Time After Childhood And Maturation
DOI: The expressions of suites of genes, particularly during development or life history transitions, probably underlie the fundamental plasticity of an organism. Plasticity in developmental programming has evolved in order to provide the best chances of survival and reproductive success to organisms under changing environments. Environmental conditions that are experienced in early life can profoundly influence human biology, child growth and maturation, and long-term health and longevity.
The window of developmental plasticity extends from conception to early childhood, and even beyond to the transition from juvenility to adolescence, and could be transmitted transgenerationally. It involves epigenetic responses to environmental changes, which exert their effects during life history phase transitions.
Keywords: child growth; epigenetics; evolution; plasticity.]
Time After Childhood And Maturation - consider, that
What is an example of maturation? The definition of maturation is the process of growing up. An example of maturation is becoming an adult with a career and other responsibilities. You may ask, What is maturation how is it different than development? This is an example of growth because it involves her getting physically taller and is quantifiable two inches. On the other hand, maturation is the physical, intellectual, or emotional process of development.Time After Childhood And Maturation Video
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DOI: We found age-related increases of VFm in most regions, showing ongoing myelination in vivo during late childhood and adolescence for the first time. No relationship was observed between qihMT and age, suggesting myelin volume increases are driven by increased water content. Age-related increases were observed for NDI, suggesting axonal packing is also occurring during this time. FA increased and MD decreased with age in most regions. Gender effects were present in the left cingulum for FA, and an age-by-gender interaction was found for MD in the left uncinate fasciculus. These findings suggest that FA and MD remain useful markers of gender-related processes, and gender differences are likely driven by factors other than myelin. We conclude that white matter development during late childhood and adolescence is driven by a combination of axonal packing and myelin volume increases. Keywords: brain development; diffusion tensor imaging; magnetic resonance imaging; myelin sheath; white matter. Time After Childhood And Maturation.COMMENTS2 comments (view all)
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