Molecular Mechanisms of Synaptic Plasticity: Dynamic Changes in Neurons Functions
| Molecular Mechanisms of Synaptic Plasticity: Dynamic Changes in Neurons Functions |
| Pubbl/distr/stampa | MDPI - Multidisciplinary Digital Publishing Institute, 2023 |
| Descrizione fisica | 1 online resource (290 p.) |
| Soggetto topico |
Biology, life sciences
Research & information: general |
| Soggetto non controllato |
Alzheimer's disease (AD)
AM251 amygdala autophagy brain connectivity brain development brain disorders brain networks caspase-3 Circular Hole Board cognition computational neuroscience connectivity D2 receptors dendritic spines dopamine dopamine transporter dopamine volume transmission dorsal striatum dystonia endocannabinoid system ErbB receptors GABA glia glucocorticoids glutamate Glutamate gut-brain axis high contrast hippocampus human neurons immunoproteasome induced neural stem cells inflammation inhibition learning and memory long-term depression long-term potentiation long-term potentiation (LTP) LTD LTP mice midbrain dopamine neurons mTOR multiple sclerosis n/a neuregulins neuro-inflammation neurodevelopmental diseases neuronal cytoarchitecture neuroplasticity neurovascular unit NMDA receptors noradrenaline Parkinson's disease PINK1 proteasome regulatory T cells resting state functional MRI (rs-fMRI) reticular formation Schaffer collateral-CA1 synapses schizophrenia serotonin (5-HT) SNARE proteins spatial learning striatum synapse synapses synaptic plasticity synaptic scaling synaptic vesicles systems biology T-cells transmission electron microscopy tripartite synapse tyrosine hydroxylase |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Altri titoli varianti | Molecular Mechanisms of Synaptic Plasticity |
| Record Nr. | UNINA-9911053221003321 |
| MDPI - Multidisciplinary Digital Publishing Institute, 2023 | ||
| Lo trovi qui: Univ. Federico II | ||
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Silicon Nanodevices
| Silicon Nanodevices |
| Autore | Radamson Henry H |
| Pubbl/distr/stampa | Basel, : MDPI - Multidisciplinary Digital Publishing Institute, 2022 |
| Descrizione fisica | 1 online resource (238 p.) |
| Soggetto topico | Technology: general issues |
| Soggetto non controllato |
anode
anti-phase boundaries (APBs) arsenate arsenite atomic layer etching (ALE) band-to-band tunneling charge-trap synaptic transistor CVD dark current detectors digital etch doping effect dual-selective wet etching epitaxial grown epitaxial growth Fin etching FinFET germanium GeSn GOI heteroepitaxy HfO2/Si0.7Ge0.3 gate stack HNO3 concentration III-V on Si in-plane nanowire interface state density lasers lithium-ion batteries long-term potentiation (LTP) n/a nanowire-based quantum devices neural network neuromorphic system organotrialkoxysilane ozone oxidation p+-Ge0.8Si0.2/Ge stack passivation pattern recognition photodetectors prussian blue nanoparticles quantum computing quantum dot quasi-atomic-layer etching (q-ALE) responsivity selective epitaxial growth (SEG) selective wet etching short-term potentiation (STP) Si-cap Si-MOS silica beads silicon site-controlled spin qubits stacked SiGe/Si threading dislocation densities (TDDs) transistors vertical gate-all-around (vGAA) vertical Gate-all-around (vGAA) water decontamination yolk−shell structure |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Record Nr. | UNINA-9910595076903321 |
Radamson Henry H
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| Basel, : MDPI - Multidisciplinary Digital Publishing Institute, 2022 | ||
| Lo trovi qui: Univ. Federico II | ||
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