HIGH-ALTITUDE

作品数:137被引量:382H指数:9
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相关领域:生物学天文地球更多>>
相关作者:王玉科罗玉英王启均祁丽燕黄海洪更多>>
相关机构:西南科技大学空军军医大学广西气象局装甲兵工程学院更多>>
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相关基金:国家自然科学基金国家重点基础研究发展计划天津市自然科学基金中国博士后科学基金更多>>
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  • 期刊=Neural Regeneration Researchx
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Exendin-4 inhibits high-altitude cerebral edema by protecting against neurobiological dysfunction被引量:2
《Neural Regeneration Research》2018年第4期653-663,共11页Zhong-Lei Sun Xian-Feng Jiang Yuan-Chi Cheng Ying-Fu Liu Kai Yang Shuang-Long Zhu Xian-Bin Kong Yue Tu Ke-Feng Bian Zhen-Lin Liu Xu-Yi Chen 
supported by the National Key Research and Development Plan of China,No.2016YFC1101500;the National Natural Science Foundation of China,No.11672332,11102235,31200809,81772018;the Key Science and Technology Support Foundation of Tianjin City of China,No.17YFZCSY00620;the Natural Science Foundation of Tianjin City of China,No.15JCYBJC28600,17JCZDJC35400
The anti-inflammatory and antioxidant effects of exendin-4(Ex-4) have been reported previously.However,whether(Ex-4) has anti-inflammatory and antioxidant effects on high-altitude cerebral edema(HACE) remains po...
关键词:high-altitude cerebral edema EXENDIN-4 cyclic adenosine monophosphate EPACI suppressor of cytokine signaling 3 vascular endothelial growth factor HYPOXIA inflammation oxidative stress 
Acute high-altitude hypoxic brain injury Identification of ten differential proteins被引量:6
《Neural Regeneration Research》2013年第31期2932-2941,共10页Jianyu Li Yuting Qi Hui Liu Ying Cui Li Zhang Haiying Gong Yaxiao Li Lingzhi Li Yongliang Zhang 
supported by the National Natural Science Foundation of China,No.81073152;the Key Science Foundation of Tianjin in China,No.10JCZDJC21100;the Natural Science Foundation of Tianjin in China,No.10JCYBJC14700,No.13JCQNJC13200;the Science Foundation of Tianjin Key Laboratory in China,No.WHTD 201303-2
Hypobaric hypoxia can cause severe brain damage and mitochondrial dysfunction, and is involved in hypoxic brain injury. However, little is currently known about the mechanisms responsible for mi- tochondrial dysfuncti...
关键词:neural regeneration brain injury hypobaric hypoxia cerebral edema MITOCHONDRIA PROTEOMICS differential expression energy metabolism electron transport chain cognitive function grants-supported paper NEUROREGENERATION 
Correlation of vascular endothelial growth factor to permeability of blood-brain barrier and brain edema during high-altitude exposure被引量:4
《Neural Regeneration Research》2009年第10期775-779,共5页Qiquan Zhou Chang'e Liu Jing Wang Yunli Wang Bo Zhou 
Supported by:the Tackle Key Problem in Science and Technology during the "11~(th) Five-Year Plan" Period of Chinese PLA,No.06G030
BACKGROUND: Many studies have evaluated the role of vascular endothelial growth factor (VEGF) in traumatic brain edema and hemorrhagic brain edema. OBJECTIVE: To observe the effects of VEGF expression on permeabil...
关键词:HIGH-ALTITUDE blood-brain barrier PERMEABILITY vascular endothelial growth factor 
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