
Motor behaviors of some species, such as the rat and the human baby, are quite immature at birth. Here we review recent data on some of the mechanisms underlying the postnatal maturation of posture in the rat, in particular the development of pathways descending from the brain stem and projecting onto the lumbar enlargement of the spinal cord. A short‐lasting depletion in serotonin affects both posture and the excitability of motoneurons. Here we try to extrapolate to human development and suggest that the abnormalities in motor control observed in childhood—e.g, deficits in motor coordination—might have their roots in the prenatal period, in particular serotonin depletion due to exposure to several environmental and toxicological factors during pregnancy.
Motor Neurons, Serotonin, Movement, Infant, Newborn, Infant, Neurosciences. Biological psychiatry. Neuropsychiatry, Cell Differentiation, Efferent Pathways, Article, Rats, Spinal Cord, Animals, Humans, Raphe Nuclei, Postural Balance, RC321-571, Brain Stem
Motor Neurons, Serotonin, Movement, Infant, Newborn, Infant, Neurosciences. Biological psychiatry. Neuropsychiatry, Cell Differentiation, Efferent Pathways, Article, Rats, Spinal Cord, Animals, Humans, Raphe Nuclei, Postural Balance, RC321-571, Brain Stem
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| influence This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically). | Top 10% | |
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