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6篇 您的检索式:作者名="HU Bingwei"
    题名 作者 年代 出处 被引量
1Request Merging Based Cross-User Deduplication for Cloud Storage with Resistance Against Appending Chunks Attack显示文摘Cross-user deduplication is an emerging technique to eliminate redundant uploading in cloud storage.Its deterministic response indicating the existence of data creates a side channel to attackers,which makes the privacy in the cloud at risk.Such kind of attack as well as further appending chunks attack,still cannot be well resisted in current solutions,thus is becoming a big obstacle in using this technique.We propose a secure cross-user deduplication,called Request merging based deduplication scheme(RMDS),which takes the lead to consider resistance against appending chunks attack in a lightweight way,let alone side channel attack.We utilize the proposed XOR based chunk-level server-side storage structure together with a request merging strategy to obfuscate attackers in minimized communication overhead.The experiment results show that,with security guaranteed,the proposed scheme is more efficient comparing with the state of the art.TANG Xin ZHANG Yi ZHOU Linna LIU Dan HU Bingwei 2021Chinese Journal of Electronics2021,30,2:3
2DNA-modified electrodes (VII)显示文摘Qi Lu Daiwen Pang Shen Hu Jieke Cheng Xiongwei Cai Caihui Shi Bingwei Mao Hongping Dai 1999Science in China Series B: Chemistry1999,,4:1
3Toxicokinetic studies on cantharidin in rabbits显示文摘Yun Keming Hu Bingwei Wang Zhijun 1992J Xi''an Med Univ1992,4,1:1
4An Aqueous Asymmetric Supercapacitor Based on Activated Carbon and Tungsten Trioxide Nanowire Electrodes显示文摘不对称的 supercapacitor (ASC ) 被作为否定电极把激活的碳用作积极电极和 WO 3 nanowire 装配,并且它的电的表演在从 0 ~ 1.5  V 的电压窗口中被测试。51  F•g −1 的一个高特定的电容能在 0.25 A•g −1 的当前的密度被完成。而且, ASC 在 800 个周期以后与 86% 电容保留显示好骑车稳定性,它的精力密度能直到在 210  W•kg −1, 和遗体的力量密度的 11.9  Wh•kg −1 在 1250  W• kg 的力量密度的 7.7  Wh•kg −1−1 。优秀电的表演也许由于水晶取向(001 ) 为 WO 3 nanowire 的飞机,它赞成在 W (VI ) 和 H + 之间的快速的反应阳离子。这水的不对称的 WO 3//AC supercapacitor 由于它 WO 3 的容易的准备为实际应用是有希望的。Xinhai Yuan Bingwei Chen Xiongwei Wu Jun Mo Zaichun Liu Zhengyong Hu Zhonghua Liu Chunjiao Zhou Haijun Yang Yuping Wu 2017Chinese Journal of Chemistry2017,35,1:1
5GSDMD in peripheral myeloid cells regulates microglial immune training and neuroinflammation in Parkinson's disease显示文摘Peripheral bacterial infections without impaired blood brain barrier integrity have been attributed to the pathogenesis of Parkinson's disease(PD).Peripheral infection promotes innate immune training in microglia and exacerbates neuroinflammation.However,how changes in the peripheral environment mediate microglial training and exacerbation of infection-related PD is unknown.In this study,we demonstrate that GSDMD activation was enhanced in the spleen but not in the CNS of mice primed with low-dose LPS.GSDMD in peripheral myeloid cells promoted microglial immune training,thus exacerbating neuroinflammation and neurodegeneration during PD in an IL-1R-dependent manner.Furthermore,pharmacological inhibition of GSDMD alleviated the symptoms of PD in experimental PD models.Collectively,these findings demonstrate that GSDMD-induced pyroptosis in myeloid cells initiates neuroinflammation by regulating microglial training during infection-related PD.Based on these findings,GSDMD may serve as a therapeutic target for patients with PD.Bingwei Wang Yan Ma Sheng Li Hang Yao Mingna Gu Ying Liu You Xue Jianhua Ding Chunmei Ma Shuo Yang Gang Hu 2023Acta Pharmaceutica Sinica B2023,13,6:0
6Higher plant photosynthetic capability in autumn responding to low atmospheric vapor pressure deficit显示文摘It has been long established that the terrestrial vegetation in spring has stronger photosynthetic capability than in autumn.However,this study challenges this consensus by comparing photosynthetic capability of terrestrial vegetation between the spring and autumn seasons based on measurements of 100 in situ eddy covariance towers over global extratropical ecosystems.At the majority of these sites,photosynthetic capability,indicated by light use efficiency(LUE)and apparent quantum efficiency,is significantly higher in autumn than in spring,due to lower atmosphere vapor pressure deficit(VPD)at the same air temperature.Seasonal VPD differences also substantially explain the interannual variability of the differences in photosynthetic capability between spring and autumn.We further reveal that VPD in autumn is significantly lower than in spring over 74.14% of extratropical areas,based on a global climate dataset.In contrast,LUE derived from a data-driven vegetation production dataset is significantly higher in autumn in over 61.02% of extratropical vegetated areas.Six Earth system models consistently projected continuous larger VPD values in spring compared with autumn,which implies that the impacts on vegetation growth will long exist and should be adequately considered when assessing the seasonal responses of terrestrial ecosystems to future climate conditions.Yawen Wang Wenfang Xu Wenping Yuan Xiuzhi Chen Bingwei Zhang Lei Fan Bin He Zhongmin Hu Shuguang Liu Wei Liu Shilong Piao 2021The Innovation2021,2,4:0
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