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Adult born neurons in the dentate gyrus microinjected with a DISC1 shRNA-containing oncoretrovirus have larger cell bodies, an increased number of ectopic primary dendrites, more complex dendritic arborization, and an accelerated rate of synapse formation and may overmigrate through cortical layers.
Moreover, the cells found in septal region possess both a larger and more complex dendritic arborization than cells located inside barrels.
Lastly, we demonstrate how our framework can be used to explore the effect of biophysical properties on the firing dynamics of a neuron with a more complex dendritic tree topology.
Although at first glance the dendritic morphology of F-ERF and S-ERF neurons seemed to be not significantly different, quantitative analysis of 10 pyramidal cells (5 F-ERF neurons and 5 S-ERF neurons) revealed that the F-ERF neurons have an apparently more complex dendritic arborization than the S-ERF neurons.
It is also reported that the pyramidal neurons of the prefrontal cortex have more complex dendritic structures, with more spines than neurons in other cortical areas.
A slower phase of maturation extends into the neonatal period, during which time the neurons acquire an even more complex dendritic tree [ 53].
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It is possible that due to their small size γ-motoneurons may have been easier to fill with the viral progeny than the larger α-motoneurons that possess a more complex soma-dendritic tree and a greater internal volume.
Similarly, other sex differences in the medial POA of rats depend on the differentiation of (morphological) phenotype, for example, the morphology of astrocytes is more complex and the density of dendritic spines is greater in the POA of male than in female rats [ 47, 48].
The road toward larger and more complex assemblies, and the emergence of dendritic flow architecture are discussed.
Analysis of medium spiny neuron morphology revealed that in the NAc core, but not in the shell, dendritic arbors were significantly more complex in the morphine conditioned, SKF81297-treated mice compared to controls.
These polymers represent unique yet easily and economically available multifunctional nanoscopic dendritic building blocks for more complex 3D nano-structured materials for a variety of applications in electronics, photonics, lithography, specialty coatings, etc.
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CEO of Professional Science Editing for Scientists @ prosciediting.com