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Alignment of Track Oscillations during Tropical Cyclone Rapid Intensification
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作者 Tong XIE Liguang WU +1 位作者 Yecheng FENG jinghua yu 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2024年第4期655-670,共16页
Recent studies on tropical cyclone(TC)intensity change indicate that the development of a vertically aligned TC circulation is a key feature of its rapid intensification(RI),however,understanding how vortex alignment ... Recent studies on tropical cyclone(TC)intensity change indicate that the development of a vertically aligned TC circulation is a key feature of its rapid intensification(RI),however,understanding how vortex alignment occurs remains a challenging topic in TC intensity change research.Based on the simulation outputs of North Atlantic Hurricane Wilma(2005)and western North Pacific Typhoon Rammasun(2014),vortex track oscillations at different vertical levels and their associated role in vortex alignment are examined to improve our understanding of the vortex alignment during RI of TCs with initial hurricane intensity.It is found that vortex tracks at different vertical levels oscillate consistently in speed and direction during the RI of the two simulated TCs.While the consistent track oscillation reduces the oscillation tilt during RI,the reduction of vortex tilt results mainly from the mean track before RI.It is also found that the vortex tilt is primarily due to the mean vortex track before and after RI.The track oscillations are closely associated with wavenumber-1 vortex Rossby waves that are dominant wavenumber-1 circulations in the TC inner-core region.This study suggests that the dynamics of the wavenumber-1 vortex Rossby waves play an important role in the regulation of the physical processes associated with the track oscillation and vertical alignment of TCs. 展开更多
关键词 tropical cyclone rapid intensification vortex tilt Rossby wave
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Developing conservation strategies for Pinus koraiensis and Eleutherococcus senticosus by using model-based geographic distributions 被引量:4
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作者 Jizhong Wan Chunjing Wang +5 位作者 jinghua yu Siming Nie Shijie Han Juzhao Liu yuangang Zu Qinggui Wang 《Journal of Forestry Research》 SCIE CAS CSCD 2016年第2期389-400,共12页
We described potential changes in the geographic distribution and occurrence probability of Pinus koraiensis Sieb. et Zucc. and Eleutherococcus senticosus(Rupr. et Maxim.) Maxim. in the counties of northeast China. Th... We described potential changes in the geographic distribution and occurrence probability of Pinus koraiensis Sieb. et Zucc. and Eleutherococcus senticosus(Rupr. et Maxim.) Maxim. in the counties of northeast China. This information was used to identify priority areas for protection and provide protection and management recommendations within each studied county. The two species were mapped in 2884 study plots throughout this region over a 4-year period(38 400N–53 300 N, 115 050E–135 020E). We used the species distribution models(Maxent), systematic conservation planning models(Marxan), and Geographic Information Systems(Arc GIS10.0). The distributions of two species were correlated in the study area, enabling unique and economically viable joint conservation measures to be implemented. Three models were combined to identify feasible priority conservation sites. We used local spatial statistics to assess all identified conservation areas in relation to potential climate change based shifts in the geographic distribution of the two species. Model-based conservation strategies were used to identify effective measures to protect and utilize these two tree species in the study region. This study presents a novel technique for assessing wild plant distributions, in addition to serving as a model for the conservation of other species within the framework of general forest management, ecological construction, and geographical surveying. 展开更多
