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45篇 您的检索式:作者名="Jiaping Lin"
    题名 作者 年代 出处 被引量
1Genetic Polymorphisms in the Precursor MicroRNA Flanking Region and Non-Small Cell Lung Cancer Survival显示文摘Hu, Zhibin Shu, Yongqian Chen, Yijiang Chen, Jiaping Dong, Jing Liu, Yao Pan, Shiyang Xu, Lin Xu, Jing Wang, Yi Dai , Juncheng Ma, Hongxia Jin, Guangfu Shen,Hongbing 2011南京医科大学学报(自然科学版)2011,31,6:8
2Prognostic assessment of apoptotic gene polymorphisms in non-small cell lung cancer in Chinese显示文摘Apoptosis plays a key role in inhibiting tumor growth, progression and resistance to anti-tumor therapy. We hypothesized that genetic variants in apoptotic genes may affect the prognosis of lung cancer. To test this hypothesis, we selected 38 potentially functional single nucleotide polymorphisms (SNPs) from 12 genes (BAX, BCL2, BID, CASP3, CASP6, CASP7, CASP8, CASP9, CASP10, FAS, FASLG and MCL1) involved in apoptosis to assess their prognostic significance in lung cancer in a Chinese case cohort with 568 non-small cell lung cancer (NSCLC) patients. Thirty-five SNPs passing quality control underwent association analyses, 11 of which were shown to be significantly associated with NSCLC survival (P<0.05). After Cox stepwise regression analyses, 3 SNPs were independently associated with the outcome of NSCLC (BID rs8190315: P=0.003; CASP9 rs4645981: P=0.007 and FAS rs1800682: P=0.016). A favorable survival of NSCLC was significantly associated with the genotypes of BID rs8190315 AG/GG (adjusted HR=0.65, 95% CI: 0.49-0.88), CASP9 rs4645981 AA (HR=0.22, 95% CI: 0.07-0.69) and FAS rs1800682 GG (adjusted HR=0.67, 95% CI: 0.46-0.97). Time-dependent receptor operation curve (ROC) analysis revealed that the area under curve (AUC) at year 5 was significantly increased from 0.762 to 0.819 after adding the risk score of these 3 SNPs to the clinical risk score. The remaining 32 SNPs were not significantly associated with NSCLC prognosis after adjustment for these 3 SNPs. These findings indicate that BID rs8190315, CASP9 rs4645981 and FAS rs1800682 polymorphisms in the apoptotic pathway may be involved in the prognosis of NSCLC in the Chinese population.Songyu Cao Cheng Wang Xinen Huang Juncheng Dai Lingmin Hu Yao Liu Jiaping Chen Hongxia Ma Guangfu Jin Zhibin Hu Lin Xu Hongbing Shen 2013The Journal of Biomedical Research2013,27,3:6
3Heating graphene to incandescence and the measurement of its work function by the thermionic emission method显示文摘Feng Zhu 2014Nano Research2014,7,4:5
4Appearance manifolds for modeling time-variant appearance of materials显示文摘Jiaping Wang Xin Tong Stephen Lin Minghao Pan Chao Wang Hujun Bao Baining Guo Heung-Yeung Shum 2006ACM Transactions on Graphics (TOG)2006,,3:2
5显示文摘WangLiquan(王立权) Lin Jiaping(林嘉平) ZhangQian(张乾) 化学学报0,71,:1
6Genetic variants of miRNA sequences and non-small cell lung cancer survival显示文摘Hu Zhibin Chen Jiaping Tian Tian Zhou Xiaoyi Gu Haiyong Xu Lin Zeng Yi Miao Ruifen Jin Guangfu Ma Hongxia Chen Yijiang Shen Hongbing 2008Journal of Clinical Investigation2008,,7:1
7Comparison and validation of SRTM and ASTER GDEM for a subtropical landscape in Southeastern China显示文摘This paper evaluates the quality characteristics of existing versions of 3-arc-second SRTM and 1-arc-second GDEM over Anji County,Zhejiang,China using reference elevations from a high-quality 1:10 k topographic map.Results show that SRTM has higher accuracy(RMSE=12.44 m)than GDEM(RMSE=14.20 m for Version 1,12.76 m for Version 2);however,unsatisfactory void filling and an overall 1/2 pixel shift exits in SRTM version 4.1.Although spurious elevations over omitted water bodies still persist,GDEM Version 2 demonstrated significant improvement over Version 1.Accuracies of both SRTM and GDEM decrease on steeper slopes.Aspect also influences both the magnitude and the sign of errors.DEM accuracy in non-forested areas is considerably higher than that in forested areas.SRTM version 4.1 and GDEM version 2 possessed actual spatial resolutions of 90 m,despite both of them failed to match their nominal accuracies.SRTM Version 4.1 could be the first choice,while ASTER GDEM Version 2 would be a good alternative for areas where extensive voids exist in SRTM.Changwei Jing Ashton Shortridge Shengpan Lin Jiaping Wu 2014International Journal of Digital Earth2014,7,12:1
