Molecular Mechanisms Of Synaptogenesis
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Add to basketSold by Romtrade Corp., STERLING HEIGHTS, MI, U.S.A.
AbeBooks Seller since April 17, 2013
Condition: New
Quantity: 1 available
Add to basketThis is a Brand-new US Edition. This Item may be shipped from US or any other country as we have multiple locations worldwide.
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Some of the molecules critical for building neuronal contacts have been shown to be affected in psychiatric disorders such as autism and mental retardation. Also, a reduction in synapse number in specific brain regions has been found in patients with brain disorders. Thus, imbalance in synaptic contact formation may result in the formation of abnormal neuronal circuits and the aberrant behavior manifested in these brain diseases. Recent findings also suggest that fine tuning of neuronal circuits rather than a major loss of neurons may be the cause of some of these brain disorders. In certain cases, loss of neurons could be a secondary event reflecting problems in improper neuronal communication.
Molecular Mechanisms of Synaptogenesis is a compilation of recent exciting findings that summarizes the ever-expanding knowledge of how neuronal contacts develop in the normal brain and how their functions are affected in mental disorders.
In the last decade, advances in molecular and cellular biology, combined with the development of sophisticated fluorescence microscopy tools to visualize synapses in live neurons, have revealed many intriguing and unexpected findings regarding the dynamics of synapse formation. Studies by a number of researchers have identified several critical protein components of synapses and shown the time course of their arrival at the synapse. Several molecules serve to hold the synaptic contacts between nerve cells and regulate their function.
Imbalance in synaptic contact formation and function has been linked to psychiatric disorders such as schizophrenia, autism and mental retardation. The recent advances in basic research, summarized in Molecular Mechanisms of Synaptogenesis, may lay the necessary scientific groundwork to develop treatments targeting synaptogenesis, allowing us to improve the lives of people affected by brain disorders. This book will be an invaluable resource for neurobiologists taking their first steps in the expanding and exciting field of synaptogenesis.
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