关键词 地理分布图 保护策略 基于模型 刺五加 红松 地理信息系统 ARCGIS 研究区域
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Forest plant and macrofungal differences in the Greater and Lesser Khingan Mountains in Northeast China:A regional-historical comparison and its implications 被引量:3
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作者 yuanyuan Wang Hui Wen +4 位作者 Kai Wang Jingxue Sun jinghua yu Qinggui Wang Wenjie Wang 《Journal of Forestry Research》 SCIE CAS CSCD 2022年第2期623-641,共19页
Forests in Northeast China in the Greater and Lesser Khingan Mountains(GKM and LKM)account for nearly 1/3 of the total state-owned forests in the country.Regional and historical comparisons of forest plants and macrof... Forests in Northeast China in the Greater and Lesser Khingan Mountains(GKM and LKM)account for nearly 1/3 of the total state-owned forests in the country.Regional and historical comparisons of forest plants and macrofungi will favor biological conservation,forest management and economic development.A total of 1067 sampling plots were surveyed on forest composition and structure,with a macrofungi survey at Liangshui and Huzhong Nature Reserves in the center of two regions.Regional and historical differences of these parameters were analyzed with a redundancy ordination of their complex associations.There were 61-76 families,189-196 genera,and 369-384 species,which was only 1/3 of the historical records.The same dominant species were larch and birch with Korean pine(a climax species)less as expected from past surveys in the LKM.Shrub and herb species were different in the two regions,as expected from historical records.There was 10-50%lower species diversity(except for herb evenness),but 1.8-to 4-time higher macrofungi diversity in the GKM.Compared with the LKM,both tree heights and macrofungi density were higher.Nevertheless,current heights averaging 10 m are half of historical records(>20 m in the 1960s).Edible macrofungi were the highest proportion in both regions,about twice that of other fungal groups,hav-ing important roles in the local economy.A major factor explaining plant diversity variations in both regions was herb cover,followed by shrubs in the GKM and herb-dominant species in the LKM.Factors responsible for macrofungi variations were tree density and shrub height.Vaccinium vitis-idaea and Larix gmelinii in the GKM but tree size and diversity were important factors in the LKM.Our findings highlighted large spatial and historical differences between the GKM and LKM in plant-macrofungal composition,forest structure,and their complex associations,which will favor precise conservation and management of forest resources in two region in the future. 展开更多
关键词 Forest structure BIODIVERSITY Redundancy ordination Species dominance Structure-species-diversity complex association decoupling
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The First High-quality Reference Genome of Sika Deer Provides Insights into High-tannin Adaptation 被引量:1
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作者 Xiumei Xing Cheng Ai +45 位作者 Tianjiao Wang Yang Li Huitao Liu Pengfei Hu Guiwu Wang Huamiao Liu Hongliang Wang Ranran Zhang Junjun Zheng Xiaobo Wang Lei Wang yuxiao Chang Qian Qian jinghua yu Lixin Tang Shigang Wu Xiujuan Shao Alun Li Peng Cui Wei Zhan Sheng Zhao Zhichao Wu Xiqun Shao Yimeng Dong Min Rong Yihong Tan Xuezhe Cui Shuzhuo Chang Xingchao Song Tongao Yang Limin Sun Yan Ju Pei Zhao Huanhuan Fan Ying Liu Xinhui Wang Wanyun Yang Min Yang Tao Wei Shanshan Song Jiaping Xu Zhigang yue Qiqi Liang Chunyi Li Jue Ruan Fuhe Yang 《Genomics, Proteomics & Bioinformatics》 SCIE CAS CSCD 2023年第1期203-215,共13页
