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5篇 您的检索式:作者名="MENGYI YUAN"
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1Development and validation of a CT-based radiomics nomogram for preoperative prediction of tumor histologic grade in gastric adenocarcinoma显示文摘Objectives:To develop and validate a radiomics nomogram for preoperative prediction of tumor histologic grade in gastric adenocarcinoma(GA).Methods:This retrospective study enrolled 592 patients with clinicopathologically confirmed GA(low-grade:n=154;high-grade:n=438)from January 2008 to March 2018 who were divided into training(n=450)and validation(n=142)sets according to the time of computed tomography(CT)examination.Radiomic features were extracted from the portal venous phase CT images.The Mann-Whitney U test and the least absolute shrinkage and selection operator(LASSO)regression model were used for feature selection,data dimension reduction and radiomics signature construction.Multivariable logistic regression analysis was applied to develop the prediction model.The radiomics signature and independent clinicopathologic risk factors were incorporated and presented as a radiomics nomogram.The performance of the nomogram was assessed with respect to its calibration and discrimination.Results:A radiomics signature containing 12 selected features was significantly associated with the histologic grade of GA(P<0.001 for both training and validation sets).A nomogram including the radiomics signature and tumor location as predictors was developed.The model showed both good calibration and good discrimination,in which C-index in the training set,0.752[95%confidence interval(95%CI):0.701-0.803];C-index in the validation set,0.793(95%CI:0.711-0.874).Conclusions:This study developed a radiomics nomogram that incorporates tumor location and radiomics signatures,which can be useful in facilitating preoperative individualized prediction of histologic grade of GA.Jia Huang Huasheng Yao Yexing Li Mengyi Dong Chu Han Lan He Xiaomei Huang Ting Xia Zongjian Yi Huihui Wang Yuan Zhang Jian He Changhong Liang Zaiyi Liu 2021Chinese Journal of Cancer Research2021,33,1:3
2Characteristics of windshield cracking upon low-speed impact:Numerical simulation based on the extended finite element method显示文摘Xu Jun Li Yibing Chen Xi Yan Yuan Ge Dongyun Zhu Mengyi Liu Bohan 0,,03:1
3Affecting factors and application of the stable hydrogen isotopes of alkane gases显示文摘To study the composition, affecting factors of the stable hydrogen isotopes of alkane gases and their application to identification of the natural gas origin and maturities, the chemical and isotopic compositions of 118 gas samples of Carboniferous- Permian in the Ordos Basin, and of Triassic in the Sichuan Basin, combined with 68 gas samples from the Sinian and Cambrian reservoirs in the Sichuan Basin, and Ordovician and Siliurian reservoirs of Tarim Basin, are analyzed comprehensively. The following conclusions are obtained:(1) Natural gases in the study area and strata of the Ordos and Sichuan basins are dominated by alkane gases, and the dryness coefficients and maturities of the Carboniferous-Permian gases in the Ordos Basin are higher than the gases in the Triassic Xujiahe Formation of the Sichuan Basin, while the hydrogen isotopes of the latter ones are much enriched in 2H than the former.(2) The δ2HCH4-C1/C2+3 genetic identification diagram of natural gas was drawn, and the diagrams of hydrogen isotopic differences between the heavy alkane gases and methane vs. hydrogen isotopes of alkane gases can also be used in natural gas genetic identification.(3) The δ2HCH4-Ro formulas of coal-formed gas in different areas of the two basins are given, and the δ2HC2H6-δ2HCH4 is a new index for maturity, and the (δ2HC2H6-δ2HCH4)-Ro formula of the coal-formed gas can be used to calculate the maturity of the natural gas.(4) The stable hydrogen isotopes of alkane gases are affected by parent materials in source rocks, maturity, mixing and the aqueous medium conditions, among which the aqueous paleo-salinity is the key factor. To sum up, the hydrogen isotopes of alkane gases are affected by multiple factors, and they are significant to the identification of the origin, and maturity of natural gas, and the water environment during the deposition of source rocks.HUANG Shipeng DUAN Shufu WANG Zecheng JIANG Qingchun JIANG Hua SU Wang Feng Qingfu HUANG Tongfei YUAN Miao REN Mengyi CHEN Xiaoyue 2019Petroleum Exploration and Development2019,46,3:0
4Exosomal miR-218 regulates the development of endometritis in dairy cows by targeting TGIF2/TGF-βpathway显示文摘Endometritis affects the reproductive capacity of dairy cows and leads to serious economic losses in dairy farming.Clarification of the pathogenesis of endometritis is necessary to improve the reproductive efficiency of dairy cows.Exosomes and their miRNAs have been proven to play an important role in inflammatory regulation.Exosomal miR-218 is a differentially expressed miRNA found in endometrial epithelial cells(EECs)under endometrial inflammation.Therefore,we investigated the expression of miR-218 in the uterine tissue of dairy cows,lipopolysaccharide(LPS)treated EECs,exosomal vesicles,and regulation of exosomal miR-218 by targeting TGIF-2 inducible factor homology frame 2(TGIF2)/transforming growth factor-beta(TGF-β).The expression of miR-218 was suppressed in inflammatory uterine tissues and LPS treated EECs.The expression of TGIF2 and TGF-βin inflammatory uterine tissues and LPS treated EECs was significantly higher than those in healthy uterine tissues and EECs(p<0.01).Interestingly,miR-218 derived from donor cells was found to regulate the expression of the target gene TGIF2 in recipient cells through the fusion of exosomes.Concurrently,the expression of its target gene TGIF2 was also suppressed by miR-218 in donor cells resulting in fewer TGIF2 being transported into recipient cells with exosomal fusion.This may be a novel mechanism of miRNAs-mediated regulation and provides a new reference for analyzing the pathogenesis of endometritis in dairy cows.CHANG CHEN LIMIN QIAO KAIJUN GUO YINGQIU WANG MENGYI YUAN BOFAN FU XIAOBO GAO HEMIN NI LONGFEI XIAO XIANGGUO WANG 2022BIOCELL2022,46,11:0
5Molecular imaging:design mechanism and bioapplications显示文摘Molecular imaging is a non-invasive method to image and analyze the concentration and activity of functional biomolecules in cells or in vivo at molecular level,and plays an increasing role in deep understanding of biological processes,early and accurate diagnosis of diseases,and evaluation of treatment.Nowadays,numerous novel molecular imaging probes have been developed,involving every biomedical imaging modality,such as optical imaging,photoacoustic imaging,magnetic resonance imaging,single-photon-emission computed tomography,and positron emission tomography.In this review,we summarize the development of current state-of-the-art molecular imaging probes.We introduce the design strategies of molecular probes and detailed imaging modalities,and highlight the properties of probes and biomedical imaging applications in cells and in vivo,including disease diagnosis,drug tracking,and imaging-guided surgery.Then we discuss the perspectives and challenges in this emerging field.We expect this review could inspire more effective molecular imaging probes to be developed,achieving the goal towards clinical practices.Lanlan Chen Yifan Lyu Xuan Zhang Liting Zheng Qingqing Li Ding Ding Fengming Chen Yihao Liu Wei Li Yutong Zhang Qiuling Huang Zhiqiang Wang Tiantian Xie Qiang Zhang Yingyu Sima Ke Li Shuai Xu Tianbing Ren Mengyi Xiong Ying Wu Jibin Song Lin Yuan Huanghao Yang Xiao-Bing Zhang Weihong Tan 2023Science China Chemistry2023,66,5:0
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