Adverse experiences in early life can shape neuronal structures and synaptic function in multiple brain regions, leading to deficits of distinct cognitive functions later in life. Focusing on the pyramidal cells of the prelimbic cortex (PrL), a main subregion of the medial prefrontal cortex, the impact of early-life adversity (ELA) was investigated in a well-established animal model generated by changing the rearing environment during postnatal days 2 to 9 (P2-P9), a sensitive developmental period. ELA has enduring detrimental impacts on the dendritic spines of PrL pyramidal cells, which is most apparent in a spatially circumscribed region. Specifically, ELA affects both thin and mushroom-type spines, and ELA-provoked loss of spines is obse...
Early life adversity (ELA) comprises a wide variety of negative experiences during early life and ha...
Early life adversity (ELA) comprises a wide variety of negative experiences during early life and ha...
The functionality of adult neocortical circuits can be altered by novel experiences or learning. Thi...
Synapses are the sites where neurons contact each other and exchange information in the brain. Expe...
During the early postnatal period, environmental influences play a pivotal role in shaping the devel...
Previous studies have shown that sensory and motor experiences play an important role in the remodel...
Why layers II/III of entorhinal cortex (EC) deteriorate in advance of other regions during the earli...
During the early postnatal period, environmental influences play a pivotal role in shaping the devel...
SAMP8 is a strain of mice with accelerated senescence. These mice have recently been the focus of at...
Early life adversity (ELA) is a major health burden in the United States, with 62% of adults reporti...
Early-life adversity (ELA) is associated with lifelong memory deficits, yet the responsible mechanis...
It is increasingly clear that dendritic spines play an important role in compartmentalizing post-syn...
Functional circuits in the adult neocortex adjust to novel sensory experience, but the underlying sy...
The mammalian cerebral cortex is typically organized in six layers containing multiple types of neur...
Abstract. SAMP8 is a strain of mice with accelerated senescence. These mice have recently been the f...
Early life adversity (ELA) comprises a wide variety of negative experiences during early life and ha...
Early life adversity (ELA) comprises a wide variety of negative experiences during early life and ha...
The functionality of adult neocortical circuits can be altered by novel experiences or learning. Thi...
Synapses are the sites where neurons contact each other and exchange information in the brain. Expe...
During the early postnatal period, environmental influences play a pivotal role in shaping the devel...
Previous studies have shown that sensory and motor experiences play an important role in the remodel...
Why layers II/III of entorhinal cortex (EC) deteriorate in advance of other regions during the earli...
During the early postnatal period, environmental influences play a pivotal role in shaping the devel...
SAMP8 is a strain of mice with accelerated senescence. These mice have recently been the focus of at...
Early life adversity (ELA) is a major health burden in the United States, with 62% of adults reporti...
Early-life adversity (ELA) is associated with lifelong memory deficits, yet the responsible mechanis...
It is increasingly clear that dendritic spines play an important role in compartmentalizing post-syn...
Functional circuits in the adult neocortex adjust to novel sensory experience, but the underlying sy...
The mammalian cerebral cortex is typically organized in six layers containing multiple types of neur...
Abstract. SAMP8 is a strain of mice with accelerated senescence. These mice have recently been the f...
Early life adversity (ELA) comprises a wide variety of negative experiences during early life and ha...
Early life adversity (ELA) comprises a wide variety of negative experiences during early life and ha...
The functionality of adult neocortical circuits can be altered by novel experiences or learning. Thi...