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| 1 | Incidence and mortality of thyroid cancer in China, 2008-2012显示文摘Objective: To analyze the incidence and mortality rates of thyroid cancer(TC) in China from 2008 to 2012.Methods: Incident and death cases of TC were retrieved from the National Central Cancer Registry(NCCR)database collecting from 135 cancer registries in China during 2008-2012. The crude incidence and mortality rates of TC were calculated by area(urban/rural), region(eastern, middle, western), gender and age group(0, 1-4, 5-9,…, 85+). China census in 2000 and world Segi's population were applied for age-standardized rates. Joinpoint(Version 4.6.0.0) model was used for time-trend analysis.Results: The crude incidence rate of TC was 7.56/100,000 which ranked the seventh in overall cancers. The agestandardized incidence rates by China population(ASIRC) and by World population(ASIRW) were 6.25/100,000 and 5.52/100,000, respectively. The crude mortality of TC in China was 0.52/100,000. The age-standardized mortality rates by Chinese standard population(ASMRC) and by world standard population(ASMRW) were0.34/100,000 and 0.32/100,000, respectively. Incidence and mortality rates of TC were higher in females than in males and higher in urban areas than in rural areas. Eastern areas had the highest incidence followed by middle and western areas. TC incidence increased dramatically after age of 15 years, then peaked at 14.08/100,000 in the group of 50-54 years and finally decreased sharply after 55 years old. TC mortality increased with age in population,reaching the peak of 5.09/100,000 in sub-population aged 85 years or older. TC incidence increased by 4.73 times from 2.40/100,000 in 2003 to 13.75/100,000 in 2012 with an average annual increase of 20%, while TC mortality only increased slightly around 0.32/100,000 from 0.26/100,000 to 0.36/100,000.Conclusions: Appropriate targeted prevention, early detection and treatment programs can be carried out to curb the rapid growth trend of TC and control the disease burden. | Lingbin Du Runhua Li Minghua Ge Youqing Wang Huizhang Li Wanqing Chen Jie He | 2019 | Chinese Journal of Cancer Research2019,31,1: | 31 |
| 2 | 2016 Chinese expert consensus and guidelines for the diagnosis and treatment of papillary thyroid microcarcinoma显示文摘The incidence of papillary thyroid carcinoma(PTC)has exponentially increased in recent years.Papillary thyroid microcarcinoma(PTMC)accounts for the majority of the reported cases of PTC.The debates and crucial issues in PTMC management have received researchers'attention.To further improve the clinical management of PTMC in China, | Ming Gao Minghua Ge Qinghai Ji Ruochuan Cheng Hankui Lu Haixia Guan Li Gao Zhuming Guo Tao Huang Xiaoming Huang Xiaoming Li Yansong Lin Qinjiang Liu Xin Ni Yi Pan Jianwu Qin Zhongyan Shan Hui Sun Xudong Wang Zhengang Xu Yang Yu Daiwei Zhao Naisong Zhang ShengZhang Ying Zheng Jingqiang Zhu Dapeng Li Xiangqian Zheng 无 | 2017 | Cancer Biology & Medicine2017,14,3: | 23 |
| 3 | 2017 Chinese expert consensus on the clinical application ofserum marker for thyroid cancer显示文摘In recent years, the clinical incidence of thyroid cancer has been increasing year by year, and its risk assessment and clinical management methods have also been accordingly modified and constantly improved. There are great differences between the clinical diagnostic and therapeutic modes and disease management of thyroid cancer employed by various medical institutions in China, particularly with regard to the clinical application of serum marker of thyroid cancer. To this end, the China Anti-Cancer Association Thyroid Cancer Specialized Committee Chinese Association of Thyroid Oncology organized this compilation of ExpertConsensus on Clinical Application of Serum Marker of Thyroid Cancer to help and impel relevant clinical institutions and professionals to standardize clinical diagnosis, treatment, and long-term management of thyroid cancer, and to properly utilize the serum marker for scientific auxiliary clinical diagnosis and assessment of thyroid cancer before and after operation. | Ming Gao Minghua Ge Qinghai Ji Ruochuan Cheng Hankui Lu Haixia Guan Wei Cui Li Gao Zairong Gao Lin Guo Zhuming Guo Tao Huang Xiaoming Huang Yansong Lin Qinjiang Liu Xin Ni Jianwu Qin Li Ren Zhongyan Shan Hui Sun Xudong Wang Zhengang Xu Yang Yu Bin Zhang DaiweiZhao Ying Zheng Jingqiang Zhu Xiangqian Zheng 无 | 2018 | Cancer Biology & Medicine2018,15,4: | 3 |
| 4 | RuB/Sn-SBA-15 catalysts: Preparation, characterization, and catalytic performance in ethyl lactate hydrogenation 显示文摘 | Luo Ge Yah Shirun Qiao Minghua | 2007 | Applied Catalysis A: General2007,332,1: | 1 |
| 5 | MiR-203 is downregulated in laryngeal squamous cell carcinoma and can suppress proliferation and induce apoptosis of tumours显示文摘 | Linli Tian Minghua Li Jingchun Ge Yan Guo Yanan Sun Ming Liu Hui Xiao | 2014 | Tumor Biology2014,,6: | 1 |
| 6 | Ultrasonography-guided percutaneous radiofrequency ablation for?cervical lymph node metastasis?from thyroid carcinoma 显示文摘 | Liping Wang Minghua Ge long Xu etal | 2014 | Journal of Cancer Research and Therapeutics2014,0,7: | 1 |