8An Intelligent Manufacturing Platform of Polymers:Polymeric Material Genome Engineering显示文摘Polymeric materials with excellent performance are the foundation for developing high-level technology and advanced manufacturing.Polymeric material genome engineering(PMGE)is becoming a vital platform for the intelligent manufacturing of polymeric materials.However,the development of PMGE is still in its infancy,and many issues remain to be addressed.In this perspective,we elaborate on the PMGE concepts,summarize the state-of-the-art research and achievements,and highlight the challenges and prospects in this field.In particular,we focus on property estimation approaches,including property proxy prediction and machine learning prediction of polymer properties.The potential engineering applications of PMGE are discussed,including the fields of advanced composites,polymeric materials for communications,and integrated circuits.Liang Gao Liquan Wang Jiaping Lin Lei Du 2023Engineering2023,,8:1
9Metal-film-assisted ultra-clean transfer of single-walled carbon nanotubes显示文摘Yujun He Dongqi Li Tianyi Li Xiaoyang Lin Jin Zhang Yang Wei Peng Liu Lina Zhang Jiaping Wang Qunqing Li Shoushan Fan Kaili Jiang 2014Nano Research2014,7,7:1
10Novel polyacrylonitrile nanoeomposites containing Na-montmorillonite and nano SiO2 particle显示文摘Yu Tianshi Lin Jiaping Xu Jiafu 2005Polymer2005,411,15:1
11Novel polyacryloni- trile/Na-MMT/siliea nanoeomposite: co-incorporation of two different folan nano materials into polymer matrix显示文摘Yu Tianshi Lin Jiaping Xu Jiafu 2007Composites Seienee and Technology2007,67,1516:1
12Drug releasing behavior of hybrid micelles containing polypeptide triblock copolymer显示文摘Jiaping Lin Jianqi Zhu Tao Chen 0,,:1
13Drug releasing be- havior of hybrid micelles containing polypeptide triblock copolymer 显示文摘Lin Jiaping Zhu Jiaqi Chen Tao 2009Biomaterials2009,30,1:1
14Liquid crystallization in lyo- tropic liquid crystaline polymers显示文摘Lin Jiaping Zhu Jian Zhou Dafei 2000Eur Polym J2000,36,2:1
15Freestanding macroscopic metal-oxide nanotube films derived from carbon nanotube film templates显示文摘与非结晶的碳涂的排列的碳 nanotube 电影被原子层免职开发进新奇模板。独立宏观的金属氧化物 nanotube 电影然后被使用这些模板成功地综合。反应的非结晶的碳层极大地改进了原子核密度,它保证了这些电影的高质量并且允许 nanotubes 的墙厚度的精确控制。用综合模板的氧化铝 nanotube 电影,我们以高反应速度,一个传播电子显微镜学(TEM ) 格子,和催化剂支持表明一个湿度传感器。跨 stacked 汇编, ultrathin 厚度,化学不活泼,和氧化铝 nanotube 电影的高热的稳定性贡献了这些设备的优秀性能。另外,金属氧化物 nanotube 电影将由于他们的材料丰富,宏观的外观,灵活性,与半导体的技术的相容性,和大量生产的可行性有重要潜力,这被期望。He Ma Yang Wei Jiangtao Wang Xiaoyang Lin WenyunWu Yang Wu Ling Zhang Peng Liu Jiaping Wang Qunqing Li Shoushan Fan Kaili Jiang 2015Nano Research2015,8,6:1
16Kinetics of phase transition in lyotropic liquid crystalline polymers显示文摘Lin Jiaping Wu Herong Li Shijin 1993Polym Int1993,32,4:1
17Crystallization behavior of nylon 11/montmorillonite nanocomposites under annealing 显示文摘Zhang Xikui Yang Guisheng Lin Jiaping 2006Journal of Applied Polymer Science2006,102,6:1
18Nanocomposites of vinyl chloride-acrylonitrile copolymer and silica 显示文摘Yu Tianshi Lin Jiaping Xu Jiafu 2005Journal of Polymer Science: Part B: Polymer Physics2005,43,:1
19True-color real-time imaging and spectroscopy of carbon nanotubes on substrates using enhanced Rayleigh scattering显示文摘白光照亮的围单人赛的碳 nanotubes (SWCNT ) 应该由于散布的回声瑞利显得有颜色。然而,底层上的 SWCNT 的真彩成像没被报导,因为 SWCNT 和散布的强壮的底层的极其低的散布紧张。这里,我们证明散布的瑞利能被接口偶极子改进效果极大地提高。底层上的因而丰富多彩的 SWCNT 能被宽地 supercontinuum 激光照明直接在一台光显微镜下面想象,它便于单个 SWCNT 的高产量 chirality 赋值。这条途径,称为的瑞利成像显微镜学,没被限制为 SWCNT,但是对许多 nanomaterials 广泛地适用,它使丰富多彩的 nanoworld 能在光显微镜下面被探索。Wenyun Wu Jingying Yue Xiaoyang Lin Dongqi Li Fangqiang Zhu Xue Yin Jun Zhu Jiangtao Wang Jin Zhang Yuan Chen Xinhe Wang Tianyi Li Yujun He Xingcan Dai Peng Liu Yang wei Jiaping Wang Wei Zhang Yidong Huang Li Fan Lina Zhang Qunqing Li Shoushan Fan Kaili Jiang 2015Nano Research2015,8,8:1
20Drug releasingbehavior of hybrid micelles containing polypeptide triblockcopolymer显示文摘Lin Jiaping Zhu Jianqi Chen Tao 2009Biomaterials2009,30,1:1
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