Sika deer are known to prefer oak leaves,which are rich in tannins and toxic to most mammals;however,the genetic mechanisms underlying their unique ability to adapt to living in the jungle are still unclear.In identif... Sika deer are known to prefer oak leaves,which are rich in tannins and toxic to most mammals;however,the genetic mechanisms underlying their unique ability to adapt to living in the jungle are still unclear.In identifying the mechanism responsible for the tolerance of a highly toxic diet,we have made a major advancement by explaining the genome of sika deer.We generated the first high-quality,chromosome-level genome assembly of sika deer and measured the correlation between tannin intake and RNA expression in 15 tissues through 180 experiments.Comparative genome analyses showed that the UGT and CYP gene families are functionally involved in the adaptation of sika deer to high-tannin food,especially the expansion of the UGT family 2 subfamily B of UGT genes.The first chromosome-level assembly and genetic characterization of the tolerance to a highly toxic diet suggest that the sika deer genome may serve as an essential resource for understanding evolutionary events and tannin adaptation.Our study provides a paradigm of comparative expressive genomics that can be applied to the study of unique biological features in non-model animals. 展开更多
关键词 Sika deer Whole-genome sequencing Chromosome-scale assembly Oak leaf Tannin tolerance
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一例使用异物抓捕器治疗导管纤维蛋白鞘的病例报告
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作者 张天 余京华 +2 位作者 王攀登 郭晨凡 刘涛 《中华介入放射学电子杂志》 2023年第3期284-286,共3页
纤维蛋白鞘是一种留置于静脉导管表面的膜状覆盖物,常发生于长期透析的导管留置病人致血透导管流量下降、血栓形成甚至拔管后肺栓塞等不良后果。目前临床上普遍采用尿激酶溶栓,效果不佳时往往采用拔除复插,本病例术者采用血管外科最常... 纤维蛋白鞘是一种留置于静脉导管表面的膜状覆盖物,常发生于长期透析的导管留置病人致血透导管流量下降、血栓形成甚至拔管后肺栓塞等不良后果。目前临床上普遍采用尿激酶溶栓,效果不佳时往往采用拔除复插,本病例术者采用血管外科最常用的耗材之一——异物抓捕器剥除并捕获纤维蛋白鞘,复通效果较好,现报告如下。 展开更多
关键词 纤维蛋白 异物抓捕器 透析导管
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A potent PGK1 antagonist reveals PGK1 regulates the production of IL-1βand IL-6 被引量:2
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作者 Liping Liao Wenzhen Dang +17 位作者 Tingting Lin jinghua yu Tonghai Liu Wen Li Senhao Xiao Lei Feng Jing Huang Rong Fu Jiacheng Li Liping Liu Mingchen Wang Hongru Tao Hualiang Jiang Kaixian Chen Xingxing Diao Bing Zhou Xiaoyan Shen Cheng Luo 《Acta Pharmaceutica Sinica B》 SCIE CAS CSCD 2022年第11期4180-4192,共13页
Glycolytic metabolism enzymes have been implicated in the immunometabolism field through changes in metabolic status. PGK1 is a catalytic enzyme in the glycolytic pathway. Here, we set up a high-throughput screen plat... Glycolytic metabolism enzymes have been implicated in the immunometabolism field through changes in metabolic status. PGK1 is a catalytic enzyme in the glycolytic pathway. Here, we set up a high-throughput screen platform to identify PGK1 inhibitors. DC-PGKI is an ATPcompetitive inhibitor of PGK1 with an affinity of Kd= 99.08 nmol/L. DC-PGKI stabilizes PGK1in vitro and in vivo, and suppresses both glycolytic activity and the kinase function of PGK1. In addition,DC-PGKI unveils that PGK1 regulates production of IL-1β and IL-6 in LPS-stimulated macrophages.Mechanistically, inhibition of PGK1 with DC-PGKI results in NRF2(nuclear factor-erythroid factor 2-related factor 2, NFE2L2) accumulation, then NRF2 translocates to the nucleus and binds to the proximity region of Il-1β and Il-6 genes, and inhibits LPS-induced expression of these genes. DC-PGKI ameliorates colitis in the dextran sulfate sodium(DSS)-induced colitis mouse model. These data support PGK1 as a regulator of macrophages and suggest potential utility of PGK1 inhibitors in the treatment of inflammatory bowel disease. 展开更多
关键词 GLYCOLYSIS Phosphoglycerate kinasel MACROPHAGES NRF2 INFLAMMATION
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Ag Nanoparticles Anchored on Nanoporous Ge Skeleton as High-Performance Anode for Lithium-ion Batteries 被引量:1
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作者 Ji Zhou Peng Huang +4 位作者 Qin Hao Lina Zhang Hong Liu Caixia Xu jinghua yu 《Chinese Journal of Chemistry》 SCIE CAS CSCD 2021年第10期2881-2888,共8页
