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NEUROVASCULAR REGULATION IN THE NORMAL BRAIN AND IN ALZHEIMER'S DISEASE

机译:正常脑和老年痴呆症患者的神经血管调节

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The structural and functional integrity of the brain depends on the delicate balance between substrate delivery through blood flow and energy demands imposed by neural activity. Complex cerebrovascular control mechanisms ensure that active brain regions receive an adequate amount of blood, but the nature of these mechanisms remains elusive. Recent findings implicate perivascular neurons, gliovascular interactions and intramural vascular signalling in the control of the cerebral microcirculation. Neurons, astrocytes and vascular cells seem to constitute a functional unit, the primary purpose of which is to maintain the homeostasis of the brain's microenvironment. Alterations of these vascular regulatory mechanisms lead to brain dysfunction and disease. The emerging view is that cerebrovascular dysregulation is a feature not only of cerebrovascular pathologies, such as stroke, but also of neurodegenerative conditions, such as Alzheimer's disease.
机译:大脑的结构和功能完整性取决于通过血流的底物输送与神经活动所施加的能量需求之间的微妙平衡。复杂的脑血管控制机制可确保活跃的大脑区域接收足够量的血液,但是这些机制的本质仍然难以捉摸。最近的发现暗示了在控制脑微循环中血管周围神经元,胶质血管相互作用和壁内血管信号传导。神经元,星形胶质细胞和血管细胞似乎构成一个功能单元,其主要目的是维持大脑微环境的稳态。这些血管调节机制的改变导致脑功能障碍和疾病。新兴的观点是,脑血管失调不仅是脑血管病理学(例如中风)的特征,而且是神经退行性疾病(例如阿尔茨海默氏病)的特征。

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