Neurons store information by changing synaptic input weights. In addition, they can adjust their membrane excitability to alter spike output. Here, we demonstrate a role of such "intrinsic plasticity" in behavioral learning in a mouse model that allows us to detect specific consequences of absent excitability modulation. Mice with a Purkinje-cell-specific knockout (KO) of the calcium-activated K+ channel SK2 (L7-SK2) show intact vestibulo-ocular reflex (VOR) gain adaptation but impaired eyeblink conditioning (EBC), which relies on the ability to establish associations between stimuli, with the eyelid closure itself depending on a transient suppression of spike firing. In these mice, the intrinsic plasticity of Purkinje cells is prevented wi...
Mechanisms of cerebellar motor learning are still poorly understood. The standard Marr-Albus-Ito the...
AbstractCellular mechanisms of plasticity must be linked to circuit mechanisms of behavior to unders...
CaV3.1 T-type channels are abundant at the cerebellar synapse between parallel fibers and Purkinje c...
Neurons store information by changing synaptic input weights. In addition, they can adjust their mem...
Neurons store information by changing synaptic input weights. In addition, they can adjust their mem...
The question of how the brain processes and records experiences for future recall is crucial to unde...
SummarySmall-conductance Ca2+-activated K+ channels (SK channels) modulate excitability and curtail ...
Neurons store information and participate in memory engrams as a result of experience-dependent chan...
The cerebellum is crucial for different types of motor learning. Established theories of cerebellar ...
SummaryThe plasticity of intrinsic excitability has been described in several types of neurons, but ...
SummaryThree decades of electrophysiological research on cerebellar cortical activity underlying Pav...
The plasticity of intrinsic excitability has been described in several types of neurons, but the sig...
In recent years, it has become clear that motor learning, as revealed by associative eyelid conditio...
Three decades of electrophysiological research on cerebellar cortical activity underlying Pavlovian ...
Translating neuronal activity to measurable behavioral changes has been a long-standing goal of syst...
Mechanisms of cerebellar motor learning are still poorly understood. The standard Marr-Albus-Ito the...
AbstractCellular mechanisms of plasticity must be linked to circuit mechanisms of behavior to unders...
CaV3.1 T-type channels are abundant at the cerebellar synapse between parallel fibers and Purkinje c...
Neurons store information by changing synaptic input weights. In addition, they can adjust their mem...
Neurons store information by changing synaptic input weights. In addition, they can adjust their mem...
The question of how the brain processes and records experiences for future recall is crucial to unde...
SummarySmall-conductance Ca2+-activated K+ channels (SK channels) modulate excitability and curtail ...
Neurons store information and participate in memory engrams as a result of experience-dependent chan...
The cerebellum is crucial for different types of motor learning. Established theories of cerebellar ...
SummaryThe plasticity of intrinsic excitability has been described in several types of neurons, but ...
SummaryThree decades of electrophysiological research on cerebellar cortical activity underlying Pav...
The plasticity of intrinsic excitability has been described in several types of neurons, but the sig...
In recent years, it has become clear that motor learning, as revealed by associative eyelid conditio...
Three decades of electrophysiological research on cerebellar cortical activity underlying Pavlovian ...
Translating neuronal activity to measurable behavioral changes has been a long-standing goal of syst...
Mechanisms of cerebellar motor learning are still poorly understood. The standard Marr-Albus-Ito the...
AbstractCellular mechanisms of plasticity must be linked to circuit mechanisms of behavior to unders...
CaV3.1 T-type channels are abundant at the cerebellar synapse between parallel fibers and Purkinje c...