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| 1 | Serum vascular endothelial growth factor‐C combined with multi‐detector CT in the preoperative diagnosis of lymph node metastasis of gastric cancer显示文摘 | Tian‐BaoWANG JinWANG Xiu‐QingWEI BoWEI Wen‐GuangDONG | 2012 | Asia‐Pacific Journal of Clinical Oncology2012,,2: | 1 |
| 2 | Study on factors influencing stagnation point offset of turbulent opposed jets显示文摘 | Wei‐FengLi Tian‐LiangYao Fu‐ChenWang | 2010 | AIChE J2010,,10: | 1 |
| 3 | Supramolecular adhesive materials from small‐molecule self‐assembly显示文摘Developing high‐performance adhesive materials not only aims at industrial and social requirements but also bears the fundamental importance of understanding the chemical factors of biological adhesion to develop biomimetic adhesive materials.Owing to the wide development of supramolecular chemistry,numerous supramolecular tools are exploited and proved to be reliable in the replacement of traditional covalent materials by reversible noncovalent or dynamic covalent materials.Taking advantage of these readyto‐use supramolecular toolboxes,supramolecular adhesive materials are rising and promising toward“smart”adhesives,that is,enabling responsiveness,reversibility,and recyclability.Compared with polymeric adhesive materials,low‐molecular‐weight adhesives feature chemically precise structure,easier engineering by molecular design,and hence higher reproducibility.However,it remains highly challenging to make high‐performance adhesive materials by low‐molecular‐weight feedstocks.This review will focus on the recent advancement in the construction of supramolecular adhesive materials by smallmolecule self‐assembly.The design guidelines and consideration on the molecular scale will be discussed and summarized on how to enhance the strength of adhesives.Meanwhile,owing to the dynamic nature of supramolecular self‐assembly,several“smart”functions of such materials will be presented,such as stimuli–responsiveness and adaptiveness.Finally,current challenges and future perspectives of this emerging field will be proposed. | Chen‐Yu Shi Qi Zhang He Tian Da‐Hui Qu | 2020 | SmartMat2020,1,1: | 5 |
| 4 | Three‐dimensional neural differentiation of embryonic stem cells with ACM induction in microfibrous matrices in bioreactors显示文摘 | Ning Liu Anli Ouyang Yan Li Shang‐Tian Yang | 2013 | Biotechnol Progress2013,,4: | 2 |
| 5 | A comparative study of ipsilateral intertrochanteric and femoral shaft fractures treated with long proximal femoral nail antirotation or plate combinations显示文摘 | Wen‐yueWang Tian‐fuYang LeiLiu Fu‐xingPei Li‐mingXie | 2012 | Orthopaedic Surgery2012,,1: | 1 |
| 6 | Cell‐based screening of traditional chinese medicines for proliferation enhancers of mouse embryonic stem cells显示文摘 | Ding Li Sarah Isherwood Andrew Motz Ru Zang Shang‐Tian Yang Jufang Wang Xiaoning Wang | 2013 | Biotechnol Progress2013,,3: | 1 |
| 7 | Safety and efficacy of sunitinib for advanced non‐clear cell renal cell carcinoma显示文摘 | Hong‐Zhe Shi Jun Tian Chang‐Ling Li | 2015 | Asia‐Pac J Clin Oncol2015,,4: | 1 |
| 8 | Luminescent Mechanochromic Porous Coordination Polymers显示文摘 | Tian Wen Xiao‐Ping Zhou De‐Xiang Zhang Dan Li | 2014 | Chem. Eur. J2014,,3: | 1 |
| 9 | Optimization of microwave‐assisted extraction of polyphenols from apple pomace using response surface methodology and HPLC analysis显示文摘 | Xue‐LianBai Tian‐LiYue Ya‐HongYuan Hua‐WeiZhang | 2010 | J Sep Science (鈥?)2010,,23: | 1 |
| 10 | Survival and recurrence free benefits with different lymphadenectomy for resectable gastric cancer: A meta‐analysis显示文摘 | Lei Jiang Ke‐Hu Yang Quan‐Lin Guan Peng Zhao Yan Chen Jin‐Hui Tian | 2013 | J Surg Oncol2013,,8: | 3 |
| 11 | Intraductal radiofrequency ablation for refractory benign biliary stricture: P ilot feasibility study显示文摘 | Bing Hu Dao‐Jian Gao Jun Wu Tian‐Tian Wang Xiao‐Ming Yang Xin Ye | 2014 | Digestive Endoscopy2014,,4: | 2 |
| 12 | Survival and recurrence free benefits with different lymphadenectomy for resectable gastric cancer: A meta‐analysis显示文摘 | Lei Jiang Ke‐Hu Yang Quan‐Lin Guan Peng Zhao Yan Chen Jin‐Hui Tian | 2013 | J. Surg. Oncol2013,,: | 1 |
