نتایج جستجو برای: hippocampal pyramidal neurons

تعداد نتایج: 204098  

Journal: :Learning & memory 2004
Mariana Alonso Jorge H Medina Lucas Pozzo-Miller

Brain-derived neurotrophic factor (BDNF) is a potent modulator of synaptic transmission and plasticity in the CNS, acting both pre- and postsynaptically. We demonstrated recently that BDNF/TrkB signaling increases dendritic spine density in hippocampal CA1 pyramidal neurons. Here, we tested whether activation of the prominent ERK (MAPK) signaling pathway was responsible for BDNF's effects on sp...

Yadegari , Maryam, Hadizade Asar, Sanaz , Hosseini-Sharifabad , Mohammad ,

Background and Aims: This study examined sub-chronic effects of Methamphetamine (METH) on the stereological parameters in the Cornu Ammonis (CA) of the hippocampus in adult mice. Materials and Methods: Fifteen adult male mice, eight weeks old, were randomly divided into three groups: receive saline (controls), or low-dose (LD) 2.5 mg/kg METH, or high-dose (HD) 25 mg/kg METH, via daily intrap...

Journal: :Neuron 2014
Patrick Kaifosh Attila Losonczy

Whether morphology tailors functional properties of pyramidal neurons is not completely understood. In this issue of Neuron, Thome et al. (2014) show that, in hippocampal pyramidal neurons, axons frequently originate from basal dendrites rather than the soma, constituting a "privileged" channel for synaptic inputs located in these axon-carrying dendrites.

2015
Kanehiro Hayashi Ken-ichiro Kubo Ayako Kitazawa Kazunori Nakajima

A fine structure of the hippocampus is required for proper functions, and disruption of this formation by neuronal migration defects during development may play a role in some psychiatric illnesses. During hippocampal development in rodents, pyramidal neurons in the Ammon's horn are mostly generated in the ventricular zone (VZ), spent as multipolar cells just above the VZ, and then migrate radi...

Journal: :The Journal of neuroscience : the official journal of the Society for Neuroscience 2001
P A Castro E C Cooper D H Lowenstein S C Baraban

Human cortical malformations often result in severe forms of epilepsy. Although the morphological properties of cells within these malformations are well characterized, very little is known about the function of these cells. In rats, prenatal methylazoxymethanol (MAM) exposure produces distinct nodules of disorganized pyramidal-like neurons (e.g., nodular heterotopia) and loss of lamination in ...

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