Study guide with Pediatric Neuropsychology and Neurodevelopment: the best scientific articles summarized

Study guide with articles for Pediatric Neuropsychology and Neurodevelopment

Summaries and study assistance with articles for Pediatric Neuropsychology and Neurodevelopment

  • For 35+ summaries with articles for Pediatric Neuropsychology and Neurodevelopment, see the supporting content of this study guide

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Supporting content I (full)
Article summary with Malleability, plasticity, and individuality: How children learn and develop in context by Cantor et al. - 2018
Article summary with Annual Research Review: DNA methylation as a mediator in the association between risk exposure and child and adolescent psychopathology by Barker et al. - 2018
Article summary with Hormonal changes associated with intra-uterine growth restriction: Impact on the developing brain and future neurodevelopment by Baud & Berkane - 2019
Article summary with Genetic control of postnatal human brain growth by Van Dyck & Morrow - 2017
Article summary with Early nutrition influences developmental myelination and cognition in infants and young children by Deoni et al. - 2018
Article summary with Developmental origins of the human hypothalamic-pituitary-adrenal axis by Howland et al. - 2017
Article summary with Concern for others in the first year of life: Theory, evidence, and avenues for research by Davidov et al. - 2013
Artikelsamenvatting bij The adaptive human parental brain: implications for children's social development van Feldman - 2015
Article summary with Development of visual-spatial attention by Johnson - 2019
Article summary with Making sense of the world: Infant learning from a predictive processing perspective by Köster et al. - 2020
Article summary with The mechanisms and moderators of “Fade-Out”: Towards understanding why the skills of early childhood program participants converge over time with the skills of other children by Abenavoli - 2019
Article summary with Linking language and cognition in infancy by Perszyk & Waxman - 2018
Article summary with The role of the motor system in action understanding and communication: Evidence from human infants and non-primates by Salo et al. - 2018
Article summary with A systematic review of targeted social and emotional learning interventions in early childhood education and care settings by Blewitt et al. - 2019
Article summary with Temperamental vulnerability to emotion dysregulation and risk for mental and physical health challenges by Calkins & Dollar - 2019
Article summary with A systematic review of reviews of the outcome of noninstitutional child maltreatment by Carr et al. - 2020
Article summary with Understanding the development of face and emotion processing under a predictive processing framework by Pereira et al. - 2019
Article summary with Neural substrates of early executive function development by Fiske & Holmboe - 2019
Article summar with The neurodevelopment of autism from infancy through toddlerhood by Girault & Piven - 2020
Article summary with Executive function in the first three years of life: precursors, predictors and patterns by Hendry et al. - 2016
Article summary with Early life stress and brain function: Activity and connectivity associated with processing emotion and reward by Herzberg & Gunnar - 2020
Article summary with Environmental toxicology: Sensitive periods of development and neurodevelopmental disorders by Heyer & Meredith - 2017
Article summary with Associations between screen-based media use and brain white matter integrity in preschool-aged children by Hutton et al. - 2019
Article summary with Autism as an adaptive common variant pathway for human brain development by Johnson - 2017
Article summary with Neural histology and neurogenesis of the human fetal and infant brain by Kostovic et al. - 2019

Article summary with Neural histology and neurogenesis of the human fetal and infant brain by Kostovic et al. - 2019


What general principles are essential for understanding the developmental dynamics of fetal and baby brain?

  • Developmental events occur in specific architectonic compartments, such as embryonic and fetal zones. 
  • The compartments are transient, but can be visualized in historical sections and MR images.
  • To be able to understand the development of functional connectivity, the nature and timing of development of basic connectivity elements and their molecular properties need to be analyzed. 

What are important events in brain development in the early fetal period (eight to fifteen postconceptional weeks)?

  • There are processes of proliferation, migration, and cell aggregation. 
  • All embryonic brain divisions and their major subdivisions are clearly visible on coronal sections at the end of the embryonic period.
  • The formation of the cortical plate is an important cytoarchitectonic event. After its formation, the cerebral wall of the lateral neocortex consists of the marginal zone, the cortical plate, the presubplate, the intermediate zone, the subventricular zone, and the ventricular zone. 
  • According to the radial unit hypothesis, the cortical neurons are generated in proliferative units of the ventricular zone, migrate along radial glial guides and settle in vertical ontogenetic columns within the cortical plate. 
  • With regards to the growth of early afferents to the human cerebral cortex, thalamocortical fibers pass through the cerebral stalk, cross the diencephalo-telencephalic and subpallio-pallial border and fan out within the intermediate zone on their way to the cortical anlage. Basal forebrain fibers reach the neocortical cerebral wall through the external capsule. Corticospinal and corticopontine pathways are located medial to thalamic radiation and are partily intermingled with it. 
  • The first synapses in the neocortical anlage appear. 
  • There is a trilaminar pattern of organization consisting of the cortical plate, the intermediate zone, and periventricular proliferative zone. 
  • Changes in cell aggregation (cytoarchitectonics), proliferation and migration, neuronal and dendritic differentiation, and axonal growth.

