Klosterneuburg, Austria

Molecular Neuroscience

Language: English Studies in English
Subject area: biology
University website: www.ist.ac.at
Molecular Neuroscience
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 neurodegenerative diseases. As with molecular biology, molecular neuroscience is a relatively new field that is considerably dynamic.
Neuroscience
Neuroscience (or neurobiology) is the scientific study of the nervous system. It is a multidisciplinary branch of biology, that combines physiology, anatomy, molecular biology, developmental biology, cytology, mathematical modeling and psychology to understand the fundamental and emergent properties of neurons and neural circuits. The understanding of the biological basis of learning, memory, behavior, perception and consciousness has been defined as "the ultimate challenge of the biological sciences".
Neuroscience
There was another major phase of split-brain research where we studied the patients as a way of getting at the other questions very much alive in neuroscience, everything from questions about visual midline overlap to spatial attention and resource allocations. At this point the split-brain patients provided a way of examining cortical-subcortical relationships, and other matters.
Michael Gazzaniga (2001) (12 April 2011). "Interview with Michael Gazzaniga". Annals of the New York Academy of Science. DOI:10.1111/j.1749-6632.2011.05998.x.
Neuroscience
Although many philosophers used to dismiss the relevance of neuroscience on grounds that what mattered was “the software, not the hardware”, increasingly philosophers have come to recognize that understanding how the brain works is essential to understanding the mind.
Patricia Churchland Introductory message at her homepage at the University of California, San Diego (first retrieved 2008)
Neuroscience
The phenomenal world according to neuroscience is the result of the final transformations of sense data somewhere in the brain. Yet the brain itself belongs to that phenomenal world. R. D. Laing (1976) asks, "How, as a member of the set we have to account for, can it be used to account for the set as a whole, and all members of the set, including itself?"
Francis J. Broucek (1991) Shame and the Self. p. 143: He cites Ronald David Laing (1976) The facts of life. p. 25
Understanding how glacier sliding and iceberg calving contribute to loss in ice sheet models can improve predictions of global sea-level changes. This is hampered by the inaccessibility of a glacier's base and its calving front.
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