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Titlebook: Stem Cells and CNS Development; Mahendra S. Rao Book 2001 Springer Science+Business Media New York 2001 Nervous System.brain.cell.gene.neu

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Multipotent Stem Cells in the Embryonic Nervous System,ineage potential over time, and to generate large numbers of progeny, often through transient amplification of intermediate progenitor pools. Although self-renewal can occur through symmetric cell divisions that generate two identical daughter cells, asymmetric cell divisions that generate a renewab
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Multipotent Stem Cells in the Adult Central Nervous System,y that will terminally differentiate and integrate into the tissue of residence, to replace cells lost to physiological turnover or injury. These features make stem cells an essential element both in the embryonic development and in the maintenance of adult tissue cell renewal. For example, a consta
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Glial Characteristics of Adult Subventricular Zone Stem Cells,neurogenesis in the adult brains of fish, frogs, reptiles, birds, and rodents . have recently culminated in studies demonstrating the birth of new central nervous system (CNS) neurons in primates including humans .,.. Hence, the century-old, dogmatic proposition of a fixed, ended, immutable adult br
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Neuronal Restricted Precursors,cted neural stem and progenitor cells have been subjects of intense research over the last decade. Two major reasons for this concentrated effort are the gradual acceptance that at least some regions of the brain generate neurons throughout life, and the growing appreciation that these cells could b
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