SummaryNeurons receive signals through dendrites that vary widely in number and organization, ranging from one primary dendrite to multiple complex dendritic trees. For example, retinal amacrine cells (ACs) project primary dendrites into a discrete synaptic layer called the inner plexiform layer (IPL) and only rarely extend processes into other retinal layers. Here, we show that the atypical cadherin Fat3 ensures that ACs develop this unipolar morphology. AC precursors are initially multipolar but lose neurites as they migrate through the neuroblastic layer. In fat3 mutants, pruning is unreliable and ACs elaborate two dendritic trees: one in the IPL and a second projecting away from the IPL that stratifies to form an additional synaptic lay...
Morphological diversity of dendrites contributes to specialized functions of individual neurons. In ...
SummaryIn response to changes in the environment, dendrites from certain neurons change their shape,...
SummarySensory neurons adopt distinct morphologies and functional modalities to mediate responses to...
SummaryNeurons receive signals through dendrites that vary widely in number and organization, rangin...
Neuronal shape and position are critical to the formation and function of neuronal circuits. Althoug...
SummaryTargeting of axons and dendrites to particular synaptic laminae is an important mechanism by ...
AbstractTo cover the entire sensory field once and only once, dendrites of some sensory system neuro...
Morphological development of neurons is critical for neural circuit formation. Interestingly, the mo...
Our knowledge of how developing dendrites attain their mature state is still rudimentary. In this is...
AbstractMany subtypes of neurons are precisely arranged with little overlap of their dendritic arbor...
Dendritic geometry is largely determined during postnatal development and has a substantial impact o...
Whether morphology tailors functional properties of pyramidal neurons is not completely understood. ...
SummaryA common feature of the brain is the arrangement of synapses in layers. To examine the signif...
SummaryHow neurons form appropriately sized dendritic fields to encounter their presynaptic partners...
SummaryTo integrate information from different presynaptic cell types, dendrites receive distinct pa...
Morphological diversity of dendrites contributes to specialized functions of individual neurons. In ...
SummaryIn response to changes in the environment, dendrites from certain neurons change their shape,...
SummarySensory neurons adopt distinct morphologies and functional modalities to mediate responses to...
SummaryNeurons receive signals through dendrites that vary widely in number and organization, rangin...
Neuronal shape and position are critical to the formation and function of neuronal circuits. Althoug...
SummaryTargeting of axons and dendrites to particular synaptic laminae is an important mechanism by ...
AbstractTo cover the entire sensory field once and only once, dendrites of some sensory system neuro...
Morphological development of neurons is critical for neural circuit formation. Interestingly, the mo...
Our knowledge of how developing dendrites attain their mature state is still rudimentary. In this is...
AbstractMany subtypes of neurons are precisely arranged with little overlap of their dendritic arbor...
Dendritic geometry is largely determined during postnatal development and has a substantial impact o...
Whether morphology tailors functional properties of pyramidal neurons is not completely understood. ...
SummaryA common feature of the brain is the arrangement of synapses in layers. To examine the signif...
SummaryHow neurons form appropriately sized dendritic fields to encounter their presynaptic partners...
SummaryTo integrate information from different presynaptic cell types, dendrites receive distinct pa...
Morphological diversity of dendrites contributes to specialized functions of individual neurons. In ...
SummaryIn response to changes in the environment, dendrites from certain neurons change their shape,...
SummarySensory neurons adopt distinct morphologies and functional modalities to mediate responses to...