Structural plasticity and tianeptine: cellular and molecular targets.
about
The temporal dynamics model of emotional memory processing: a synthesis on the neurobiological basis of stress-induced amnesia, flashbulb and traumatic memories, and the Yerkes-Dodson lawThe neurobiological properties of tianeptine (Stablon): from monoamine hypothesis to glutamatergic modulationPotential therapeutic interest of adenosine A2A receptors in psychiatric disorders.Distinctive PSA-NCAM and NCAM hallmarks in glutamate-induced dendritic atrophy and synaptic disassemblyNeurobiology of mood, anxiety, and emotions as revealed by studies of a unique antidepressant: tianeptineStress-induced changes of hippocampal NMDA receptors: modulation by duloxetine treatmentSustained hippocampal chromatin regulation in a mouse model of depression and antidepressant actionNeurosteroids reduce social isolation-induced behavioral deficits: a proposed link with neurosteroid-mediated upregulation of BDNF expression.Neurogenesis-independent antidepressant-like effects on behavior and stress axis response of a dual orexin receptor antagonist in a rodent model of depression.Bipolar and major depressive disorder: neuroimaging the developmental-degenerative divide.Amygdala volume in depressed patients with bipolar disorder assessed using high resolution 3T MRI: the impact of medication.Open questions in current models of antidepressant action.Association of anxiety and depression with microtubule-associated protein 2- and synaptopodin-immunolabeled dendrite and spine densities in hippocampal CA3 of older humans.Chronic fluoxetine treatment in middle-aged rats induces changes in the expression of plasticity-related molecules and in neurogenesis.Chronic stress-induced hippocampal dendritic retraction requires CA3 NMDA receptorsHabenula volume in bipolar disorder and major depressive disorder: a high-resolution magnetic resonance imaging study.What is the functional significance of chronic stress-induced CA3 dendritic retraction within the hippocampus?Adult hippocampal neurogenesis in natural populations of mammals.Restraint Stress Intensifies Interstitial K(+) Accumulation during Severe HypoxiaA pathophysiological paradigm for the therapy of psychiatric disease.The same antidepressant elicits contrasting patterns of synaptic changes in the amygdala vs hippocampusCortico-amygdala circuits: role in the conditioned stress response.Metabolic mechanisms of stress hyperglycemia.The As and Ds of stress: metabolic, morphological and behavioral consequences.The neurogenesis hypothesis of affective and anxiety disorders: are we mistaking the scaffolding for the building?Impact of the brain-derived neurotrophic factor Val66Met polymorphism on levels of hippocampal N-acetyl-aspartate assessed by magnetic resonance spectroscopic imaging at 3 TeslaAtrophy of pyramidal neurons and increased stress-induced glutamate levels in CA3 following chronic suppression of adult neurogenesisTianeptine: an antidepressant with memory-protective properties.The interaction between psychological health and traumatic brain injury: a neuroscience perspective.Depression and treatment response: dynamic interplay of signaling pathways and altered neural processes.Hippocampal neurogenesis: a biomarker for depression or antidepressant effects? Methodological considerations and perspectives for future research.Expression of neuronal nitric oxide synthase in the hippocampal formation in affective disorders.Oxotremorine treatment restores hippocampal neurogenesis and ameliorates depression-like behaviour in chronically stressed rats.Beneficial Effects of Tianeptine on Hippocampus-Dependent Long-Term Memory and Stress-Induced Alterations of Brain Structure and Function.
P2860
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P2860
Structural plasticity and tianeptine: cellular and molecular targets.
description
2002 nî lūn-bûn
@nan
2002年の論文
@ja
2002年論文
@yue
2002年論文
@zh-hant
2002年論文
@zh-hk
2002年論文
@zh-mo
2002年論文
@zh-tw
2002年论文
@wuu
2002年论文
@zh
2002年论文
@zh-cn
name
Structural plasticity and tianeptine: cellular and molecular targets.
@ast
Structural plasticity and tianeptine: cellular and molecular targets.
@en
type
label
Structural plasticity and tianeptine: cellular and molecular targets.
@ast
Structural plasticity and tianeptine: cellular and molecular targets.
@en
prefLabel
Structural plasticity and tianeptine: cellular and molecular targets.
@ast
Structural plasticity and tianeptine: cellular and molecular targets.
@en
P2093
P1433
P1476
Structural plasticity and tianeptine: cellular and molecular targets.
@en
P2093
Magarinos AM
P304
P356
10.1016/S0924-9338(02)00650-8
P407
P478
17 Suppl 3
P577
2002-07-01T00:00:00Z