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Neomegalonema perideroedes (formerly Meganema perideroedes) str. G1 is the type strain and only described isolate of the genus Neomegalonema (formerly Meganema). N. perideroedes is distinguished by the ability to accumulate high amounts of polyhydroxyalkanoates and has been associated with bulking p...
ORGANISM(S): Meganema perideroedes 
2019-03-20 | PXD008508 | Pride
Visual experience-dependent expression of Fn14 is required for retinogeniculate refinement (development RNA-Seq)
Visual experience-dependent expression of Fn14 is required for retinogeniculate refinement (stimulus RNA-Seq)
Visual experience-dependent expression of Fn14 is required for retinogeniculate refinement (Fn14 KO RNA-Seq)
Astrocyte-microglia signaling controls developmental thalamocortical synapse refinement
Visual experience-dependent expression of Fn14 is required for retinogeniculate refinement (stimulus single nucleus RNA-Seq)
Sensory experience influences the establishment of neural connectivity through molecular mechanisms that remain unclear. Here, we employ single-nucleus RNA-sequencing to investigate the contribution of sensory-driven gene expression to synaptic refinement in the dorsal lateral geniculate nucleus of ...
ORGANISM(S): Mus musculus 
2021-07-12 | GSE117022 | GEO
Sensory experience influences the establishment of neural connectivity through molecular mechanisms that remain unclear. Here, we employ single-nucleus RNA-sequencing to investigate the contribution of sensory-driven gene expression to synaptic refinement in the dorsal lateral geniculate nucleus of ...
ORGANISM(S): Mus musculus 
2021-07-12 | GSE117021 | GEO
Sensory experience influences the establishment of neural connectivity through molecular mechanisms that remain unclear. Here, we employ single-nucleus RNA-sequencing to investigate the contribution of sensory-driven gene expression to synaptic refinement in the dorsal lateral geniculate nucleus of ...
ORGANISM(S): Mus musculus 
2021-07-12 | GSE117023 | GEO
Sensory experience influences the establishment of neural connectivity through molecular mechanisms that remain unclear. Here, we employ single-nucleus RNA-sequencing to investigate the contribution of sensory-driven gene expression to synaptic refinement in the dorsal lateral geniculate nucleus of ...
ORGANISM(S): Mus musculus 
2021-07-12 | GSE117020 | GEO
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