Main observation and conclusion Nanoporous(NP)Ge/Ag composite is controllably fabricated via one simple dealloying method under mild conditions.After corroding the well-designed Ge9Ag1Al90 source alloy,the resulting G... Main observation and conclusion Nanoporous(NP)Ge/Ag composite is controllably fabricated via one simple dealloying method under mild conditions.After corroding the well-designed Ge9Ag1Al90 source alloy,the resulting Ge/Ag consists of the three dimensional(3D)interconnected Ge network skeleton with Ag nanoparticles uniformly dispersed onto the surface.Benefitting from unique 3D porous nanostructure and introduction of high-conductive Ag,the NP Ge/Ag composite exhibits much enhanced lithium storage performances by comparison with pure Ge material,including higher reversible capacitance,optimized rate capability as well as superior cycling performances.Besides,the NP Ge/Ag holds high cycling stability with large reversible capacity of 500 mA·h·g^(–1)remained under high current rate of 3200 mA·g^(-1)for an extended period of 300 loops.The Ge/Ag composite presents great potential in applications as an advanced anode candidate for lithium ion batteries in virtue of its excellent performances and green fabrication. 展开更多
关键词 Germanium Nanostructures DEALLOYING ANODE Lithium-ion batteries
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Steric paper based ratio-type electrochemical biosensor with hollow-channel for sensitive detection of Zn2+
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作者 Li Li Yan Zhang +3 位作者 Lina Zhang Shenguang Ge Mei Yan jinghua yu 《Science Bulletin》 SCIE EI CAS CSCD 2017年第16期1114-1121,共8页
The construction of flexible platform possessing the functions of immobilizing, separating, rinsing, and high-throughput analysis plays a significant role in biological and clinical research. Herein, hollowchannel tec... The construction of flexible platform possessing the functions of immobilizing, separating, rinsing, and high-throughput analysis plays a significant role in biological and clinical research. Herein, hollowchannel technique was integrated with lab-on-paper for the simultaneous determination of two different concentrations of Zn^(2+) based on the origami principle, in which microfluidic channels were first patterned on a cellulose paper using commercial solid-state wax printer. Hollow-channels were created by laser cutting method as the role of both injecting ending and reaction tank. After screen printing three electrodes system, the resulting planar paper sheets were then folded into steric structures and functionalized by in-situ synthesized reduced graphene oxide. As a proof-of-concept, such lab-on-paper device was employed in the ratiometric electrochemical monitoring of zinc ion from the environment and HepG2 cells extract, by combining with co-catalysis of porous metal-organic frameworks and hemin/G-quadruplex toward H_2O_2 in the linear range of 0.1–7,000 nmol/L. The results indicated that integrating hollow-channel with steric lab-on-paper offered a new methodological approach for the development of metal ions monitoring research. It is believed that it could be useful for various point-of-care related research fields, such as, on-site environmental monitoring, food safety, and disease diagnosis. 展开更多
关键词 空间实验室 通道技术 电化学传感器 HEPG2细胞 电化学监测 空心 丝网印刷电极 环境监测
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增温驱动的核心微生物的迁移可指示土壤属性的改变
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作者 王尚 鲍雪莲 +23 位作者 冯凯 邓晔 周文君 邵鹏帅 郑甜甜 姚飞 杨山 刘圣恩 史荣久 白震 解宏图 于景华 张颖 张一平 沙丽清 宋清海 刘运通 周集中 张于光 李慧 王清奎 韩兴国 朱永官 梁超 《Science Bulletin》 SCIE EI CSCD 2021年第19期2025-2035,M0004,共12页
尽管微生物-气候的相互作用已得到越来越多的研究者和决策者的认可,但微生物的高多样性和对气候环境变化多变量的响应导致预测微生物在未来气候背景下的分布格局非常困难.本研究依托于中国土壤微生物组计划,基于采集自中国东部森林的160... 尽管微生物-气候的相互作用已得到越来越多的研究者和决策者的认可,但微生物的高多样性和对气候环境变化多变量的响应导致预测微生物在未来气候背景下的分布格局非常困难.本研究依托于中国土壤微生物组计划,基于采集自中国东部森林的1600多个样品的16S r RNA基因测序数据,首先证实了微生物群落组成和多样性的纬度分布规律且温度对微生物群落组成有显著的直接作用.其次,利用核心微生物代替整体群落来进行多样性的缩减,并将这些核心微生物根据其对环境的偏好性划分为不同的生态集群,这些生态集群在空间上的热点区域,即高丰度区域相互不重叠.此外,通过Cubist模型预测未来不同气候变化情景下(RCP2.6和RCP8.5)各生态集群的丰度变化并将其投影到中国森林生态系统分布区域,通过与现在的分布格局做对比得到增温驱动的生态集群空间分布格局的变化.这些变化一方面可以指示集群内微生物对未来气候变化的适应性,另一方面考虑到每一类生态集群所代表的环境偏好性,这些变化也可进一步用来指示未来气候变化背景下土壤属性的变化. 展开更多
关键词 预测微生物 土壤属性 气候环境变化 气候变化背景 RNA基因 16S 高丰度 热点区域
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Simulation study of a dual-cavity window with gravity-driven cooling mechanism
