Astrocytes in (Patho)Physiology of the Nervous System

Astrocytes in (Patho)Physiology of the Nervous System pdf

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520

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英语

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部门:

自然科学

页数:

701

部分:

生物学

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42234164 MB

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阿拉巴马大学伯明翰分校医学院神经生物学系教授 Vladimir Parpura 博士被选为美国生理学会会士。
Parpura 于 1989 年在克罗地亚萨格勒布大学获得医学学位,并于 1993 年在爱荷华州立大学获得神经科学和动物学博士学位。
他加入了 UAB 的其他八位教员。

书的描述

Astrocytes in (Patho)Physiology of the Nervous System pdf 弗拉基米尔·帕普拉

Astrocytes were the original neuroglia that Ramon y Cajal visualized in 1913 using a gold sublimate stain. This stain targeted intermediate filaments that we now know consist mainly of glial fibrillary acidic protein, a protein used today as an astrocytic marker. Cajal described the morphological diversity of these cells with some ast- cytes surrounding neurons, while the others are intimately associated with vasculature. We start the book by discussing the heterogeneity of astrocytes using contemporary tools and by calling into question the assumption by classical neuroscience that neurons and glia are derived from distinct pools of progenitor cells. Astrocytes have long been neglected as active participants in intercellular communication and information processing in the central nervous system, in part due to their lack of electrical excitability. The follow up chapters review the "nuts and bolts" of ast- cytic physiology; astrocytes possess a diverse assortment of ion channels, neu- transmitter receptors, and transport mechanisms that enable the astrocytes to respond to many of the same signals that act on neurons. Since astrocytes can detect chemical transmitters that are released from neurons and can release their own extracellular signals there is an increasing awareness that they play physiological roles in regulating neuronal activity and synaptic transmission. In addition to these physiological roles, it is becoming increasingly recognized that astrocytes play critical roles during pathophysiological states of the nervous system; these states include gliomas, Alexander disease, and epilepsy to mention a few.

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