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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 ...
The Journal of Molecular Neuroscience is a peer-reviewed scientific journal covering research in neuroscience. It is published by Humana Press and the editor-in-chief is Illana Gozes. In 1999, the journal absorbed Molecular and Chemical Neuropathology, a journal that had been established in 1983 as Neurochemical Pathology.
Neurogenetics is a field that is rapidly expanding and growing. The current areas of research are very diverse in their focuses. One area deals with molecular processes and the function of certain proteins, often in conjunction with cell signaling and neurotransmitter release, cell development and repair, or neuronal plasticity.
The following outline is provided as an overview of and topical guide to neuroscience: Neuroscience is the scientific study of the structure and function of the nervous system. [1] [2] It encompasses the branch of biology [3] that deals with the anatomy, biochemistry, molecular biology, and physiology of neurons and neural circuits.
This list is a subsection of the List of members of the National Academy of Sciences, which includes approximately 2,500 living members and 500 foreign associates of the United States National Academy of Sciences, each of whom is affiliated with one of 31 disciplinary sections.
MNT spoke with Adrian M. Owen, PhD, chief scientific officer at Creyos, and a professor of cognitive neuroscience and imaging at the University of Western Ontario, Canada, who was not involved in ...
Molecular cellular cognition (MCC) is a branch of neuroscience that involves the study of cognitive processes with approaches that integrate molecular, cellular and behavioral mechanisms. Key goals of MCC studies include the derivation of molecular and cellular explanations of cognitive processes, as well as finding mechanisms and treatments ...
A new study explains how mitochondria act as “reservoirs” to store NAD for cells to use, which could help scientists come up with NAD-boosting therapies to combat aging and age-related diseases.