Examples of using Synaptic plasticity in English and their translations into Russian
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H-index 25, University of Heidelberg, Germany,topic" Synaptic plasticity.
It plays a key role in synaptic plasticity and so in learning.
NMDARs are glutamatergic receptors that play an important role in synaptic plasticity.
The role of synaptic plasticity genes in individual differences in working memory.
Studies show that the NMDA receptor is involved in regulating synaptic plasticity and memory.
Because of its role in synaptic plasticity, glutamate is involved in cognitive functions such as learning and memory in the brain.
Some representatives of GFLs family take part not only in the development of synapses, but also in synaptic plasticity.
Furthermore, BDNF takes part in the formation of synaptic plasticity and in such processes as learning and memory 4, 5.
CDK5 regulates the amount of NR2B-containing NMDA receptors on the synaptic membrane,thus affecting synaptic plasticity.
This variability can be associated with spontaneous synaptic plasticity changes due to the presence of cyclic connections in the neural network.
Synaptic plasticity effects have previously been studied in the networks of neuronal cultures with homogeneous architecture of synaptic network 9, 10.
To see related articles please see the pages on Synaptogenesis, Synaptic plasticity, Cell adhesion molecule.
To induce synaptic plasticity, high frequency tetanic stimulation by two groups of electrodes located in the area of pre- and postsynaptic neurons was applied.
NCAM has been implicated as having arole in cell-cell adhesion, neurite outgrowth, synaptic plasticity, and learning and memory.
This kind of synaptic plasticity, independent of NMDAR activation, exists also in other areas of the CNS, which indicates the importance of such non-classical signaling.
By increasing the activity of these two neurotransmitters,you can improve synaptic plasticity and even improve communication between the two hemispheres of your brain.
Keywords: microelectrode array; electrical stimulation of neurons in vitro; hippocampal culture;functional connectivity of neural networks; synaptic plasticity.
Keywords: neural networks in vitro; microfluidics;neuroengineering; synaptic plasticity; spike timing dependent plasticity; STDP; information processing by the brain.
Dissociated brain cell cultures on microelectrode arrays are widely used to study fundamental mechanisms of information processing and synaptic plasticity.
To study synaptic plasticity, we applied tetanic stimulation with a 10 ms delay for two groups of electrodes in chambers A and B in accordance with plasticity induction protocol STDP 23, 24.
According to a recent study, tianeptine prevents andreverses stress-induced neurological damage leading to neuronal survival and synaptic plasticity promoting.
Implantation of neural progenitor cells in the hydrogel of the high-molecular weight HA into the injury cavity 7 days after TBI had the protective effect by restoring the synaptic plasticity(cortex, hippocampus) underlying the motor functions, learning and memory processes, in contrast to the transplantation of the medium- and low-molecular weight HA hydrogel with engrafted neural progenitor cells.
PNNs play a critical role in the closure of the childhood critical period, andtheir digestion can cause restored critical period-like synaptic plasticity in the adult brain.
Current evidence suggests that tianeptine acts to prevent and even reverse stress-induced neural damage,promoting both neuronal survival and synaptic plasticity.
The studies revealed that the neurotrophic factors GDNF and BDNF can stimulate promotor activity of GluR2 subunits of AMPA receptors, playing a significant role in synaptogenesis and the formation of neural networks,as well as in synaptic plasticity, including long-term potentiation(LTP) and long-term depression(LTD)[107, 108, 109], through neuron suppressing element(NRSE) 110.
It involved low-frequency control stimulation to evoke and evaluate the network responses andhigh-frequency tetanic stimulation to induce synaptic plasticity.
VGF or VGF nerve growth factor inducible is a secreted protein and neuropeptide precursor that may play a role in regulating energy homeostasis,metabolism and synaptic plasticity.
Dissociated neural cultures are used as convenient experimental models to study basic mechanisms of brain signal processing, memory,learning and synaptic plasticity in neuronal networks.
It follows from the evaluation of the stability of the obtained solutions that cytoskeleton degradation caused by radiation orchemical exposure can lead to disorders of intracellular signaling and synaptic plasticity.
Dissociated neural cultures grown on microelectrode arrays are widely used as convenient models to study the fundamental mechanisms of brain signal processing, memory,learning and synaptic plasticity in neuronal networks 1-4.