SummaryNeuronal migration and axon guidance constitute fundamental processes in brain development that are generally studied independently. Although both share common mechanisms of cell biology and biochemistry, little is known about their coordinated integration in the formation of neural circuits. Here we show that the development of the thalamocortical projection, one of the most prominent tracts in the mammalian brain, depends on the early tangential migration of a population of neurons derived from the ventral telencephalon. This tangential migration contributes to the establishment of a permissive corridor that is essential for thalamocortical axon pathfinding. Our results also demonstrate that in this process two different products o...
The correct positioning of neurons during development—achieved through directed migration—is the bas...
AbstractGuidance molecules present in both axonal and dendritic growth cones mediate neuronal respon...
The brain functions are accomplished via communications between vast numbers of neurons. Thus, the c...
Neuronal migration and axon guidance constitute fundamental processes in brain development that are ...
Innervation of the neocortex by the thalamus is dependent on the precise coordination of spatial and...
Thalamocortical axons must cross a complex cellular terrain through the developing forebrain and thi...
SummaryMajor outputs of the neocortex are conveyed by corticothalamic axons (CTAs), which form recip...
SummaryHow brain connectivity has evolved to integrate the mammalian-specific neocortex remains larg...
International audienceThalamocortical axons must cross a complex cellular terrain through the develo...
SummaryHow guidance cues are integrated during the formation of complex axonal tracts remains largel...
AbstractThalamocortical axons (TCAs), which originate in dorsal thalamus, project ventrally in dienc...
Thalamocortical axons must cross a complex cellular terrain through the developing forebrain, and th...
Major outputs of the neocortex are conveyed by corticothalamic axons (CTAs), which form reciprocal c...
ed period, during which thalamic projections navigate toward cortical axons. At the molecular level,...
During neural circuit formation, axons need to navigate to their target cells in a complex, constant...
The correct positioning of neurons during development—achieved through directed migration—is the bas...
AbstractGuidance molecules present in both axonal and dendritic growth cones mediate neuronal respon...
The brain functions are accomplished via communications between vast numbers of neurons. Thus, the c...
Neuronal migration and axon guidance constitute fundamental processes in brain development that are ...
Innervation of the neocortex by the thalamus is dependent on the precise coordination of spatial and...
Thalamocortical axons must cross a complex cellular terrain through the developing forebrain and thi...
SummaryMajor outputs of the neocortex are conveyed by corticothalamic axons (CTAs), which form recip...
SummaryHow brain connectivity has evolved to integrate the mammalian-specific neocortex remains larg...
International audienceThalamocortical axons must cross a complex cellular terrain through the develo...
SummaryHow guidance cues are integrated during the formation of complex axonal tracts remains largel...
AbstractThalamocortical axons (TCAs), which originate in dorsal thalamus, project ventrally in dienc...
Thalamocortical axons must cross a complex cellular terrain through the developing forebrain, and th...
Major outputs of the neocortex are conveyed by corticothalamic axons (CTAs), which form reciprocal c...
ed period, during which thalamic projections navigate toward cortical axons. At the molecular level,...
During neural circuit formation, axons need to navigate to their target cells in a complex, constant...
The correct positioning of neurons during development—achieved through directed migration—is the bas...
AbstractGuidance molecules present in both axonal and dendritic growth cones mediate neuronal respon...
The brain functions are accomplished via communications between vast numbers of neurons. Thus, the c...