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PDF) More is not always better: Adaptive gain control explains dissociation  between perception and action
PDF) More is not always better: Adaptive gain control explains dissociation between perception and action

Mechanisms underlying gain modulation in the cortex | Nature Reviews  Neuroscience
Mechanisms underlying gain modulation in the cortex | Nature Reviews Neuroscience

Serotonin Affects Movement Gain Control in the Spinal Cord | Journal of  Neuroscience
Serotonin Affects Movement Gain Control in the Spinal Cord | Journal of Neuroscience

Neuronal gain modulability is determined by dendritic morphology: A  computational optogenetic study | PLOS Computational Biology
Neuronal gain modulability is determined by dendritic morphology: A computational optogenetic study | PLOS Computational Biology

Locus of control - Wikipedia
Locus of control - Wikipedia

Neuroplasticity: How Experience Changes the Brain
Neuroplasticity: How Experience Changes the Brain

Frontiers | Attention in Psychology, Neuroscience, and Machine Learning
Frontiers | Attention in Psychology, Neuroscience, and Machine Learning

PDF) Gain control in molecular information processing: Lessons from  neuroscience
PDF) Gain control in molecular information processing: Lessons from neuroscience

Synchronous spikes are necessary but not sufficient for a synchrony code in  populations of spiking neurons
Synchronous spikes are necessary but not sufficient for a synchrony code in populations of spiking neurons

Mechanisms underlying gain modulation in the cortex | Nature Reviews  Neuroscience
Mechanisms underlying gain modulation in the cortex | Nature Reviews Neuroscience

Central Control of Feeding Behavior (Section 4, Chapter 4) Neuroscience  Online: An Electronic Textbook for the Neurosciences | Department of  Neurobiology and Anatomy - The University of Texas Medical School at Houston
Central Control of Feeding Behavior (Section 4, Chapter 4) Neuroscience Online: An Electronic Textbook for the Neurosciences | Department of Neurobiology and Anatomy - The University of Texas Medical School at Houston

Developing Gain Control in Single Cortical Neurons | UCSD Neurosciences
Developing Gain Control in Single Cortical Neurons | UCSD Neurosciences

Neuronal gain modulability is determined by dendritic morphology: A  computational optogenetic study | PLOS Computational Biology
Neuronal gain modulability is determined by dendritic morphology: A computational optogenetic study | PLOS Computational Biology

Developing Gain Control in Single Cortical Neurons | UCSD Neurosciences
Developing Gain Control in Single Cortical Neurons | UCSD Neurosciences

Olfactory receptor neurons use gain control and complementary kinetics to  encode intermittent odorant stimuli | eLife
Olfactory receptor neurons use gain control and complementary kinetics to encode intermittent odorant stimuli | eLife

Developing Gain Control in Single Cortical Neurons | UCSD Neurosciences
Developing Gain Control in Single Cortical Neurons | UCSD Neurosciences

The modulation of neural gain facilitates a transition between functional  segregation and integration in the brain | eLife
The modulation of neural gain facilitates a transition between functional segregation and integration in the brain | eLife

Neural noise in the age-varying human brain predicts perceptual decisions |  bioRxiv
Neural noise in the age-varying human brain predicts perceptual decisions | bioRxiv

Hormonal gain control of a medial preoptic area social reward circuit |  Nature Neuroscience
Hormonal gain control of a medial preoptic area social reward circuit | Nature Neuroscience

A New Mechanism for Neuronal Gain Control (or How the Gain in Brains Has  Mainly Been Explained) - ScienceDirect
A New Mechanism for Neuronal Gain Control (or How the Gain in Brains Has Mainly Been Explained) - ScienceDirect

Complementary Effects of Adaptation and Gain Control on Sound Encoding in  Primary Auditory Cortex | eNeuro
Complementary Effects of Adaptation and Gain Control on Sound Encoding in Primary Auditory Cortex | eNeuro

Scholarly Article or Book Chapter | Hormonal gain control of a medial  preoptic area social reward circuit | ID: 1z40kz908 | Carolina Digital  Repository
Scholarly Article or Book Chapter | Hormonal gain control of a medial preoptic area social reward circuit | ID: 1z40kz908 | Carolina Digital Repository