Synaptic Neurobiology
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browse →- 01
Molecular pathways of major depressive disorder converge on the synapse.
neurobiology. In particular, considering the pattern of synaptic activity as the closest
- 02
A de novo convergence of autism genetics and molecular neuroscience
synaptic function. These pathways and genes significantly expand the neurobiological
- 03
Sulfated glycoprotein 2: new relationships of this multifunctional protein to neurodegeneration.
neurobiology of SGP-2 encompasses the subjects of cell death, synaptic
- 04
Neuroplasticity in cognitive and psychological mechanisms of depression: an integrative model.
synaptic loss in the medial prefrontal cortex (mPFC) and hippocampus. The current review presents a novel integrative model of neuroplasticity as a multi-domain neurobiological
- 05
Auditory processing deficits in autism spectrum disorder: mechanisms, animal models, and therapeutic directions.
neurobiological mechanisms underlying these deficits, including structural and functional disruptions in the auditory cortex, imbalances in excitatory and inhibitory signaling, and synaptic
- 06
Glycogen synthase kinase-3 signaling in Alzheimer's disease.
synaptic function. The present review summarizes the current understanding of the GSK3-β neurobiology
- 07
Targeting BDNF signaling by natural products: Novel synaptic repair therapeutics for neurodegeneration and behavior disorders.
neurobiological deficits. Brain derived neurotrophic factor (BDNF) is an extensively studied neurotrophin. BDNF is essential for neuronal genesis, differentiation, survival, growth, plasticity, synaptic
- 08
Neurobiology of alpha-synuclein.
Alpha-synuclein is an abundant neuronal protein that has been
- 09
Bidirectional regulation by "star forces": Ionotropic astrocyte's optical stimulation suppresses synaptic plasticity, metabotropic one strikes back.
synaptic plasticity, metabotropic one strikes back. Maltsev A(1), Roshchin M(1), Bezprozvanny I(2)(3), Smirnov I(1), Vlasova O(2), Balaban P(1), Borodinova A(1). Author information
- 10
The neurobiological foundation of effective repetitive transcranial magnetic brain stimulation in Alzheimer's disease.
neurobiological and systems neurophysiological levels. By engaging distinct pre- and postsynaptic structures within the stimulated neural network, it directly or indirectly influences various cellular and molecular components. In AD, rTMS
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