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Emergency control of Spartina alterniflora re-invasion with a chemical method in Chongming Dongtan,China 被引量:11
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作者 zhi-yuan zhao Yuan Xu +3 位作者 Lin Yuan Wei Li Xiao-jing Zhu Li-quan Zhang 《Water Science and Engineering》 EI CAS CSCD 2020年第1期24-33,共10页
The exotic species Spartina alterniflora(S.alterniflora)seriously threatens the stability and functioning of saltmarsh ecosystems in the Yangtze Estuary.Ambitious efforts have been undertaken to control this species,b... The exotic species Spartina alterniflora(S.alterniflora)seriously threatens the stability and functioning of saltmarsh ecosystems in the Yangtze Estuary.Ambitious efforts have been undertaken to control this species,but subsequent re-invasion is frequent,presenting a significant barrier to restoration.The complexity and high cost of integrated physical control programs has necessitated a shift in focus,leading to considerable attention being paid to the potential of herbicides to control S.alterniflora.To find a strategy for emergency control of small and scattered patches of re-invading S.alterniflora,an in situ field experiment using Gallant(Haloxyfop-R-methyl)herbicide was conducted.The growth parameters of plant density and height were used to evaluate the control efficiency of different treatment dosages and times and sediment samples were taken for environmental toxicity analysis.The results show the following:(1)the control efficacy of the maximum proposed application dose(2.70 g/m2)was 92%for continuous swards and 100%for small patches,while those of other dosages(0.45 g/m2,0.90 g/m2,and 1.35 g/m2)were lower than 40%;(2)the appropriate implementation time was July to August with 100%mortality resulting from a single application,while S.alterniflora was shown to be capable of recovering rapidly after treatment in May;and(3)there were no significant differences in the community structure of meiofauna among the herbicide treatments and the control,and no herbicide residues were detected in sediment samples collected from treatment areas.This chemical control method was implemented in the Shanghai Chongming Dongtan National Bird Nature Reserve(CDNR).The results of this study indicate that Gallant is an environmentally friendly herbicide with high efficiency,which can be adopted for emergency control of re-invading S.alterniflora. 展开更多
关键词 SPARTINA alterniflora Re-invasion Chemical control method Gallant YANGTZE ESTUARY
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基于窄带系DPP类聚合物的高性能近红外有机光探测器件 被引量:1
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作者 秦铭聪 李清源 +9 位作者 张帆 匡俊华 刘凯 刘彦伟 朱明亮 赵志远 潘志超 边洋爽 郭云龙 刘云圻 《高分子学报》 SCIE CAS CSCD 北大核心 2022年第4期405-413,共9页
采用窄带隙给体材料DPPDTT和富勒烯衍生物受体PCBM共混作为活性层,制备了具有高激子分离和电荷传输效率的近红外有机光探测器件,并进一步采用窄带隙受体Y6代替PCBM制备一种“双窄带隙吸收”的异质结结构,在近红外区域的吸收叠加有效地... 采用窄带隙给体材料DPPDTT和富勒烯衍生物受体PCBM共混作为活性层,制备了具有高激子分离和电荷传输效率的近红外有机光探测器件,并进一步采用窄带隙受体Y6代替PCBM制备一种“双窄带隙吸收”的异质结结构,在近红外区域的吸收叠加有效地增强了器件光响应能力.最后,通过采用厚活性层、插入阻挡层以及制备倒置结构等方法,将器件的暗电流进一步降低1个数量级.在850 nm,0.53μW·cm^(−2)的近红外光照射下,比探测率提升至8.28×10^(11)Jones.同时,随着测量频率的提升,器件响应的速度和强度几乎没有发生变化,在120帧/秒的条件下仍表现出很好的循环稳定性.研究结果表明该类器件在光电通信、近红外成像以及医疗生理检测等方向具有良好的应用前景. 展开更多
关键词 窄带系DPP类聚合物 高性能 二极管 近红外有机光探测器
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An efficient lossy link localization approach for wireless sensor networks 被引量:1
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作者 Wen-yan CUI Xiang-ru MENG +2 位作者 Bin-feng YANG Huan-huan YANG zhi-yuan zhao 《Frontiers of Information Technology & Electronic Engineering》 SCIE EI CSCD 2017年第5期689-707,共19页
Network fault management is crucial for a wireless sensor network(WSN) to maintain a normal running state because faults(e.g., link failures) often occur. The existing lossy link localization(LLL) approach usually inf... Network fault management is crucial for a wireless sensor network(WSN) to maintain a normal running state because faults(e.g., link failures) often occur. The existing lossy link localization(LLL) approach usually infers the most probable failed link set first, and then gives the fault hypothesis set. However, the inferred failed link set contains many possible failures that do not actually occur. That quantity of redundant information in the inferred set can pose a high computational burden on fault hypothesis inference, and consequently decreases the evaluation accuracy and increases the failure localization time. To address the issue, we propose the conditional information entropy based redundancy elimination(CIERE), a redundant lossy link elimination approach, which can eliminate most redundant information while reserving the important information. Specifically, we develop a probabilistically correlated failure model that can accurately reflect the correlation between link failures and model the nondeterministic fault propagation. Through several rounds of mathematical derivations, the LLL problem is transformed to a set-covering problem. A heuristic algorithm is proposed to deduce the failure hypothesis set. We compare the performance of the proposed approach with those of existing LLL methods in simulation and on a real WSN, and validate the efficiency and effectiveness of the proposed approach. 展开更多
关键词 Lossy link localization Redundancy eliminating algorithm Set-covering Wireless sensor networks(WSNs) Network diagnosis
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Genetic screening method for analyzing survival motor neuron copy number in spinal muscular atrophy by multiplex ligation-dependent probe amplification and droplet digital polymerase chain reaction
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作者 Jing-Mei Hong Miao zhao +5 位作者 Jin He Xue-Jing Huang zhi-yuan zhao Wan-Jin Chen Ning Wang Jin-Jing Li 《Chinese Medical Journal》 SCIE CAS CSCD 2020年第20期2510-2511,共2页
To the Editor:Spinal muscular atrophy(SMA)is an autosomal recessive disease caused by a deficiency of the survival motor neuron 1(SMN1)protein,which causes the loss of motor neurons in the anterior horn of the spinal ... To the Editor:Spinal muscular atrophy(SMA)is an autosomal recessive disease caused by a deficiency of the survival motor neuron 1(SMN1)protein,which causes the loss of motor neurons in the anterior horn of the spinal cord.⑴A genetically similar gene,SMN2,has a translationally silent C-to-T transition at Position 6 in its 7th exon that causes only 10%correctly spliced full-length and functional SMN protein via alternative splicing. 展开更多
关键词 ATROPHY MUSCULAR TRANSLATIONAL
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