What are important events in brain development in the midfetal period (fifteen to twenty three postconceptional weeks)?

  • Four histogenetic-neurogenetic events are most important during this period: neuronal aggregation and cytoarchitectural development, axonal outgrowth and ingrowth, dendritic differentiation, and molecular specification.
  • The formation of synapses continues in the subplate and marginal zone. 
  • Molecular specification of cerebral cortex can be divided in two processes, namely the areal specification and the specification of subsets of cortical neurons. 
  • Major protection and commissural pathways are still growing (think of corticostriatal, corticospinal, thalamocortical, corticopontine, and corpus callosum).
  • Associative pathways are not well developed, except for associative fibers connecting frontal cortex with cingulate neocortical portion of the limbic lobe.
  • The presence of synapses in the subplate and the dense distribution of synapses in the marginal zone indicate circuitry development.

What are important events in brain development in the late fetal period (twenty four to thirty four postconceptional weeks)?

  • Three histogenic and neurogenetic processes are most important during the beginning of the late fetal period: ingrowth of axons, synaptogenesis, and dendritic differentiation of pyramidal neurons.
  • Rapid development of primary sulci and gyri. The central, precentral, and postcentral sulcus delineate the developing precentral and postcentral gyrus. Superior and inferior temporal sulcus appear in the temporal lobe. Superior and inferior frontal sulci mark the position of future superior, medial, and inferior frontal gyrus in the frontal lobe.
  • On the medial hemispheric surface, there is deepening of the parieto-occipital and calcarine fissure and the appearance of the cingulate sulcus.
  • Gradual decrease in the intensity of neuronal proliferation in ventricular and subventricular zone.
  • At the end of the late fetal period secondary sulci develop rapidly, there is an increase in the volume of the cerebral wall, and there is a decline in proliferative zones.
  • During the end of the late fetal period, the most intensive histogenetic events are neuronal aggregation, cytoarchitectonic changes in laminar pattern, axonal ingrowth and outgrowth, dendritic differentiation, and synaptogenesis in the cortical plate.

What are important events in brain development in the neonatal period?

  • The main event is the formation of tertiary gyri.
  • There are advances in neuronal aggregation and cytoarchitecture, with parallel establishment of tangential and radial patterns. There is gradual resolution of layer IV in the premotor cortex and the disappearance of this layer in the motor cortex, resolution of the voluminous subplate and its transformation into a characteristic thin band at the interface between layer VI and the gyral white matter, and an increase in size of pyramidal cell bodies.
  • There is growth of short corticocortical fibers.
  • Dendritic differentiation.
  • Synaptogenesis.
  • Myelination and increase in compactness of axonal pathways.
  • Cell death and axonal pruning.
  • The proliferation and migration of neurons have ceased, while the proliferation of astrocytes and oligodendrocytes is continuing.

What are important events in brain development in early infancy?

There is a rapid and massive increase in the total brain volume during the first year. The elaboration of cortical gyrification continues. Some histogenetic processes rapidly increase in intensity (such as synaptogenesis and dendritic differentiation), while others follow a steady pace (such as cytoarchitectonig development, neurochemical maturation, and myelination). There is a decline in the growth of axonal pathways.

What are important events in brain development in late infancy?

The cerebral hemispheres continue to grow. The most intense histogenetic and neurogenetic events during this period are morphological differentiation of neurons and dendrites, synaptogenesis, myelination, and changes in cortical cytoarchitectonics.

Article summary with Premature birth and developmental programming: Mechanisms of resilience and vulnerability by Lammertink et al. - 2021
Article summary with The relationships between screen use and health indicators among infants, toddlers, and preschoolers: A meta-analysis and systematic review by Li et al. - 2020
Article summary with Promoting self-regulation in young children: The role of parenting interventions by Morawska et al. - 2019
Article summary with Walk like me, talk like me. The connection between mirror neurons and autism spectrum disorder by Saffin & Tohid - 2020
Article summary with Effects of parenting interventions for at-risk parents with infants: a systematic review and meta-analyses by Rayce et al. - 2017
Article summary with Self-regulation in preschool and early elementary classrooms: Why it is important and how to promote it by Savina - 2021
Article summary with Institutionalisation and deinstitutionalisation of children 1: a systematic and integrative review of evidence regarding effects on development by Van IJzendoorn et al. - 2020
Artikelsamenvatting bij Annual Research Review: Umbrella synthesis of meta‐analyses on child maltreatment antecedents and interventions: differential susceptibility perspective on risk and resilience van Van IJzendoorn - 2020
Article summary with Annual Research Review: Umbrella synthesis of meta-analyses on child maltreatment antecedents and interventions: differential susceptibility perspective on risk and resilience by Van IJzendoorn et al. - 2020
Article summary with Towards an integrated account of the development of self-regulation from a neurocognitive perspective: A framework for current and future longitudinal multi-modal investigations by Vink et al. - 2020
Article summary with Graph theoretical modeling of baby brain networks by Zhao et al. - 2019
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