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| 1 | A Novel Feature-based Method for Sentiment Analysis of Chinese Product Reviews显示文摘Sentiment analysis of online reviews and other user generated content is an important research problem for its wide range of applications.In this paper,we propose a feature-based vector model and a novel weighting algorithm for sentiment analysis of Chinese product reviews.Specifically,an opinionated document is modeled by a set of feature-based vectors and corresponding weights.Different from previous work,our model considers modifying relationships between words and contains rich sentiment strength descriptions which are represented by adverbs of degree and punctuations.Dependency parsing is applied to construct the feature vectors.A novel feature weighting algorithm is proposed for supervised sentiment classification based on rich sentiment strength related information.The experimental results demonstrate the effectiveness of the proposed method compared with a state of the art method using term level weighting algorithms. | LIU Lizhen SONG Wei WANG Hanshi LI Chuchu LU Jingli | 2014 | China Communications2014,11,3: | 5 |
| 2 | Top-k probabilistic prevalent co-location mining in spatially uncertain data sets显示文摘 | Lizhen WANG Jun HAN Hongmei CHEN Junli LU | 2016 | Frontiers of Computer Science2016,10,3: | 4 |
| 3 | Biomechanism of impact resistance in the woodpecker's head and its application显示文摘The woodpecker does not suffer head/eye impact injuries while drumming on a tree trunk with high acceleration(more than 1000×g) and high frequency.The mechanism that protects the woodpecker's head has aroused the interest of ornithologists,biologists and scientists in the areas of mechanical engineering,material science and electronics engineering.This article reviews the literature on the biomechanisms and materials responsible for protecting the woodpecker from head impact injury and their applications in engineering and human protection. | WANG LiZhen LU Shan LIU XiaoYu NIU XuFeng WANG Chao NI YiKun ZHAO MeiYa FENG ChengLong ZHANG Ming FAN YuBo | 2013 | Science China(Life Sciences)2013,56,8: | 3 |
| 4 | Spatio-temporal Evolution and Driving Factors of the High-quality Development of Provincial Tourism in China显示文摘Accelerating the promotion of high-quality development of tourism(HQDT) is of great significance to the sustainable development of tourism. This paper defined the concept of HQDT, and then built an evaluation system for HQDT measurement to analyze the spatio-temporal evolution characteristics of China’s HQDT based on provincial panel data from 2010 to 2019, using Geodetector to explore the similarities and differences between driving factors of HQDT and tourism development scale(TDS). The results show that:1) Taking the development concepts of innovation, coordination, green, openness and sharing as the guidance, and considering the organic unity of quantity and quality, the evaluation index system of the HQDT consists of six dimensions of economic stability, innovation driving, coordination and linkage, green and sustainability, openness and cooperation, and sharing and harmony, which respectively represent the basis, momentum, means, orientation, direction and purpose of the HQDT;2) The level of China’s HQDT shows an upward trend, presenting the characteristics of eastern region > central region > western region > northeastern region in 2019. The regional differences in China’s HQDT show a downward trend, and the intra-regional differences have replaced the inter-regional differences as the main source of regional differences;3) China’s HQDT shows the characteristics of higher in the east and lower in the west along the Hu line, while the improvement speed of HQDT shows the characteristics of faster in the west and slower in the east, making the decline of east-west differentiation of China’s HQDT and the movement of the gravity center towards southwest;4) Both HQDT and TDS are obviously driven by tourism capital investment and regional consumption. In terms of differences, the HQDT is more driven by government guidance, innovation driving force, and opening up, while the main driving factors of TDS are more biased toward capital elements and hardware facilities, including informatization, tourism resource, traffic, and eco-environment. | WANG Xinyue WANG Mengmeng LU Xuejing GUO Lizhen ZHAO Ruixin JI Ranran | 2022 | Chinese Geographical Science2022,32,5: | 2 |
