Cerebral microvascular rarefaction induced by whole brain radiation is reversible by systemic hypoxia in mice.
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Cerebral small vessel disease: Capillary pathways to stroke and cognitive declineWhole brain radiation-induced impairments in learning and memory are time-sensitive and reversible by systemic hypoxia.Systemic influences contribute to prolonged microvascular rarefaction after brain irradiation: a role for endothelial progenitor cells.Aging exacerbates obesity-induced cerebromicrovascular rarefaction, neurovascular uncoupling, and cognitive decline in mice.Radiation attenuates physiological angiogenesis by differential expression of VEGF, Ang-1, tie-2 and Ang-2 in rat brain.Whole brain radiation-induced cognitive impairment: pathophysiological mechanisms and therapeutic targetsIonizing radiation promotes the acquisition of a senescence-associated secretory phenotype and impairs angiogenic capacity in cerebromicrovascular endothelial cells: role of increased DNA damage and decreased DNA repair capacity in microvascular radEffects of altered levels of extracellular superoxide dismutase and irradiation on hippocampal neurogenesis in female miceRadiation-induced brain injury: A reviewWhole brain radiation-induced vascular cognitive impairment: mechanisms and implications.Hippocampal-dependent neurocognitive impairment following cranial irradiation observed in pre-clinical models: current knowledge and possible future directions.Molecular, Cellular and Functional Effects of Radiation-Induced Brain Injury: A ReviewMolecular pathways: radiation-induced cognitive impairment.Circulating IGF-1 deficiency exacerbates hypertension-induced microvascular rarefaction in the mouse hippocampus and retrosplenial cortex: implications for cerebromicrovascular and brain aging.Irradiation to the young mouse brain caused long-term, progressive depletion of neurogenesis but did not disrupt the neurovascular niche.M2 macrophages are more resistant than M1 macrophages following radiation therapy in the context of glioblastoma.The hippocampal neurovascular niche during normal development and after irradiation to the juvenile mouse brain.The GH/IGF-1 axis in a critical period early in life determines cellular DNA repair capacity by altering transcriptional regulation of DNA repair-related genes: implications for the developmental origins of cancer.Cerebromicrovascular dysfunction predicts cognitive decline and gait abnormalities in a mouse model of whole brain irradiation-induced accelerated brain senescence.
P2860
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P2860
Cerebral microvascular rarefaction induced by whole brain radiation is reversible by systemic hypoxia in mice.
description
2010 nî lūn-bûn
@nan
2010年の論文
@ja
2010年論文
@yue
2010年論文
@zh-hant
2010年論文
@zh-hk
2010年論文
@zh-mo
2010年論文
@zh-tw
2010年论文
@wuu
2010年论文
@zh
2010年论文
@zh-cn
name
Cerebral microvascular rarefac ...... e by systemic hypoxia in mice.
@en
Cerebral microvascular rarefac ...... e by systemic hypoxia in mice.
@nl
type
label
Cerebral microvascular rarefac ...... e by systemic hypoxia in mice.
@en
Cerebral microvascular rarefac ...... e by systemic hypoxia in mice.
@nl
prefLabel
Cerebral microvascular rarefac ...... e by systemic hypoxia in mice.
@en
Cerebral microvascular rarefac ...... e by systemic hypoxia in mice.
@nl
P2093
P2860
P1476
Cerebral microvascular rarefac ...... e by systemic hypoxia in mice.
@en
P2093
Anna Csiszar
Daniel A Johnson
Salahuddin Ahmad
Terence S Herman
Yong Woo Lee
P2860
P304
P356
10.1152/AJPHEART.01024.2010
P577
2010-12-24T00:00:00Z