| 7 | 优势种对藏北草原群落稳定性具有主导作用显示文摘优势种作为群落动态和生态系统的重要驱动因素,对生物条件以及与其他物种的相互作用具有强烈的影响,这一现象在高寒草地生态系统中尤其明显。然而,不同生态系统中优势种对群落稳定性的影响作用却知之甚少。本文研究了藏北草原4大高寒草地(高寒草甸、高寒草甸草原、高寒草原和高寒荒漠草原)地上生产力的时间稳定性(2014-2020年)和群落稳定性机制,并分析了群落特征和物种组成的变化。研究结果表明,高寒草甸的群落稳定性显著高于其他3种草地。这种差异主要归因于高寒草甸较高的补偿效应和选择效应。此外,优势种通过增加其稳定性和异步性来维持群落稳定性。这些研究结果表明了优势种作为群落的基础物种,可能在塑造高寒草原群落稳定性方面发挥着主导作用。因此,在日益加剧的环境波动下,保护优势种对于脆弱生态系统稳定生态系统功能至关重要。 | Ge Hou Peili Shi Tiancai Zhou Jian Sun Ning Zong Minghua Song Xianzhou Zhang | 2023 | Journal of Plant Ecology2023,16,3: | 0 |
| 8 | CACA guidelines for holistic integrative management of thyroid cancer显示文摘Purpose:In recent years,thyroid cancer is a common clinical problem.Since guidelines for the diagnosis and treatment of thyroid nodules and diferentiated thyroid cancer were revised in 2012,signifcant scientifc advances have occurred in the feld.The aim of this guidelines is to inform clinicians,researchers,patients and health policy makers on published evidence and expert consensus relating to the diagnosis and management of thyroid malignancy.Methods:In order to better promote the clinical management of thyroid cancer in China,Chinese Association of Thyroid Oncology(CATO)organized relevant experts to write these guidelines based on latest relevant literatures and clinical experience of multiple centers.The specifc clinical issues and topics addressed in these guidelines were based on published evidence,prior versions of the Chinese guidelines and expert consensus.Results and conclusion:The guidelines provide recommendations for the management of diferent types of thyroid carcinoma,including papillary,follicular,medullary,and anaplastic carcinomas. | Minghua Ge Ming Gao Ruochuan Cheng Xiaohong Chen Haixia Guan Yansong Lin Shaoyan Liu Yu Wang Chuanming Zheng Xiangqian Zheng | 2022 | Holistic Integrative Oncology2022,1,1: | 0 |
| 9 | Cobalt single atoms supported on monolithic carbon with a hollow-on-hollow architecture for efficient transfer hydrogenations显示文摘Single-atom catalysts(SACs)have received considerable attention in hydrogenation of nitroaromatic compounds to aromatic amines.In order to enhance the exposure of single atoms and overcome the mass transfer limitation,construction of hierarchical porous supports for single atoms is highly desirable.Herein,we report a straightforward method to synthesize Co single-atoms supported on a hollow-on-hollow structured carbon monolith(Co_(1)/HOHC-M)by pyrolysis ofα-cellulose monolith loaded with PS-core@ZnCo-zeolite imidazolate frameworks-shell nanospheres(PS@Zn-ZIFs/α-cellulose).The hollow-on-hollow structure consists of a large hollow void with a diameter of~290 nm(derived from the decomposition of polystyrene(PS)nanospheres)and a thin shell with hollow spherical pores with a diameter of~10 nm(derived from the evaporation of ZnO nanoparticles that are in-situ formed during pyrolysis in the presence of CO_(2)fromα-cellulose decomposition).Benefitting from the hierarchically porous architecture,the Co_(1)/HOHC-M exhibits excellent catalytic performance(reaction rate of 421.6 mmol·gCo^(-1)·h^(−1))in the transfer hydrogenation of nitrobenzene to aniline,outperforming the powdered sample of Co_(1)/HCS without the hollow spherical mesopores(reaction rate of 353.8 mmol·gCo^(-1)·h^(−1)).It is expected that this strategy could be well extended in heterogeneous catalysis,given the wide applications of porous carbon-supported single-atom catalysts. | Xiangyi Gong De-Chang Li Qian Zhang Wenquan Wang Zhengbin Tian Ge Su Minghua Huang Guang-Hui Wang | 2023 | Nano Research2023,16,8: | 0 |
| 10 | Interface engineering of NiSe_(2) nanowrinkles/Ni_(5)P_(4)nanorods for boosting urea oxidation reaction at large current densities显示文摘Deliberate modulation of the electronic structure via interface engineering is one of promising perspectives to build advanced catalysts for urea oxidation reaction(UOR)at high current densities.However,it still remains some challenges originating from the intrinsically sluggish UOR dynamics and the high energy barrier for urea adsorption.In response,we report the coupled NiSe_(2)nanowrinkles with Ni_(5)P_(4)nanorods heterogeneous structure onto Ni foam(denoted as NiSe_(2)@Ni_(5)P_(4)/NF)through successive phosphorization and selenization strategy,in which the produced closely contacted interface could provide high-flux electron transfer pathways.Theoretical findings decipher that the fast charge transfer takes place at the interfacial region from Ni_(5)P_(4)to NiSe_(2),which is conducive to optimizing adsorption energy of urea molecules.As expected,the well-designed NiSe_(2)@Ni_(5)P_(4)/NF only requires the low potential of 1.402 V at the current density of 500 mA·cm^(-2).More importantly,a small Tafel slope of 27.6 mV·dec^(-1),a high turnover frequency(TOF)value of 1.037 s^(-1)as well as the prolonged stability of 950 h at the current density of 100 mA·cm^(-2)are also achieved.This study enriches the understanding on the electronic structure modulation via interface engineering and offers bright prospect to design advanced UOR catalysts. | Jinyang Li Xiujuan Xu Xianbiao Hou Shucong Zhang Ge Su Weiqian Tian Huanlei Wang Minghua Huang Arafat Toghan | 2023 | Nano Research2023,16,7: | 0 |