| 5 | Facile preparation of nano-g-C_(3)N_(4)/UiO-66-NH_(2) composite as sorbent for high-efficient extraction and preconcentration of food colorants prior to HPLC analysis显示文摘In this work,the nano-g-C_(3)N_(4)/Ui O-66-NH_(2)composite was prepared by one-step solvothermal method.The as-prepared composite was characterized by scanning electron microscopy,Brunner-Emmet-Teller measurement,energy dispersive spectrometer,X-ray diffraction,and Fourier transform infrared spectroscopy.By using nano-g-C_(3)N_(4)/Ui O-66-NH_(2)composite as sorbent,a dispersive solid-phase extraction coupled with high-performance liquid chromatography was developed to sensitive analysis of food colorants including tartrazine,amaranth,carmine,sunset yellow,allura red and bright blue.The experiment parameters including the amount of sorbent,adsorption time,the p H of adsorption solution,desorption time,desorption solvent,the p H of desorption solution as well as the proportion between desorption solvent and buffer solvent were investigated.Under the optimized conditions,the limits of detection(S/N=3) and limits of quantitation (S/N=10) were determined in the ranges of 0.08-0.8 and 0.2-2.0 ng/m L,respectively.With the developed sample pretreatment method,carmine and brilliant blue were determined from blueberry juice by HPLC-DAD.The contents were calculated as 1.53μg/m L and0.17μg/mL,respectively. | Xiaowan Zhang Yixin Yang Peige Qin Lizhen Han Wenli Zhu Shaofeng Duan Minghua Lu Zongwei Cai | 2022 | Chinese Chemical Letters2022,33,2: | 2 |
| 6 | A grid-based selection method for Top-k显示文摘 | Lu Junli Wang Lizhen Li Fei | 2006 | Journal of Computational Information System2006,2,4: | 1 |
| 7 | Advanced of elsholtzia pharmacologic action显示文摘 | WANG LIVING ZHANG LIZHEN LU GANGYING | 2000 | LISHIZHEN MEDICINE AND MATERIA MEDICA RESEARCH2000,11,4: | 1 |
| 8 | Efficient discov- ery of spatial co-location patterns using the iCPI-tree显示文摘 | Wang Lizhen Ban Yuzhen Lu Zhongyu | 2009 | The Open Information Systems Journal2009,3,2: | 1 |
| 9 | A New Join-less Approach for Co-location Pattern Mining显示文摘 | Wang Lizhen Bao Yuzhen Lu Joan | 2008 | IEEE2008,,: | 1 |
| 10 | An Order-clique-based Approach for Mining Maximal Co-locations显示文摘 | Wang Lizhen Zhou Lihua Lu Joan | 2009 | Information Sciences2009,179,: | 1 |
| 11 | Efficient discovery of spatial co-location patterns using the ICPI-tree显示文摘 | Wang Lizhen Bao Yuzhen Lu Zhongyu | 2009 | The Open Information Systems Journal2009,3,1: | 1 |
| 12 | An order-clique-based approach for mining maximal co-locations显示文摘 | Wang Lizhen Zhou Lihua Lu J | 2009 | Information Sciences2009,179,19: | 1 |
| 13 | An order-clique-based approach for mining maximal co-locations显示文摘 | Lizhen Wang Lihua Zhou Joan Lu Jim Yip | 2009 | Information Sciences2009,,19: | 1 |
| 14 | Anthocyanin extracts from purple sweet potato by means of microwave baking and acidified electrolyzed water and their antioxidation in vitro显示文摘 | LU Lizhen ZHOU Yuzhen ZHANG Yuqing | 2010 | International Journal of Food Science and Technology2010,45,: | 1 |
| 15 | An order-clique-based approach for mining maximal co-locations显示文摘 | Wang Lizhen Zhou Lihua Lu Joan | 2009 | Information Sciences2009,179,19: | 1 |
