pp. 173--186.
  4.  12
    A Temporal Sampling Basis for Visual Processing in Developmental Dyslexia.Kim Archer, Kristen Pammer & Trichur Raman Vidyasagar - 2020 - Frontiers in Human Neuroscience 14.
  5.  13
    Expanding the Temporal Dimensions of Developmental Biology: The Role of Environmental Agents in Establishing Adult-Onset Phenotypes.Scott F. Gilbert - 2011 - Biological Theory 6 (1):65-72.
    Developmental biology is expanding into several new areas. One new area of study concerns the production of adult-onset phenotypes by exposure of the fetus or neonate to environmental agents. These agents include maternal nutrients, developmental modulators (endocrine disruptors), and maternal care. In all three cases, a major mechanism for the generation of the altered phenotype is chromatin modification. Nutrient conditions, developmental modulators, and even maternal care appear to alter DNA methylation and other associated changes in chromatin that (...)
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  6.  5
    Control of developmental timing by small temporal RNAs: a paradigm for RNA‐mediated regulation of gene expression.Diya Banerjee & Frank Slack - 2002 - Bioessays 24 (2):119-129.
    Heterochronic genes control the timing of developmental programs. In C. elegans, two key genes in the heterochronic pathway, lin-4 and let-7, encode small temporally expressed RNAs (stRNAs) that are not translated into protein. These stRNAs exert negative post-transcriptional regulation by binding to complementary sequences in the 3′ untranslated regions of their target genes. stRNAs are transcribed as longer precursor RNAs that are processed by the RNase Dicer/DCR-1 and members of the RDE-1/AGO1 family of proteins, which are better known for (...)
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  7.  8
    The Differential Effects of Auditory and Visual Stimuli on Learning, Retention and Reactivation of a Perceptual-Motor Temporal Sequence in Children With Developmental Coordination Disorder.Mélody Blais, Mélanie Jucla, Stéphanie Maziero, Jean-Michel Albaret, Yves Chaix & Jessica Tallet - 2021 - Frontiers in Human Neuroscience 15.
    This study investigates the procedural learning, retention, and reactivation of temporal sensorimotor sequences in children with and without developmental coordination disorder. Twenty typically-developing children and 12 children with DCD took part in this study. The children were required to tap on a keyboard, synchronizing with auditory or visual stimuli presented as an isochronous temporal sequence, and practice non-isochronous temporal sequences to memorize them. Immediate and delayed retention of the audio-motor and visuo-motor non-isochronous sequences were tested by removing auditory or (...)
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  8.  8
    Evolutionary developmental biology offers a significant challenge to the neo-Darwinian paradigm.Manfred D. Laubichler - 2010 - In Francisco José Ayala & Robert Arp (eds.), Contemporary debates in philosophy of biology. Malden, MA: Wiley-Blackwell. pp. 199–212.
    This chapter contains sections titled: Introduction A Brief History of Developmental Explanations of Phenotypic Evolution Research Questions of Evo‐Devo Unifying Themes of the Conceptual Basis of Evo‐Devo Conclusion: A Mechanistic Theory of Evo‐Devo Challenges the Modern Synthesis Postscript: Counterpoint References.
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  9.  31
    Developmental Foreign Accent Syndrome: Report of a New Case.Stefanie Keulen, Peter Mariën, Peggy Wackenier, Roel Jonkers, Roelien Bastiaanse & Jo Verhoeven - 2016 - Frontiers in Human Neuroscience 10:156334.
    This paper presents the case of a 17-year-old right-handed Belgian boy with developmental FAS and comorbid developmental apraxia of speech (DAS). Extensive neuropsychological and neurolinguistic investigations demonstrated a normal IQ but impaired planning (visuo-constructional dyspraxia). A Tc-99m-ECD SPECT revealed a significant hypoperfusion in the prefrontal and medial frontal regions, as well as in the lateral temporal regions. Hypoperfusion in the right cerebellum almost reached significance. It is hypothesized that these clinical findings support the view that FAS and DAS (...)
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  10.  11
    The Development of Temporal Concepts: Linguistic Factors and Cognitive Processes.Meng Zhang & Judith A. Hudson - 2018 - Frontiers in Psychology 9.
