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数据库水印模型及其算法综述 被引量:6
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作者 王春东 杨蕾 +2 位作者 万福金 刘哲理 朱立坤 《电子学报》 EI CAS CSCD 北大核心 2019年第4期946-954,共9页
大数据时代迅速发展的同时,如何解决数据的版权保护、信息保存、叛逆溯源等安全问题,也变得越来越重要.数据库水印技术是最有效的防护技术,其面临的最大挑战是如何在不影响用户使用的前提下嵌入水印,且保证在不影响水印信息提取的前提... 大数据时代迅速发展的同时,如何解决数据的版权保护、信息保存、叛逆溯源等安全问题,也变得越来越重要.数据库水印技术是最有效的防护技术,其面临的最大挑战是如何在不影响用户使用的前提下嵌入水印,且保证在不影响水印信息提取的前提下抵挡各种常见的水印攻击.本文首先描述了数据库水印的基本概念和工作原理;然后,介绍了常见的数据库水印技术,并进行了分类;进而,总结了针对数据库水印的攻击行为,分析了特定水印技术的抗攻击性;接着详细分析了基于失真与基于无失真的典型水印技术,并简要分析了数据库指纹的现有技术手段;最后,指出各种现有的技术研究的关键与不足,提出了下一步可研究的方向. 展开更多
关键词 数据库水印 数据库指纹 版权声明 鲁棒性
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Neuroprotective effect of recombinant human erythropoietin on optic nerve injury in rats 被引量:9
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作者 WANG Hui liu zhe-li +2 位作者 ZHUANG Xiao-tong WANG Min-fang XU Li 《Chinese Medical Journal》 SCIE CAS CSCD 2009年第17期2008-2012,共5页
Background Optic nerve injury, caused by retinal and optic nerve diseases, can eventually result in vision loss. To date, few effective treatments have been discovered to restore visual function. Previous studies show... Background Optic nerve injury, caused by retinal and optic nerve diseases, can eventually result in vision loss. To date, few effective treatments have been discovered to restore visual function. Previous studies showed that recombinant human erythropoietin (rhEPO) has a neuroprotective effect on the central nervous system, particularly in nerve injury. In this study, we investigated the effects of rhEPO on axonal regeneration and functional restoration following optic nerve injury. This was done by measuring the expression of growth associated protein 43 (GAP-43), a marker for neuronal regeneration, on the retina and flash-visual evoked potential (F-VEP). Methods Adult Wistar rats were randomly assigned to rhEPO and control (saline) groups. Optic nerve crush injury models were established and rhEPO or saline were immediately injected into the vitreous cavity. The expression of GAP-43 was detected by immunohistochemistry and the F-VEP was measured pre-injury, immediately after injury, 1 week and 2 weeks post-injury. Results No detectable staining for GAP-43 was observed in normal retina. In the control group, the level of GAP-43 expression was higher at 1 week post-injury, but decreased at 2 weeks. In the rhEPO group, the level of GAP-43 expression was notably higher at both 1 week and 2 weeks. At each time point post-injury, the expression of GAP-43 in rhEPO group was significantly higher than the control group (P 〈0.05). Obvious changes in F-VEP examination were detected immediately after optic nerve injury, including significantly prolonged latency and decreased amplitude of the P1 wave. In the control group, the changes were still obvious at 1 week. The latency was decreased and the amplitude had slightly recovered to 28.23% of the normal value at 2 weeks. In rhEPO group, there was significantly more recovery than the control group at 1 week and 2 weeks post-injury (P 〈0.05). The latency most close to the normal level and the amplitude had recovered to 65.51% of the normal value at 2 weeks. Conclusions rhEPO can prolong the expression of GAP-43 and increase its intensity after optic nerve injury, thereby promoting neural repair and axonal regeneration. Under the protection of rhEPO, the conduction velocity of the optic nerve recovered significantly. Therefore, rhEPO has neuroprotective effects on the optic nerve and promotes functional restoration of the optic nerve. Chin Med J 2009;122(17):2008-2012 展开更多
关键词 ERYTHROPOIETIN optic nerve injuries retinal ganglion cells growth associated protein 43
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