| 13 | High‐titer n ‐butanol production by clostridium acetobutylicum JB200 in fed‐batch fermentation with intermittent gas stripping显示文摘 | Chuang Xue Jingbo Zhao Congcong Lu Shang‐Tian Yang Fengwu Bai I.‐Ching Tang | 2012 | Biotechnol Bioeng2012,,11: | 1 |
| 14 | Systematic review and meta‐analysis of the effectiveness and safety of extended lymphadenectomy in patients with resectable gastric cancer显示文摘 | L. Jiang K.‐H. Yang Y. Chen Q.‐L. Guan P. Zhao J.‐H. Tian Q. Wang | 2014 | Br J Surg2014,,6: | 1 |
| 15 | Simulating effect of anthropogenic activities and climate variation on Liulin Springs discharge depletion by using the ARIMAX model显示文摘 | Yonghong Hao Jing Wu Qingxia Sun Yuen Zhu Yan Liu Zhongtang Li Tian‐Chyi J. Yeh | 2013 | Hydrol Process2013,,18: | 1 |
| 16 | A robust deformed convolutional neural network(CNN)for image denoising显示文摘Due to strong learning ability,convolutional neural networks(CNNs)have been developed in image denoising.However,convolutional operations may change original distributions of noise in corrupted images,which may increase training difficulty in image denoising.Using relations of surrounding pixels can effectively resolve this problem.Inspired by that,we propose a robust deformed denoising CNN(RDDCNN)in this paper.The proposed RDDCNN contains three blocks:a deformable block(DB),an enhanced block(EB)and a residual block(RB).The DB can extract more representative noise features via a deformable learnable kernel and stacked convolutional architecture,according to relations of surrounding pixels.The EB can facilitate contextual interaction through a dilated convolution and a novel combination of convolutional layers,batch normalisation(BN)and ReLU,which can enhance the learning ability of the proposed RDDCNN.To address long-term dependency problem,the RB is used to enhance the memory ability of shallow layer on deep layers and construct a clean image.Besides,we implement a blind denoising model.Experimental results demonstrate that our denoising model outperforms popular denoising methods in terms of qualitative and quantitative analysis.Codes can be obtained at http://gffzz188fe103f8f1460as0qwb9ckuokq96ucu.ffgz.tsg.suse.edu.cn/hellloxiaotian/RDDCNN. | Qi Zhang Jingyu Xiao Chunwei Tian Jerry Chun‐Wei Lin Shichao Zhang | 2023 | CAAI Transactions on Intelligence Technology2023,8,2: | 1 |
| 17 | Lymphangiogenesis and Prognostic Significance of Vascular Endothelial Growth Factor C in Gastro‐oesophageal Junction Adenocarcinoma显示文摘 | Liang‐Xi Xie Tian‐Tian Zhai Li‐Ping Yang Eleanor Yang Xiao‐Hui Zhang Jiong‐Yu Chen Hao Zhang | 2013 | Int J Exp Path2013,,1: | 1 |
| 18 | Dietary calcium requirement and effects on growth and tissue calcium content of juvenile grass carp ( Ctenopharyngodon idella )显示文摘 | J.‐J. LIANG Y.‐J. LIU Z.‐N. YANG L.‐X. TIAN H.‐J. YANG G.‐Y. LIANG | 2011 | Aquaculture Nutrition2011,,5: | 1 |
| 19 | Liver abscesses in adult patients with and without diabetes mellitus: an analysis of the clinical characteristics, features of the causative pathogens, outcomes and predictors of fatality: a report based on a large population, retrospective study in China显示文摘 | L.‐T. Tian K. Yao X.‐Y. Zhang Z.‐D. Zhang Y.‐J. Liang D.‐L. Yin L. Lee H.‐C. Jiang L.‐X. Liu | 2012 | Clinical Microbiology and Infection2012,,9: | 1 |
| 20 | Porous monoliths of 3D graphene for electric double-layer supercapacitors显示文摘For delivering the nanoscaled extraordinary characteristics in macroscopical bulk,it is essential to integrate two-dimensional nanosheets into threedimensional(3D)porous monoliths,alternatively called as 3D architectures,3D networks,or aerogels.The intersupported structure of porous monolithic 3D graphene(3DG)can prevent aggregation or restacking of graphene individuals,and the interconnected sp^(2) network of 3DG not only can provide the highway for the transport of electron/phonon but also can present continual cavities/channels for mass transfer.This review summarizes the synthesis methodology of 3DG porous monoliths and highlights the application for electric double-layer capacitors.Present challenges and future prospects about the manufacture and application of 3DG are also discussed. | Jinjue Zeng Chenyang Xu Tian Gao Xiangfen Jiang Xue‐Bin Wang | 2021 | Carbon Energy2021,3,2: | 1 |