    Temporal concepts are fundamental constructs of human cognition, but the trajectory of how these concepts emerge and develop is not clear. Evidence of children’s temporal concept development comes from cognitive developmental and psycholinguistic studies. This paper reviews the linguistic factors (i.e., temporal language production and comprehension) and cognitive processes (i.e., temporal judgment and temporal reasoning) involved in children’s temporal conceptualization. The relationship between children’s ability to express time in language and the ability to reason about time, and the challenges (...)
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  11.  53
    Merleau-Ponty’s Developmental Ontology.David Morris - 2018 - Carbondale, IL, USA: Northwestern University Press.
    Merleau-Ponty's Developmental Ontology shows how the philosophy of Maurice Merleau-Ponty, from its very beginnings, seeks to find sense or meaning within nature, and how this quest calls for and develops into a radically new ontology. -/- David Morris first gives an illuminating analysis of sense, showing how it requires understanding nature as engendering new norms. He then presents innovative studies of Merleau-Ponty's The Structure of Behavior and Phenomenology of Perception, revealing how these early works are oriented by the problem (...)
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  12. Temporal updating, temporal reasoning, and the domain of time.Christoph Hoerl & Teresa McCormack - 2019 - Behavioral and Brain Sciences 42 (e278):51-77.
    We focus on three main sets of topics emerging from the commentaries on our target article. First, we discuss several types of animal behavior that commentators cite as evidence against our claim that animals are restricted to temporal updating and cannot engage in temporal reasoning. In doing so, we illustrate further how explanations of behavior in terms of temporal updating work. Second, we respond to commentators’ queries about the developmental process through which children acquire a capacity for temporal reasoning (...)
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  13. The development of temporal concepts: Learning to locate events in time.Teresa McCormack & Christoph Hoerl - 2017 - Timing and Time Perception 5 (3-4):297-327.
    A new model of the development of temporal concepts is described that assumes that there are substantial changes in how children think about time in the early years. It is argued that there is a shift from understanding time in an event-dependent way to an event-independent understanding of time. Early in development, very young children are unable to think about locations in time independently of the events that occur at those locations. It is only with development that children begin to (...)
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  14.  30
    Impaired extraction of speech rhythm from temporal modulation patterns in speech in developmental dyslexia.Victoria Leong & Usha Goswami - 2014 - Frontiers in Human Neuroscience 8.
  15. Rethinking Temporality in Education Drawing upon the Philosophies of Merleau-Ponty and Deleuze: A Chiasmic Be(com)ing.Susanne Westman & Eva Alerby - 2012 - Childhood and Philosophy 8 (16):355-377.
    The children of today live in a time when the images of themselves and their childhood, their needs, interests, and skills, are discussed, researched, challenged, and changed. Childhood, education and educational settings for young children are to a great extent governed by temporality. In this paper, temporality and temporal notions in education are explored and discussed. We especially illuminate two different ways of thinking about children in education and care for younger children in the West— the predominant biased notions of (...)
     
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  16.  3
    Developmental Ascendency: From Bottom-up to Top-down Control.James A. Coffman - 2006 - Biological Theory 1 (2):165-178.
    Development is a process whereby a relatively unspecified system comprised of loosely connected lower level parts becomes organized into a coherent, higher-level agency. Its temporal corollaries are growth, increasingly deterministic behavior, and a progressive reduction of developmental potential. During immature stages with relatively low specification and high potential, development is largely controlled by local interactions from the “bottom-up,” whereas during more highly specified stages with reduced potential, emergent autocatalytic processes exert “top-down” control. Robert Ulanowicz has shown that this phenomenology (...)
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  17. The Computational Boundary of a “Self”: Developmental Bioelectricity Drives Multicellularity and Scale-Free Cognition.Michael Levin - 2019 - Frontiers in Psychology 10.
    All epistemic agents physically consist of parts that must somehow comprise an integrated cognitive self. Biological individuals consist of subunits (organs, cells, molecular networks) that are themselves complex and competent in their own context. How do coherent biological Individuals result from the activity of smaller sub-agents? To understand the evolution and function of metazoan bodies and minds, it is essential to conceptually explore the origin of multicellularity and the scaling of the basal cognition of individual cells into a coherent larger (...)
