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PDF] GIN & TONIC: Graph Infused Networks with Topological Neurons for  Inference & Classification | Semantic Scholar
PDF] GIN & TONIC: Graph Infused Networks with Topological Neurons for Inference & Classification | Semantic Scholar

Tonic Firing Rate Controls Dendritic Ca2+ Signaling and Synaptic Gain in  Substantia Nigra Dopamine Neurons | Journal of Neuroscience
Tonic Firing Rate Controls Dendritic Ca2+ Signaling and Synaptic Gain in Substantia Nigra Dopamine Neurons | Journal of Neuroscience

Frontiers | Dysregulation of Midbrain Dopamine System and the  Pathophysiology of Schizophrenia
Frontiers | Dysregulation of Midbrain Dopamine System and the Pathophysiology of Schizophrenia

Specific Ion Channels Control Sensory Gain, Sensitivity, and Kinetics in a  Tonic Thermonociceptor - ScienceDirect
Specific Ion Channels Control Sensory Gain, Sensitivity, and Kinetics in a Tonic Thermonociceptor - ScienceDirect

Using Neural Networks to Synthesize Complex Data Relationships, with AI  Synthesizer | Blog | Tonic.a
Using Neural Networks to Synthesize Complex Data Relationships, with AI Synthesizer | Blog | Tonic.a

Tonic inhibition in dentate gyrus impairs long-term potentiation and memory  in an Alzheimer's disease model | Nature Communications
Tonic inhibition in dentate gyrus impairs long-term potentiation and memory in an Alzheimer's disease model | Nature Communications

Frontiers | Neural Burst Firing and Its Roles in Mental and Neurological  Disorders
Frontiers | Neural Burst Firing and Its Roles in Mental and Neurological Disorders

Phasic and tonic neuron ensemble codes for stimulus-environment  conjunctions in the lateral entorhinal cortex | eLife
Phasic and tonic neuron ensemble codes for stimulus-environment conjunctions in the lateral entorhinal cortex | eLife

Spinal gastrin releasing peptide receptor expressing interneurons are  controlled by local phasic and tonic inhibition | Scientific Reports
Spinal gastrin releasing peptide receptor expressing interneurons are controlled by local phasic and tonic inhibition | Scientific Reports

Tonic firing mode of midbrain dopamine neurons continuously tracks reward  values changing moment-by-moment | eLife
Tonic firing mode of midbrain dopamine neurons continuously tracks reward values changing moment-by-moment | eLife

Aberrant Tonic Inhibition of Dopaminergic Neuronal Activity Causes Motor  Symptoms in Animal Models of Parkinson's Disease - ScienceDirect
Aberrant Tonic Inhibition of Dopaminergic Neuronal Activity Causes Motor Symptoms in Animal Models of Parkinson's Disease - ScienceDirect

Paradoxical phase response of gamma rhythms facilitates their entrainment  in heterogeneous networks | PLOS Computational Biology
Paradoxical phase response of gamma rhythms facilitates their entrainment in heterogeneous networks | PLOS Computational Biology

Astrocytes Control Sensory Acuity via Tonic Inhibition in the Thalamus -  ScienceDirect
Astrocytes Control Sensory Acuity via Tonic Inhibition in the Thalamus - ScienceDirect

High Salt Intake Recruits Tonic Activation of NR2D Subunit-Containing  Extrasynaptic NMDARs in Vasopressin Neurons | Journal of Neuroscience
High Salt Intake Recruits Tonic Activation of NR2D Subunit-Containing Extrasynaptic NMDARs in Vasopressin Neurons | Journal of Neuroscience

Frontiers | Synaptic Properties and Plasticity Mechanisms of Invertebrate  Tonic and Phasic Neurons
Frontiers | Synaptic Properties and Plasticity Mechanisms of Invertebrate Tonic and Phasic Neurons

Cardio Tonic, 30 capsule vegetale, Cosmopharm : Farmacia Tei online
Cardio Tonic, 30 capsule vegetale, Cosmopharm : Farmacia Tei online

Comparative table for interneuron populations in FXS. Three different... |  Download Scientific Diagram
Comparative table for interneuron populations in FXS. Three different... | Download Scientific Diagram

IJMS | Free Full-Text | Tonic Activation of Extrasynaptic NMDA Receptors  Decreases Intrinsic Excitability and Promotes Bistability in a Model of  Neuronal Activity | HTML
IJMS | Free Full-Text | Tonic Activation of Extrasynaptic NMDA Receptors Decreases Intrinsic Excitability and Promotes Bistability in a Model of Neuronal Activity | HTML

Phasic and tonic neuron ensemble codes for stimulus-environment  conjunctions in the lateral entorhinal cortex | eLife
Phasic and tonic neuron ensemble codes for stimulus-environment conjunctions in the lateral entorhinal cortex | eLife

Induction of specific brain oscillations may restore neural circuits and be  used for the treatment of Alzheimer's disease - Chan - 2021 - Journal of  Internal Medicine - Wiley Online Library
Induction of specific brain oscillations may restore neural circuits and be used for the treatment of Alzheimer's disease - Chan - 2021 - Journal of Internal Medicine - Wiley Online Library

Phasic and tonic neuron ensemble codes for stimulus-environment  conjunctions in the lateral entorhinal cortex | eLife
Phasic and tonic neuron ensemble codes for stimulus-environment conjunctions in the lateral entorhinal cortex | eLife

IJMS | Free Full-Text | Tonic Activation of Extrasynaptic NMDA Receptors  Decreases Intrinsic Excitability and Promotes Bistability in a Model of  Neuronal Activity | HTML
IJMS | Free Full-Text | Tonic Activation of Extrasynaptic NMDA Receptors Decreases Intrinsic Excitability and Promotes Bistability in a Model of Neuronal Activity | HTML

Tonic inhibition in mouse hippocampal CA1 pyramidal neurons is mediated by  α5 subunit-containing γ-aminobutyric acid type A receptors | PNAS
Tonic inhibition in mouse hippocampal CA1 pyramidal neurons is mediated by α5 subunit-containing γ-aminobutyric acid type A receptors | PNAS

Tonic inhibition in mouse hippocampal CA1 pyramidal neurons is mediated by  α5 subunit-containing γ-aminobutyric acid type A receptors | PNAS
Tonic inhibition in mouse hippocampal CA1 pyramidal neurons is mediated by α5 subunit-containing γ-aminobutyric acid type A receptors | PNAS

Influence of Phasic and Tonic Dopamine Release on Receptor Activation |  Journal of Neuroscience
Influence of Phasic and Tonic Dopamine Release on Receptor Activation | Journal of Neuroscience

Morphine Decreases Enteric Neuron Excitability via Inhibition of Sodium  Channels | PLOS ONE
Morphine Decreases Enteric Neuron Excitability via Inhibition of Sodium Channels | PLOS ONE