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作者 Liao Li Chong Zhang +4 位作者 Xinhua Xu jinghua yu Feifei Wang Wenjie Gang Jinbo Wang 《Building Simulation》 SCIE EI CSCD 2022年第7期1339-1352,共14页
Utilization of high temperature cooling sources or natural energy sources can potentially contribute to improving energy efficiency in buildings.In this study,a dual-cavity window with gravity-driven cooling mechanism... Utilization of high temperature cooling sources or natural energy sources can potentially contribute to improving energy efficiency in buildings.In this study,a dual-cavity window with gravity-driven cooling mechanism(GDC window)was proposed to integrate the low-grade cooling sources into the glazing system for improving the thermal performance of the window.The embedded pipes circulated with low-grade cooling water are the key component of GDC window,which can remove the absorbed solar heat and reduce the heat gain through the window.A numerical model based on CFD simulation was developed to analyze the flow characteristic and heat transfer within the GDC window.Model validation was conducted by comparing the simulation results with measurement data obtained from previous study.Numerical simulations were carried out to compare the thermal performance of GDC window with that of conventional blinds window.Sensitivity analysis was performed to evaluate the influence of some design parameters on the flow characteristic and thermal performance of GDC window.The simulated results show that compared with the blinds window,the GDC window reduces 57.4%and 40.4% of heat gain in summer for the low-grade cooling water of 18℃ and 25℃;respectively.Reducing the flow resistance within the GDC window is significant for improving the heat removal performance of the embedded pipes.This study provides an alternative solution to integrate the low-grade cooling sources into the glazing system for enhancing the energy-efficiency and decreasing the building energy demand in cooling-dominated buildings. 展开更多
关键词 window system low-grade cooling source active insulation gravity-driven CFD
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A Paper-Supported Photoelectrochemical Sensing Platform Based on Surface Plasmon Resonance Enhancement for Real-Time H_(2)S Determination
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作者 Fang Wang Qingfu Fan +3 位作者 Yanhu Wang Shenguang Ge Mei Yan jinghua yu 《Journal of Analysis and Testing》 EI 2019年第1期89-98,共10页
Based on in situ generation of CdS quantum dots(QDs)and surface plasmon resonance(SPR)enhancement between CdS QDs and Ag nanoparticles(NPs),an innovative paper-supported photoelectrochemical(PEC)sensing platform was c... Based on in situ generation of CdS quantum dots(QDs)and surface plasmon resonance(SPR)enhancement between CdS QDs and Ag nanoparticles(NPs),an innovative paper-supported photoelectrochemical(PEC)sensing platform was constructed for real-time intracellular H_(2)S detection.SiO_(2)shell was coated on the Ag NPs to improve the stability of Ag NPs.H_(2)S was used to trigger the formation of CdS QDs,thereby inducing an improvement of photocurrent response.CdS QDs grown on the Ag@SiO_(2)core-shell NPs worked efficiently to absorb visible light.The resulting CdS QDs-Ag@SiO_(2)core-shell NPs exhibit improved PEC behavior,which was attributed to the surface plasmon-resonance effect of Ag NPs.Meanwhile,the separation of cell binding from the photoelectrode would eliminate the commonly existing affection dur-ing the biorecognition processes.This novel SPR-enhanced PEC sensing platform not only achieved satisfactory analysis results toward H_(2)S,but also showed excellent sensitivity,selectivity,low cost,and portable features.The strategy of the SPR through the in situ generation of semiconductor nanoparticles on the surface of noble metal semiconductor paves way for the improvements of PEC analytical performance. 展开更多
关键词 PAPER PHOTOELECTROCHEMICAL Surface plasmon resonance Ag@SiO_(2) CDS Intracellular H_(2)S
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