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  18.  9
    Developmental Trends of Visual Processing of Letters and Objects Using Naming Speed Tasks.Kaitlyn Easson, Noor Z. Al Dahhan, Donald C. Brien, John R. Kirby & Douglas P. Munoz - 2020 - Frontiers in Human Neuroscience 14.
    Studying the typical development of reading is key to understanding the precise deficits that underlie reading disabilities. An important correlate of efficient reading is the speed of naming arrays of simple stimuli such as letters and pictures. In this cross-sectional study, we examined developmental changes in visual processing that occurs during letter and object naming from childhood to early adulthood in terms of behavioral task efficiency, associated articulation and eye movement parameters, and the coordination between them, as measured by (...)
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  19. The child in time: Temporal concepts and self-consciousness in the development of episodic memory.Teresa McCormack & Christoph Hoerl - 2001 - In Chris Moore & Karen Lemmon (eds.), The Self in Time: Developmental Perspectives. Erlbaum. pp. 203-227.
    Investigates the roles of temporal concepts and self-consciousness in the development of episodic memory. According to some theorists, types of long-term memory differ primarily in the degree to which they involve or are associated with self-consciousness (although there may be no substantial differences in the kind of event information that they deliver). However, a known difficulty with this view is that it is not obvious what motivates introducing self-consciousness as the decisive factor in distinguishing between types of memory and what (...)
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  20. Developmental prosopagnosia: Cognitive, neural, and developmental investigations.Brad Duchaine - 2011 - In Andy Calder, Gillian Rhodes, Mark Johnson & Jim Haxby (eds.), Oxford Handbook of Face Perception. Oxford University Press. pp. 821--838.
    This article reviews recent research findings investigating developmental prosopagnosia. Studies involving DP address the cognitive and neural basis of face processing. The relatively rich cognitive, neural, and developmental theories of face recognition provide a framework that should allow for rapid progress. Cognitive studies of DP provide support for the existence of face-specific processes, and dissociations between different types of face processing in DPs are consistent with leading models of face processing that propose separable mechanisms for various aspects of (...)
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  21. Temporality and Asperger's Syndrome.Patricia Ribeiro Zukauskas, Francisco Baptista Assumpção Jr & Nava Silton - 2009 - Journal of Phenomenological Psychology 40 (1):85-106.
    Asperger's syndrome is a pervasive developmental condition characterized by features of autism. As observed in clinical practice, individuals with Asperger's syndrome present an impairment related to inflexibility in their everyday routine, an immediate manner of experiencing and relating, and difficulties in estimating periods of time. Following a phenomenological perspective, this study is an attempt to examine these aforementioned aspects in terms of temporality. Thirteen participants with Asperger's syndrome, from 13 to 20 years old, were interviewed about their experience of (...)
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  22.  20
    A Developmental Model for Educating Wise Leaders: The Role of Mindfulness and Habitus in Creating Time for Embodying Wisdom.David Rooney, Wendelin Küpers, David Pauleen & Ekatarina Zhuravleva - 2019 - Journal of Business Ethics 170 (1):181-194.
    This article brings together mindfulness and habitus theory in relation to developing wise leaders. In particular, we present new insights about the intersection of time, subjective and intersubjective experience, and mindfulness that are relevant to developing embodied wisdom in leaders. We show that temporal competence is essential for shaping habitus and developing embodied wisdom. Further, and to extend theoretical understandings of mindfulness in leadership, we argue that temporal capabilities developed through mindfulness can foster embodied wisdom by creating a specific ‘wisdom (...)
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  23.  19
    Temporal Perspectives and the Phenomenology of Grief.Jack Shardlow - forthcoming - Review of Philosophy and Psychology:1-22.
    In first personal accounts of the experience of grief, it is often described as disrupting the experience of time. This aspect of the experience has gained more attention in recent discussions, but it may nonetheless strike some as puzzling. Grieving subjects do, after all, still perceptually experience motion, change, and succession, and they are typically capable of orienting themselves in time and accurately estimating durations. As such, it is not immediately obvious how we ought understand the claim that grief disrupts (...)
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  24.  12
    A temporally sustained implicit theory of mind deficit in autism spectrum disorders.Dana Schneider, Virginia P. Slaughter, Andrew P. Bayliss & Paul E. Dux - 2013 - Cognition 129 (2):410-417.