| 16 | Ultrastretchable and wearable conductive multifilament enabled by buckled polypyrrole structure in parallel显示文摘Stretchable conductive fibers have attracted much attention due to their potential use in wearable electronics.However,the ultrahigh strain insensitive conductivity is hindered by mechanical mismatch in Young’s modulus and failure of stretchable structures under large deformation.This challenge is addressed with a conductive and elastic multifilament made of the polyurethane monofilaments that are surface-coated with buckled polypyrrole(PPy)of which flexibility is improved by sodium sulfosalicylate.Such parallel conductive monofilaments with PPy buckling on surface reduce the influence of cracks in the conductive coating on the overall conductivity,displaying an ultra-high strain insensitive behavior(quality factor Q=10.9).Remarkably,various complex forms of wearable electronic textiles made by this conductive multifilament maintain the strain-insensitive behavior of the original multifilament,even upon the large deformation of human joint.This multifilament with wrinkled PPy has attractive advantages in the application of super-stretched wearable electronic devices. | Yimeng Li Yaya Gao Lizhen Lan Qian Zhang Leqian Wei Mengqi Shan Lamei Guo Fujun Wang Jifu Mao Ze Zhang Lu Wang | 2022 | npj Flexible Electronics2022,6,1: | 1 |
| 17 | Rho 1 participates in parasitoid wasp eggs maturation and host cellular immunity inhibition显示文摘Endoparasitoid wasps introduce venom into their host insects during the egglaying stage.Venom proteins play various roles in the host physiology,development,immunity,and behavior manipulation and regulation.In this study,we identified a venom protein,MmRhol,a small guanine nucleotide-binding protein derived from ovary in the endoparasitoid wasp Microplitis mediator and found that knockdown of its expression by RNA interference caused down-regulation of vitellogenin and juvenile hormone,egg production,and cocoons formation in the female wasps.We demonstrated that MmRho1 entered the cotton bollworm's(host)hemocytes and suppressed cellular immune responses after parasitism using immunofluorescence staining.Furthermore,wasp MmRhol interacted with the cotton bollworm's actin cytoskeleton rearrangement regulator diaphanous by yeast 2-hybrid and glutathione s-transferase pull-down.In conclusion,this study indicates that MmRho1 plays dual roles in wasp development and the suppression of the host insect cellular immune responses. | Ruijuan Wang Zhe Lin Lizhen Zhou Caihua Chen Xianhao Yu Junje Zhang Zhen Zou Zhiqiang Lu | 2023 | Insect Science2023,30,3: | 1 |
| 18 | Separation performance of guanidinium-based ionic liquids as stationary phases for gas chromatography显示文摘 | Lizhen Qiao Kai Lu Meiling Qi Ruonong Fu | 2012 | Journal of Chromatography A2012,,: | 1 |
| 19 | Rho- dosporidium paludigenum induced resistance in Pon- kan mandarinagainst Penicillium digitatum requires ethylene-dependent signalingpathway 显示文摘 | Laifeng Lu Shixiang Xu Lizhen Zeng | 2014 | Posthar- vest Biology and Technology2014,97,: | 1 |
| 20 | Biomechanism of resistance to retinal injury in woodpecker’s eyes显示文摘Retinal injury is the most common ocular impairment associated with shaken baby syndrome(SBS), which could lead to vision loss and blindness. However, a woodpecker does not develop retinal hemorrhages or detachment even at a high acceleration of 1,000×g during pecking. To understand the mechanism of retinal injury and its resistance strategy, we put insight into the special ability of the woodpecker to protect the retina against damage under acceleration–deceleration impact. In this study, the structural and mechanical differences on the eyes of the woodpecker and human were analyzed quantitatively based on anatomical observation. We developed finite element eye models of the woodpecker and human to evaluate the dynamic response of the retina to the shaking load obtained from experimental data. Moreover, several structural parameters and mechanical conditions were exchanged between the woodpecker and human to evaluate their effects on retinal injury in SBS. The simulation results indicated that scleral ossification, lack of vitreoretinal attachment, and rotational acceleration–deceleration impact loading in a woodpecker contribute to the resistance to retinal injuries during pecking. The above mentioned special physical structures and mechanical behavior can distribute the high strain in the posterior segment of the woodpecker’s retina, which decrease the risk of retinal injury to SBS. | Shan Lu Xingyu Fan Sijian Liu Xiaoyu Liu Lizhen Wang | 2020 | Science China(Life Sciences)2020,63,4: | 1 |