Behavioral experiments are usually designed to tap into a specific cognitive function, but animals may solve a given task through a variety of different and individual behavioral strategies, some of them not foreseen by the experimenter. Animal learning may therefore be seen more as the process of selecting among, and adapting, potential behavioral policies, rather than mere strengthening of associative links. Calcium influx through high-voltage-gated Ca2+ channels is central to synaptic plasticity, and altered expression of Cav1.2 channels and the CACNA1C gene have been associated with severe learning deficits and psychiatric disorders. Given this, we were interested in how specifically a selective functional ablation of the Cacna1c gene w...
Homozygous Cav3.2 knockout mice, which are defective in the pore-forming subunit of a low voltage ac...
SummaryOperant conditioning is a ubiquitous but mechanistically poorly understood form of associativ...
BackgroundThe ability to filter sensory information into relevant versus irrelevant stimuli is a fun...
<div><p>Behavioral experiments are usually designed to tap into a specific cognitive function, but a...
CACNA1C codes for the alpha-1 subunit of Cav1.2 L-type voltage gated calcium channels (LVGCCs). Vari...
Large-scale genome-wide association studies have consistently shown that genetic variation in CACNA1...
CACNA1C, a gene that encodes an alpha-1 subunit of L-type voltage-gated calcium channels, has been s...
Recent studies have revealed impairments in Cacna1c ± heterozygous animals (a gene that encodes the ...
The CACNA1C (calcium voltage-gated channel subunit alpha 1 C) gene that encodes the CaV1.2 channel i...
Genetic variation in CACNA1C, which encodes the alpha-1 subunit of CaV1.2 L-type voltage-gated calci...
Homozygous Cav3.2 knockout mice, which are defective in the pore-forming subunit of a low voltage ac...
CACNA1Cencodes the Cav1.2 L-type voltage-gated calcium channel. Generic variation in CACNA1C has bee...
The L-type voltage-gated Ca(2+) channel gene CACNA1C is a risk gene for various psychiatric conditio...
Voltage-gated CaV2.1 (P/Q-type) Ca 2+ channels located at the presynaptic membrane are known to cont...
<div><p>Homozygous <i>Ca<sub>v</sub>3.2</i> knockout mice, which are defective in the pore-forming s...
Homozygous Cav3.2 knockout mice, which are defective in the pore-forming subunit of a low voltage ac...
SummaryOperant conditioning is a ubiquitous but mechanistically poorly understood form of associativ...
BackgroundThe ability to filter sensory information into relevant versus irrelevant stimuli is a fun...
<div><p>Behavioral experiments are usually designed to tap into a specific cognitive function, but a...
CACNA1C codes for the alpha-1 subunit of Cav1.2 L-type voltage gated calcium channels (LVGCCs). Vari...
Large-scale genome-wide association studies have consistently shown that genetic variation in CACNA1...
CACNA1C, a gene that encodes an alpha-1 subunit of L-type voltage-gated calcium channels, has been s...
Recent studies have revealed impairments in Cacna1c ± heterozygous animals (a gene that encodes the ...
The CACNA1C (calcium voltage-gated channel subunit alpha 1 C) gene that encodes the CaV1.2 channel i...
Genetic variation in CACNA1C, which encodes the alpha-1 subunit of CaV1.2 L-type voltage-gated calci...
Homozygous Cav3.2 knockout mice, which are defective in the pore-forming subunit of a low voltage ac...
CACNA1Cencodes the Cav1.2 L-type voltage-gated calcium channel. Generic variation in CACNA1C has bee...
The L-type voltage-gated Ca(2+) channel gene CACNA1C is a risk gene for various psychiatric conditio...
Voltage-gated CaV2.1 (P/Q-type) Ca 2+ channels located at the presynaptic membrane are known to cont...
<div><p>Homozygous <i>Ca<sub>v</sub>3.2</i> knockout mice, which are defective in the pore-forming s...
Homozygous Cav3.2 knockout mice, which are defective in the pore-forming subunit of a low voltage ac...
SummaryOperant conditioning is a ubiquitous but mechanistically poorly understood form of associativ...
BackgroundThe ability to filter sensory information into relevant versus irrelevant stimuli is a fun...