Literature DB >> 15036425

Clinical disorders of brain plasticity.

Michael V Johnston1.   

Abstract

Clinical disorders of brain plasticity are common in the practice of child neurology. Children have an enhanced capacity for brain plasticity compared to adults as demonstrated by their superior ability to learn a second language or their capacity to recover from brain injuries or radical surgery such as hemispherectomy for epilepsy. Basic mechanisms that support plasticity during development include persistence of neurogenesis in some parts of the brain, elimination of neurons through apoptosis or programmed cell death, postnatal proliferation and pruning of synapses, and activity-dependent refinement of neuronal connections. Brain plasticity in children can be divided into four types: adaptive plasticity that enhances skill development or recovery from brain injury; impaired plasticity associated with cognitive impairment; excessive plasticity leading to maladaptive brain circuits; and plasticity that becomes the brain's 'Achilles' Heel' because makes it vulnerable to injury. A broad group of pediatric neurologic disorders can be understood in terms of their impact on fundamental mechanisms for brain plasticity. These include neurofibromatosis, tuberous sclerosis, Fragile X syndrome, other inherited forms of mental retardation, cretinism, Coffin-Lowry syndrome, lead poisoning, Rett syndrome, epilepsy, hypoxic-ischemic encephalopathy and cerebral palsy.

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Year:  2004        PMID: 15036425     DOI: 10.1016/S0387-7604(03)00102-5

Source DB:  PubMed          Journal:  Brain Dev        ISSN: 0387-7604            Impact factor:   1.961


  68 in total

Review 1.  Zinc and neurogenesis: making new neurons from development to adulthood.

Authors:  Cathy W Levenson; Deborah Morris
Journal:  Adv Nutr       Date:  2011-03-10       Impact factor: 8.701

Review 2.  Guidance molecules in axon pruning and cell death.

Authors:  Pierre Vanderhaeghen; Hwai-Jong Cheng
Journal:  Cold Spring Harb Perspect Biol       Date:  2010-04-21       Impact factor: 10.005

Review 3.  Physical exercise, neuroplasticity, spatial learning and memory.

Authors:  Ricardo C Cassilhas; Sergio Tufik; Marco Túlio de Mello
Journal:  Cell Mol Life Sci       Date:  2015-12-08       Impact factor: 9.261

4.  Chronic stress and a cyclic regimen of estradiol administration separately facilitate spatial memory: relationship with hippocampal CA1 spine density and dendritic complexity.

Authors:  Cheryl D Conrad; Katie J McLaughlin; Thu N Huynh; Mariam El-Ashmawy; Michelle Sparks
Journal:  Behav Neurosci       Date:  2011-10-17       Impact factor: 1.912

Review 5.  Is being plastic fantastic? Mechanisms of altered plasticity after developmental traumatic brain injury.

Authors:  Christopher C Giza; Mayumi L Prins
Journal:  Dev Neurosci       Date:  2006       Impact factor: 2.984

6.  Neuroplasticity in children.

Authors:  Nandini Mundkur
Journal:  Indian J Pediatr       Date:  2005-10       Impact factor: 1.967

7.  Genetic program of neuronal differentiation and growth induced by specific activation of NMDA receptors.

Authors:  Cristina A Ghiani; Luis Beltran-Parrazal; Daniel M Sforza; Jemily S Malvar; Akop Seksenyan; Ruth Cole; Desmond J Smith; Andrew Charles; Pedro A Ferchmin; Jean de Vellis
Journal:  Neurochem Res       Date:  2006-12-27       Impact factor: 3.996

8.  Predictors of neurodevelopmental outcome for preterm infants with brain injury: MRI, medical and environmental factors.

Authors:  Lina Kurdahi Badr; Susan Bookheimer; Isabell Purdy; Mary Deeb
Journal:  Early Hum Dev       Date:  2009-01-11       Impact factor: 2.079

9.  Effect of the environment on the dendritic morphology of the rat auditory cortex.

Authors:  Mitali Bose; Pablo Muñoz-Llancao; Swagata Roychowdhury; Justin A Nichols; Vikram Jakkamsetti; Benjamin Porter; Rajasekhar Byrapureddy; Humberto Salgado; Michael P Kilgard; Francisco Aboitiz; Alexies Dagnino-Subiabre; Marco Atzori
Journal:  Synapse       Date:  2010-02       Impact factor: 2.562

Review 10.  Hitting a moving target: Basic mechanisms of recovery from acquired developmental brain injury.

Authors:  Christopher C Giza; Bryan Kolb; Neil G Harris; Robert F Asarnow; Mayumi L Prins
Journal:  Dev Neurorehabil       Date:  2009       Impact factor: 2.308

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