    Eye movements during false-belief tasks can reveal an individual's capacity to implicitly monitor others' mental states (theory of mind - ToM). It has been suggested, based on the results of a single-trial-experiment, that this ability is impaired in those with a high-functioning autism spectrum disorder (ASD), despite neurotypical-like performance on explicit ToM measures. However, given there are known attention differences and visual hypersensitivities in ASD it is important to establish whether such impairments are evident over time. In addition, investigating implicit (...)
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  25. Memory and temporal perspective: The role of temporal frameworks in memory development.Teresa McCormack & Christoph Hoerl - 1999 - Developmental Review 19:154-182.
    An account of the development of temporal understanding is proposed which links such understanding with the development of episodic memory. We distinguish between different ways of representing time in terms of the kinds of temporal frameworks they involve. Distinctions are made between frameworks that are perspectival or nonperspectival and those that represent recurrent sequences or particular times. Even primitive temporal understanding integrates both perspectival and nonperspectival components. However, since early frameworks are event-based and localized, they are not yet sufficient for (...)
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  26.  12
    Developmental Changes in Number Personification by Elementary School Children.Eiko Matsuda, Yoshihiro S. Okazaki, Michiko Asano & Kazuhiko Yokosawa - 2018 - Frontiers in Psychology 9.
    Children often personify non-living objects, such as puppets and stars. This attribution is considered a healthy phenomenon, which can simulate social exchange and enhance children's understanding of social relationships. In this study, we considered that the tendency of children to engage in personification could potentially be observed in abstract entities, such as numbers. We hypothesized that children tend to attribute personalities to numbers, which diminishes during the course of development. By consulting the methodology to measure ordinal linguistic personification (OLP), which (...)
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  27. Social change in developmental times? On 'changeability' and the uneven timings of child welfare interventions.Zlatana Knezevic - 2020 - Time and Society 29 (4):1040-1060.
    While temporality has been addressed in the context of child welfare, the temporal dimensions of differentiation and othering remain unacknowledged. This article draws on material from a Swedish child welfare agency and is theoretically inspired by postcolonial and queer theories and critical childhood studies. It is based on an analytical juxtaposition of care order applications recommending immediate child welfare interventions versus interventions that are recommended after long ongoing assessments. Such recommendations are addressed as unequal in terms of timing. The article (...)
     
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  28.  13
    The Temporal Politics of Placenta Epigenetics: Bodies, Environments and Time.Robbin Jeffries Hein & Martine Lappé - 2023 - Body and Society 29 (2):49-76.
    This article builds on feminist scholarship on new biologies and the body to describe the temporal politics of epigenetic research related to the human placenta. Drawing on interviews with scientists and observations at conferences and in laboratories, we argue that epigenetic research simultaneously positions placenta tissue as a way back into maternal and fetal bodies following birth, as a lens onto children’s future well-being, and as a bankable resource for ongoing research. Our findings reflect how developmental models of health (...)
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  29.  6
    Developmental motifs reveal complex structure in cell lineages.Nicholas Geard, Seth Bullock, Rolf Lohaus, Ricardo B. R. Azevedo & Janet Wiles - 2011 - Complexity 16 (4):48-57.
    Many natural and technological systems are complex, with organizational structures that exhibit characteristic patterns but defy concise description. One effective approach to analyzing such systems is in terms of repeated topological motifs. Here, we extend the motif concept to characterize the dynamic behavior of complex systems by introducing developmental motifs, which capture patterns of system growth. As a proof of concept, we use developmental motifs to analyze the developmental cell lineage of the nematode Caenorhabditis elegans, revealing a (...)
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  30.  7
    Developmental control of cell division in leech embryos.Shirley T. Bissen - 1997 - Bioessays 19 (3):201-207.
    During embryogenesis, cell division must be spatially and temporally regulated with respect to other developmental processes. Leech embryos undergo a series of unequal and asynchronous cleavages to produce individually recognizable cells whose lineages, developmental fates and cell cycle properties have been characterized. Thus, leech embryos provide an opportunity to examine the regulation of cell division at the level of individual well‐characterized cells within a community of different types of cells. Isolation of leech homologues of some of the highly (...)
