Dendritic geometry is largely determined during postnatal development and has a substantial impact on neural function. In sensory processing, postnatal development of the dendritic tree is affected by two dominant circuit motifs, ascending sensory feedforward inputs and descending and local recurrent connections. In the three-layered anterior piriform cortex, neurons in the sublayers 2a and 2b display vertical segregation of these two circuit motifs. Here, we combined electrophysiology, detailed morphometry and Ca(2+) imaging in acute mouse brain slices and modeling to study circuit specific aspects of dendritic development. We observed that determination of branching complexity, dendritic length increases and pruning occurred in distinct d...
SummaryNeurons receive signals through dendrites that vary widely in number and organization, rangin...
Architectonic heterogeneity in neurons is thought to be important for equipping the mammalian cerebr...
Architectonic heterogeneity in neurons is thought to be important for equipping the mammalian cerebr...
Aim: To analyze postnatal development and life-span changes of apical dendrite side branches (obliqu...
Synaptic transmission, connectivity, and dendritic morphology mature in parallel during brain develo...
Intricate neuronal circuits are at the base of several vital functions and complex behaviours. The p...
Architectonic heterogeneity in neurons is thought to be important for equipping the mammalian cerebr...
Aim To analyze postnatal development and life-span changes of apical dendrite side branches (oblique...
Aim To analyze postnatal development and life-span changes of apical dendrite side branches (oblique...
Neocortical neurons have highly branched dendritic trees that are essential for their function. Inde...
The basal and distal apical dendrites of pyramidal cells occupy distinct cortical layers and are tar...
In rat barrel cortex, development of layer 2/3 receptive fields can be disrupted by sensory deprivat...
In rat barrel cortex, development of layer 2/3 receptive fields can be disrupted by sensory deprivat...
Aim To analyze postnatal development and life-span changes of apical dendrite side branches (oblique...
Architectonic heterogeneity in neurons is thought to be important for equipping the mammalian cerebr...
SummaryNeurons receive signals through dendrites that vary widely in number and organization, rangin...
Architectonic heterogeneity in neurons is thought to be important for equipping the mammalian cerebr...
Architectonic heterogeneity in neurons is thought to be important for equipping the mammalian cerebr...
Aim: To analyze postnatal development and life-span changes of apical dendrite side branches (obliqu...
Synaptic transmission, connectivity, and dendritic morphology mature in parallel during brain develo...
Intricate neuronal circuits are at the base of several vital functions and complex behaviours. The p...
Architectonic heterogeneity in neurons is thought to be important for equipping the mammalian cerebr...
Aim To analyze postnatal development and life-span changes of apical dendrite side branches (oblique...
Aim To analyze postnatal development and life-span changes of apical dendrite side branches (oblique...
Neocortical neurons have highly branched dendritic trees that are essential for their function. Inde...
The basal and distal apical dendrites of pyramidal cells occupy distinct cortical layers and are tar...
In rat barrel cortex, development of layer 2/3 receptive fields can be disrupted by sensory deprivat...
In rat barrel cortex, development of layer 2/3 receptive fields can be disrupted by sensory deprivat...
Aim To analyze postnatal development and life-span changes of apical dendrite side branches (oblique...
Architectonic heterogeneity in neurons is thought to be important for equipping the mammalian cerebr...
SummaryNeurons receive signals through dendrites that vary widely in number and organization, rangin...
Architectonic heterogeneity in neurons is thought to be important for equipping the mammalian cerebr...
Architectonic heterogeneity in neurons is thought to be important for equipping the mammalian cerebr...