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颅脑创伤的输血治疗进展 被引量:2
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作者 孙健 田野 +3 位作者 王毅 董信龙 江荣才 张建宁 《天津医药》 CAS 2017年第3期329-332,共4页
颅脑创伤患者往往合并失血及凝血功能障碍,导致贫血、血小板失活、血小板及凝血因子消耗性减少等,应适当给予输血治疗,对丢失成分进行补充。但长期以来,输血治疗能否改善颅脑创伤患者的预后,以及输血治疗的指征,一直是学术界争论的焦点... 颅脑创伤患者往往合并失血及凝血功能障碍,导致贫血、血小板失活、血小板及凝血因子消耗性减少等,应适当给予输血治疗,对丢失成分进行补充。但长期以来,输血治疗能否改善颅脑创伤患者的预后,以及输血治疗的指征,一直是学术界争论的焦点。本文对颅脑创伤患者输血治疗的最新进展进行综述,为指导输血治疗提供参考。 展开更多
关键词 脑损伤 输血 红细胞 血小板 血浆 因子Ⅶ 凝血酶原 综述 颅脑创伤
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炎症调控及血管新生促进慢性硬膜下血肿吸收的研究现状 被引量:7
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作者 王东 江荣才 岳树源 《中国实用医药》 2018年第11期190-193,共4页
慢性硬膜下血肿(CSDH)是老年人常见病,常规需手术治疗,但老年人术后并发症多、复发率高是长期困扰临床的主要问题。血肿的形成机制研究经历了渗透压、局部纤溶亢进和血肿包膜再出血学说,但各种理论仍存在争议,目前国内外关于CSDH疾病病... 慢性硬膜下血肿(CSDH)是老年人常见病,常规需手术治疗,但老年人术后并发症多、复发率高是长期困扰临床的主要问题。血肿的形成机制研究经历了渗透压、局部纤溶亢进和血肿包膜再出血学说,但各种理论仍存在争议,目前国内外关于CSDH疾病病因及药物治疗相关研究仍处于推测阶段。本文就近年来关于CSDH在炎症调控及血管新生方面相关研究做总结与分析。 展开更多
关键词 慢性硬膜下血肿 炎症调控 血管新生
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Traumatic brain injury impairs synaptic plasticity in hippocampus in rats 被引量:5
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作者 ZHANG Bao-liang CHEN Xin +4 位作者 TAN Tao YANG Zhuo CARLOS Dayao jiang rong-cai ZHANG Jian-ning 《Chinese Medical Journal》 SCIE CAS CSCD 2011年第5期740-745,共6页
Background Traumatic brain injury (TBI) often causes cognitive deficits and remote symptomatic epilepsy. Hippocampal regional excitability is associated with the cognitive function. However, little is known about in... Background Traumatic brain injury (TBI) often causes cognitive deficits and remote symptomatic epilepsy. Hippocampal regional excitability is associated with the cognitive function. However, little is known about injury-induced neuronal loss and subsequent alterations of hippocampal regional excitability. The present study was designed to determine whether TBI may impair the cellular circuit in the hippocampus.Methods Forty male Wistar rats were randomized into control (n=-20) and TBI groups (n=20). Long-term potentiation, extracellular input/output curves, and hippocampal parvalbumin-immunoreactive and cholecystokinin-immunoreactive interneurons were compared between the two groups.Results TBI resulted in a significantly increased excitability in the dentate gyrus (DG), but a significantly decreased excitability in the cornu ammonis 1 (CA1) area. Using design-based stereological injury procedures, we induced interneuronal loss in the DG and CA3 subregions in the hippocampus, but not in the CA1 area. Conclusions TBl leads to the impairment of hippocampus synaptic plasticity due to the changing of interneuronal interaction. The injury-induced disruption of synaptic efficacy within the hippocampal circuit may underlie the observed cognitive deficits and symptomatic epilepsy. 展开更多
关键词 traumatic brain injury long-term potentiation HIPPOCAMPUS dentate gyrus cornu ammonis 3 area
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