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  31.  12
    Temporal Concepts and Episodic Memory: A Response to Hoerl.Teresa McCormack - 1999 - Mind and Language 14 (2):252-262.
    Hoerl claims that episodic memory is necessary for a concept of the past, and that we should consider some severely amnesic patients as lacking such a concept. I question whether this description of such patients is plausible, and whether it helps us understand lack of insight in amnesia. I finish by arguing that Hoerl’s analysis of what constitutes a concept of the past raises interesting developmental issues.
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  32.  4
    A developmental-ecological perspective on Strawson's 'the self'.George Butterworth - 1998 - Journal of Consciousness Studies 5 (2):132-140.
    Galen Strawson considers the self to be best described as a cognitive, `distinctively mental' phenomenon. He asserts that the mental sense of self comes to every normal human being in childhood and comprises the sense of being a mental presence, of being alone in one's head, with the body `just a vehicle or vessel for the mental thing that is what one really or most essentially is' . His thesis is determinedly cognitivist and it is with this that I take (...)
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  33.  3
    Temporal concepts and episodic memory: A response to Hoerl.Teresa McCormack - 1999 - Mind and Language 14 (2):252-262.
    Hoerl claims that episodic memory is necessary for a concept of the past, and that we should consider some severely amnesic patients as lacking such a concept. I question whether this description of such patients is plausible, and whether it helps us understand lack of insight in amnesia. I finish by arguing that Hoerl’s analysis of what constitutes a concept of the past raises interesting developmental issues.
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  34.  14
    Dynamic network rewiring determines temporal regulatory functions in Drosophilamelanogaster development processes.Man-Sun Kim, Jeong-Rae Kim & Kwang-Hyun Cho - 2010 - Bioessays 32 (6):505-513.
    Cover Photograph: Resolving developmental genetics in the fourth dimension: an illustration (by Kwang‐Hyun Cho himself) of the principle of dynamic network motifs in Drosophila development. Hitherto largely considered in terms of time‐invariant networks, drosophila development is viewed in the article by Man‐Sun Kim, Jeong‐Rae Kim, and Kwang‐Hyun Cho as the result of networks of gene interactions that change during the course of development. Using this paradigm, pivotal developmental events can be correlated with particular changes from one constellation of (...)
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  35.  26
    When causality shapes the experience of time: Evidence for temporal binding in young children.Emma Blakey, Emma Tecwyn, Teresa McCormack, David A. Lagnado, Christoph Hoerl, Sara Lorimer & Marc J. Buehner - 2019 - Developmental Science 22 (3):e12769.
    It is well established that the temporal proximity of two events is a fundamental cue to causality. Recent research with adults has shown that this relation is bidirectional: events that are believed to be causally related are perceived as occurring closer together in time—the so‐called temporal binding effect. Here, we examined the developmental origins of temporal binding. Participants predicted when an event that was either caused by a button press, or preceded by a non‐causal signal, would occur. We demonstrate (...)
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  36.  26
    Dynamic network rewiring determines temporal regulatory functions in Drosophila_ _melanogaster development processes.Man-Sun Kim, Jeong-Rae Kim & Kwang-Hyun Cho - 2010 - Bioessays 32 (6):505-513.
    The identification of network motifs has been widely considered as a significant step towards uncovering the design principles of biomolecular regulatory networks. To date, time‐invariant networks have been considered. However, such approaches cannot be used to reveal time‐specific biological traits due to the dynamic nature of biological systems, and hence may not be applicable to development, where temporal regulation of gene expression is an indispensable characteristic. We propose a concept of a “temporal sequence of network motifs”, a sequence of network (...)
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  37.  22
    Magnocellular-dorsal pathway and sub-lexical route in developmental dyslexia.Simone Gori, Paolo Cecchini, Anna Bigoni, Massimo Molteni & Andrea Facoetti - 2014 - Frontiers in Human Neuroscience 8:61260.
    Although developmental dyslexia (DD) is frequently associate to a phonological deficit, the underlying neurobiological cause remain undetermined. One prominent hypothesis suggests a specific deficit in magnocellular-dorsal (M-D) pathway. Here we investigated the visual M-D and parvocellular-ventral (P-V) pathway in dyslexic and in chronological age and IQ-matched normally reading children by measuring dynamic (frequency doubling illusion) and static stimuli sensibility, respectively. A specific deficit in M-D task was found. Importantly, the M-D deficit was selectively shown in poor phonological decoders. M-D (...)
