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Molecular Neurobiology is a bimonthly peer-reviewed scientific journal covering all aspects of molecular neuroscience. It was established in 1987 and is published by Springer Science+Business Media. The editor-in-chief is Benedict C. Albensi (Nova Southeastern University). Dr.
Molecular neuroscience is a branch of neuroscience that observes concepts in molecular biology applied to the nervous systems of animals. The scope of this subject covers topics such as molecular neuroanatomy, mechanisms of molecular signaling in the nervous system, the effects of genetics and epigenetics on neuronal development, and the molecular basis for neuroplasticity and ...
Cellular and Molecular Neurobiology is a peer-reviewed scientific journal covering neuroscience, especially at the cellular and subcellular levels. It was established in 1981 and is published by Springer Science+Business Media. The editor-in-chief is Juan M. Saavedra (Georgetown University).
One article describes the role of Hebbian learning in the Aplysia siphon-withdrawal reflex. [17] The Kandel lab has also performed important experiments using transgenic mice as a system for investigating the molecular basis of memory storage in the vertebrate hippocampus.
Molecular Brain is a peer-reviewed open access scientific journal covering research on all aspects of the nervous system at the molecular, cellular and systems levels. The journal was established in 2008 and is published by BioMed Central .
The term is commonly used in an educational framework: a common sequence of graduate school neuroscience courses consists of cellular/molecular neuroscience for the first semester, then systems neuroscience for the second semester. It is also sometimes used to distinguish a subdivision within a neuroscience department in a university.
In 2004, it added the Neurobiology of Disease section due to the growing number of papers on this subject. In January 2013, the journal split the section Behavioral/Systems/Cognitive into two sections, Systems/Circuits and Behavioral/Cognitive, in order to make the sections of the journal approximately the same in size.
The lab approaches these questions using circuit tracing, molecular biology, and genetic tools in mice. Currently, the lab seeks to characterize the molecular diversity of neural progenitors and dissect the genetic and epigenetic programs that drive the differentiation of these progenitors and their assembly into functional neural circuits.