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Calcium influx through voltage-dependent Ca2+ channels is critical for many neuronal processes required for learning and memory.
This argument is supported by the observation that many neuronal processes are longer than the distance between the corresponding cell bodies, suggesting that the connection can be made.
Calcium is an important ion in the regulation of many neuronal processes, including working memory, synaptic plasticity and neuronal motility [ 75], and manganese dysregulation has been linked to neurological disorders [ 76].
The NF-κB family of transcription factors plays a central role in many neuronal processes, including synaptic activity and memory formation, and members of this family have been implicated in neurodegenerative disorders.
Calcium homeostasis is important for the regulation of many neuronal processes, including working memory, synaptic plasticity, and neuronal motility, and manganese dysregulation has been linked to Parkinsonism (MIM # 168600), Alzheimer disease (MIM # 104300), and disordered memory.
Even though epigenetic modifications are the hallmark of the differentiation period, the emerging consensus is that the brain is particularly sensitive to these processes during the entire life span, when DNA silencing/activation and/or chromatin remodeling are involved in many neuronal processes and complex behaviors (Champagne 2012).
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DOI: http://dx.doi.org/10.7554/eLife.06358.002 Signaling via G protein coupled receptors (GPCR) mediates neurotransmitter actions and shapes many essential neuronal processes including vision, motor control, and cognition (Wettschureck and Offermanns, 2005).
Although previously considered an immune-privileged site, it is now clear that the immune system plays an integral role in many fundamental neuronal processes, including long-term potentiation (LTP) (1,2), synaptic plasticity (3), and neurogenesis (4), that are critical to learning and memory.
We found viral antigen in many neuronal cell bodies and processes found in this area demonstrating the association of virus with brain pathology.
Many gene sets involved in neuronal processes were up-regulated in the α9−/− animals.
Furthermore, DOC levels appear to be responsible for the regulation of networks of genes involved in the neuronal processes that underlie many aspects of brain function and likely the correlated ethanol phenotypes.
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multiple neuronal processes
diverse neuronal processes
many interactive processes
several neuronal processes
many neuronal connections
many neuronal models
many neuronal genes
many neuronal types
many neuronal pathways
many neuronal functions
many neuronal dysfunctions
many neuronal projections
many neuronal structures
many neuronal classes
many physiological processes
many cellular processes
many neuronal progenitors
many neuronal systems
many neuronal substrates
many neuronal disorders
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