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  38.  6
    Genes, genomes, and developmental process.Jebediah Taylor, Staci Meredith Weiss & Peter J. Marshall - 2023 - Behavioral and Brain Sciences 46:e204.
    The view advanced by Madole & Harden falls back on the dogma of a gene as a DNA sequence that codes for a fixed product with an invariant function regardless of temporal and spatial contexts. This outdated perspective entrenches the metaphor of genes as static units of information and glosses over developmental complexities.
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  39.  14
    Staging Embryos: Pregnancy, Temporality and the History of the Carnegie Stages of Embryo Development.Sara DiCaglio - 2017 - Body and Society 23 (2):3-24.
    The founding of the Carnegie Institute’s Department of Embryology in 1913, alongside its systematization of embryo staging, contributed to the mechanization of developmental stages of embryo growth in the early 20th century. For a brief period in the middle of the century, attention to the detailed interrelation between embryo development and time made pre-existing ideas about pregnancy ends less determinative of ideas about that developmental course. However, the turn to the genetic scale led to the disappearance of this (...)
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  40.  22
    Visual Occipito-Temporal N1 Sensitivity to Digits Across Elementary School.Gorka Fraga-González, Sarah V. Di Pietro, Georgette Pleisch, Susanne Walitza, Daniel Brandeis, Iliana I. Karipidis & Silvia Brem - 2022 - Frontiers in Human Neuroscience 16.
    Number processing abilities are important for academic and personal development. The course of initial specialization of ventral occipito-temporal cortex sensitivity to visual number processing is crucial for the acquisition of numeric and arithmetic skills. We examined the visual N1, the electrophysiological correlate of vOTC activation across five time points in kindergarten, middle and end of first grade, second grade, and fifth grade. A combination of cross-sectional and longitudinal EEG data of a total of 62 children at varying familial risk for (...)
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  41.  17
    The object bias and the study of scientific revolutions: Lessons from developmental psychology.Xiang Chen - 2007 - Philosophical Psychology 20 (4):479 – 503.
    I propose a new perspective on the study of scientific revolutions. This is a transformation from an object-only perspective to an ontological perspective that properly treats objects and processes as distinct kinds. I begin my analysis by identifying an object bias in the study of scientific revolutions, where it takes the form of representing scientific revolutions as changes in classification of physical objects. I further explore the origins of this object bias. Findings from developmental psychology indicate that children cannot (...)
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  42.  16
    Developmental depersonalization: The prefrontal cortex and self-functions in autism.Dorit Ben Shalom - 2000 - Consciousness and Cognition 9 (3):457-460.
    The human self model suggests that the construct of self involves functions such as agency, body-centered spatial perspectivity, and long-term unity. Vogeley, Kurthen, Falkai, and Maieret (1999) suggest that agency is subserved by the prefrontal cortex and other association areas of the cortex, spatial perspectivity by the prefrontal cortex and the parietal lobes, and long-term unity by the prefrontal cortex and the temporal lobes and that all of these functions are impaired in schizophrenia. Exploring the connections between the prefrontal cortex (...)
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  43.  19
    Cell Fate and Developmental Regulation Dynamics by Polycomb Proteins and 3D Genome Architecture.Vincent Loubiere, Anne-Marie Martinez & Giacomo Cavalli - 2019 - Bioessays 41 (3):1800222.
    Targeted transitions in chromatin states at thousands of genes are essential drivers of eukaryotic development. Therefore, understanding the in vivo dynamics of epigenetic regulators is crucial for deciphering the mechanisms underpinning cell fate decisions. This review illustrates how, in addition to its cell memory function, the Polycomb group of transcriptional regulators orchestrates temporal, cell and tissue‐specific expression of master genes during development. These highly sophisticated developmental transitions are dependent on the context‐ and tissue‐specific assembly of the different types of (...)
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  44.  19
    Temporal representation and reasoning in non-human animals.Angelica Kaufmann & Arnon Cahen - 2019 - Behavioral and Brain Sciences 42.
