Abstract Neurons in the anterior cingulate cortex (ACC) are assumed to play important roles in the perception of nociceptive signals and the associated emotional responses. However, the neuronal types within the ACC that mediate these functions are poorly understood. In the present study, we used optogenetic techniques to selectively modulate excitatory pyramidal neurons and inhibitory interneurons in the ACC and to assess their ability to modulate peripheral mechanical hypersensitivity in freely moving mice. We found that selective activation of pyramidal neurons rapidly and acutely reduced nociceptive thresholds and that this effect was occluded in animals made hypersensitive using Freund's Complete Adjuvant (CFA). Conversel...
Chronic pain is sustained by a maladaptive form of neuronal plasticity occurring in all stations of ...
Central sensitization and network hyperexcitability of the nociceptive system is a basic mechanism o...
Neuropathic pain induces changes in neuronal excitability and synaptic connectivity in deep layers o...
Neurons in the anterior cingulate cortex (ACC) are assumed to play important roles in the perception...
<div><p>Cumulative evidence from both humans and animals suggests that the anterior cingulate cortex...
The anterior cingulate cortex (ACC) is thought to be important for acute pain perception as well as ...
Cumulative evidence from both humans and animals suggests that the anterior cingulate cortex (ACC) i...
The identity of cortical circuits mediating nociception and pain is largely unclear. The cingulate c...
Abstract The anterior cingulate cortex (ACC) plays important roles in emotion, learnin...
Abstract The anterior cingulate cortex (ACC) plays important roles in emotion, learning, memory and ...
Hyperexcitability of the anterior cingulate cortex (ACC) is thought to drive aversion associated wit...
It is commonly hypothesized that hyperexcitability of local circuits within the rostral anterior cin...
International audiencePain associates both sensory and emotional aversive components, and often lead...
Abstract Anterior cingulate cortex (ACC) plays important roles in sensory perception i...
Pain consists of sensory-discriminative and affective-motivational components, which can share a rec...
Chronic pain is sustained by a maladaptive form of neuronal plasticity occurring in all stations of ...
Central sensitization and network hyperexcitability of the nociceptive system is a basic mechanism o...
Neuropathic pain induces changes in neuronal excitability and synaptic connectivity in deep layers o...
Neurons in the anterior cingulate cortex (ACC) are assumed to play important roles in the perception...
<div><p>Cumulative evidence from both humans and animals suggests that the anterior cingulate cortex...
The anterior cingulate cortex (ACC) is thought to be important for acute pain perception as well as ...
Cumulative evidence from both humans and animals suggests that the anterior cingulate cortex (ACC) i...
The identity of cortical circuits mediating nociception and pain is largely unclear. The cingulate c...
Abstract The anterior cingulate cortex (ACC) plays important roles in emotion, learnin...
Abstract The anterior cingulate cortex (ACC) plays important roles in emotion, learning, memory and ...
Hyperexcitability of the anterior cingulate cortex (ACC) is thought to drive aversion associated wit...
It is commonly hypothesized that hyperexcitability of local circuits within the rostral anterior cin...
International audiencePain associates both sensory and emotional aversive components, and often lead...
Abstract Anterior cingulate cortex (ACC) plays important roles in sensory perception i...
Pain consists of sensory-discriminative and affective-motivational components, which can share a rec...
Chronic pain is sustained by a maladaptive form of neuronal plasticity occurring in all stations of ...
Central sensitization and network hyperexcitability of the nociceptive system is a basic mechanism o...
Neuropathic pain induces changes in neuronal excitability and synaptic connectivity in deep layers o...