    Hoerl & McCormack argue that comparative and developmental psychology teaches us that “neither animals nor infants can think and reason about time.” We argue that the authors neglect to take into account pivotal evidence from ethology that suggests that non-human animals do possess a capacity to represent and reason about time, namely, work done on Sumatran orangutans’ long travel calls.
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  45. Thinking in and about time: A dual systems perspective on temporal cognition.Christoph Hoerl & Teresa McCormack - 2019 - Behavioral and Brain Sciences 42 (e244):1-77.
    We outline a dual systems approach to temporal cognition, which distinguishes between two cognitive systems for dealing with how things unfold over time – a temporal updating system and a temporal reasoning system – of which the former is both phylogenetically and ontogenetically more primitive than the latter, and which are at work alongside each other in adult human cognition. We describe the main features of each of the two systems, the types of behavior the more primitive temporal updating system (...)
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  46.  50
    Language Learning Under Varied Conditions: Neural Indices of Speech Perception in Bilingual Turkish-German Children and in Monolingual Children With Developmental Language Disorder.Tanja Rinker, Yan H. Yu, Monica Wagner & Valerie L. Shafer - 2022 - Frontiers in Human Neuroscience 15.
    Lateral temporal measures of the auditory evoked potential including the T-complex, as well as an earlier negative peak index maturation of auditory/speech processing. Previous studies have shown that these measures distinguish neural processing in children with typical language development from those with disorders and monolingual from bilingual children. In this study, bilingual children with Turkish as L1 and German as L2 were compared with monolingual German-speaking children with developmental language disorder and monolingual German-speaking children with TD in order to (...)
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  47.  32
    Drugs as instruments from a developmental child and adolescent psychiatric perspective.Tobias Banaschewski, Dorothea Blomeyer, Arlette F. Buchmann, Luise Poustka, Aribert Rothenberger & Manfred Laucht - 2011 - Behavioral and Brain Sciences 34 (6):312-313.
    Developmental, epidemiological, and neurobiological studies indicate that the adaptive and maladaptive functions, as well as immediate and long-term consequences of drug use, may vary by age. Early initiation seems to be associated with a reduced ability to use drugs purposely in a temporally stable, non-addictive manner. Prevention strategies should consider social environmental factors and aim to delay age at initiation.
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  48. Episodic Memory as Re-Experiential Memory: Kantian, Developmental, and Neuroscientific Currents.James Russell - 2014 - Review of Philosophy and Psychology 5 (3):391-411.
    Recent work on the early development of episodic memory in my laboratory has been fuelled by the following assumption: if episodic memory is re-experiential memory then Kant’s analysis of the spatiotemporal nature of experience should constrain and positively influence theories of episodic memory development. The idea is that re-experiential memory will “inherit” these spatiotemporal features. On the basis of this assumption, Russell and Hanna (Mind and Language 27(1):29–54, 2012) proposed that (a) the spatial element of re-experience is egocentric and (b) (...)
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  49. Endurance, Dualism, Temporal Passage, and Intuitions.Jiri Benovsky - 2016 - Review of Philosophy and Psychology 7 (4):851-862.
    Endurantism, as opposed to perdurantism, is supposed to be the intuitive view. But the ‘endurantist intuition’ – roughly, that objects persist through time by being numerically identical and wholly located at all times at which they exist – is behind more than just endurantism. Indeed, it plays an important role in the motivation of some theories about the passage of time, and some theories about the nature of the subject. As we shall see, the endurantist intuition is often taken in (...)
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  50.  41
    Is there evidence for a noisy computation deficit in developmental dyslexia?Yufei Tan, Valérie Chanoine, Eddy Cavalli, Jean-Luc Anton & Johannes C. Ziegler - 2022 - Frontiers in Human Neuroscience 16:919465.
    The noisy computation hypothesis of developmental dyslexia (DD) is particularly appealing because it can explain deficits across a variety of domains, such as temporal, auditory, phonological, visual and attentional processes. A key prediction is that noisy computations lead to more variable and less stable word representations. A way to test this hypothesis is through repetition of words, that is, when there is noise in the system, the neural signature of repeated stimuli should be more variable. The hypothesis was tested (...)
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