Letteratura scientifica selezionata sul tema "Hubei Sheng wei yuan hui"

Cita una fonte nei formati APA, MLA, Chicago, Harvard e in molti altri stili

Scegli il tipo di fonte:

Consulta la lista di attuali articoli, libri, tesi, atti di convegni e altre fonti scientifiche attinenti al tema "Hubei Sheng wei yuan hui".

Accanto a ogni fonte nell'elenco di riferimenti c'è un pulsante "Aggiungi alla bibliografia". Premilo e genereremo automaticamente la citazione bibliografica dell'opera scelta nello stile citazionale di cui hai bisogno: APA, MLA, Harvard, Chicago, Vancouver ecc.

Puoi anche scaricare il testo completo della pubblicazione scientifica nel formato .pdf e leggere online l'abstract (il sommario) dell'opera se è presente nei metadati.

Articoli di riviste sul tema "Hubei Sheng wei yuan hui"

1

Hu, Xichun, Qingyuan Zhang, Shusen Wang, Tao Sun, Xiaohua Zeng, Weimin Xie, Zhongsheng Tong et al. "Abstract PO1-29-03: Efficacy, Safety, and Immunogenicity of TQ-B211 (a Trastuzumab Biosimilar) Plus Docetaxel versus Herceptin® Plus Docetaxel for HER2-positive Metastatic Breast Cancer: a Double-blind, Randomised, Multicenter, Phase 3 Trial". Cancer Research 84, n. 9_Supplement (2 maggio 2024): PO1–29–03—PO1–29–03. http://dx.doi.org/10.1158/1538-7445.sabcs23-po1-29-03.

Testo completo
Abstract (sommario):
Abstract Background: Breast cancer is one of the most common malignant tumors in women worldwide. In China, the incidence of breast cancer has been steadily increasing. Approximately 30% of human breast cancers exhibit human epidermal growth factor receptor 2 (HER2) positivity, which is closely associated with tumor aggressiveness, high recurrence rate and high mortality. This study aimed to evaluate the efficacy, safety, and immunogenicity of TQ-B211 (a trastuzumab biosimilar) compared to the reference trastuzumab in combination with docetaxel as first-line treatment for patients with HER2-positive metastatic breast cancer. Methods: This randomized, multicenter, double-blind phase III equivalence study enrolled HER2+ metastatic breast cancer patients aged 18-75, ECOG PS ≤1, no prior systemic chemotherapy, biologic, or targeted therapy for recurrent or metastatic disease, and at least one measurable lesion (RECIST 1.1). The patients were randomly assigned to two groups: the experimental group received TQ-B211 (8 mg/kg iv on day 1, cycle 1, followed by 6 mg/kg q3w for cycles 2-8) in combination with docetaxel (75 mg/m2 on day 2, cycle1, followed by 75 mg/m2 on day 1 for cycles 2-8), while the control group received Herceptin® in combination with docetaxel. For subjects who completed 8 cycles of treatment without disease progression and demonstrated tolerability, they were subsequently administered TQ-B211 as monotherapy until disease progression or unsuitable for further treatment. The primary efficacy endpoint was ORR up to week 24 (ORR24w). Equivalence was declared if the 90% confidence interval (CI) of relative ratio (RR) value was within the range of 0.8 to 1.25. Secondary efficacy endpoints included duration of response (DoR); progression-free survival (PFS); disease control rate (DCR); overall survival (OS), safety and immunogenicity. Results: Between December 6, 2018 and July 31, 2021, a total of 386 patients (pts) were enrolled (192 pts in the TQ-B211 group and 194 pts in the Herceptin® group). In the intention-to-treat (ITT) population, the ORR24w of the TQ-B211 group was 67.19% (95% CI: 60.55, 73.83), while the ORR24w of the Herceptin® group was 65.98% (95% CI: 59.31, 72.65). The RR of the confirmed ORR24w between the two groups was 1.02 (90%CI, 0.90, 1.15), which fell entirely in the predefined equivalence margins (0.8, 1.25), indicating comparable efficacy of the two drugs. In the ITT population, the DCR of the TQ-B211 group and the Herceptin® group were 83.85% (78.65, 89.06) and 78.35% (72.56, 84.15) respectively, with no statistically significant difference between the two groups (P=0.1940). By the data cutoff date of October 31, 2021, the median PFS was not statistically different (P=0.6834); the median OS was not reached in both groups (P=0.9246). Additionally, the data results of the per-protocol (PP) population were similar to those of the ITT population. In total, similar rates of treatment-related grade ≥3 adverse events (41.05% vs. 46.39%) occurred in the TQ-B211 and Herceptin® groups, respectively. The incidence and magnitude of immunogenicity were low in both of the two groups (ADA: 0.53% vs. 0%, Nab: both negative). Conclusion: Equivalence for efficacy was demonstrated between TQ-B211 and Herceptin® on the basis of ORR24w. Safety and immunogenicity were comparable. Citation Format: Xichun Hu, Qingyuan Zhang, Shusen Wang, Tao Sun, Xiaohua Zeng, Weimin Xie, Zhongsheng Tong, Hui Cao, Huihua Xiong, Xiuwen Wang, Jin Yang, Shuqun Zhang, Ying Wang, Chunhong Hu, Kaijian Lei, Binlin Ma, Wei Liu, Zhiyong Yu, PeiJian Peng, Hongwei Yang, Zhijun Yuan, Xiaojia Wang, Xujuan Wang, Hong Wang, Yongqian Shu, Nanlin Li, Wenbin Yue, Jingfen Wang, Daqing Wang, Zhiguo Luo, Junyang Mo, Yarong Li, Lili Sheng. Efficacy, Safety, and Immunogenicity of TQ-B211 (a Trastuzumab Biosimilar) Plus Docetaxel versus Herceptin® Plus Docetaxel for HER2-positive Metastatic Breast Cancer: a Double-blind, Randomised, Multicenter, Phase 3 Trial [abstract]. In: Proceedings of the 2023 San Antonio Breast Cancer Symposium; 2023 Dec 5-9; San Antonio, TX. Philadelphia (PA): AACR; Cancer Res 2024;84(9 Suppl):Abstract nr PO1-29-03.
Gli stili APA, Harvard, Vancouver, ISO e altri
2

Maryna Antoshko. "Introducing China's traditional music genres to the world". NATIONAL ACADEMY OF MANAGERIAL STAFF OF CULTURE AND ARTS HERALD, n. 4 (15 dicembre 2020). http://dx.doi.org/10.32461/2226-3209.4.2020.219138.

Testo completo
Abstract (sommario):
The purpose of the article is to study the presentation of traditional Chinese music genres in the world. The methodology of the study is to use historical and biographical methods in the study of this topic. The scientific novelty of the article is to explore the expediency of presenting traditional Chinese music genres in the world. After all, this question reflects both the traditions and customs of the country and raises the names of scholars of Chinese culture. The presentation of Chinese art is due to the holding of opera festivals that influence the culture of the whole country. The emergence of new theatrical acts and performances also influenced China's outlook. Conclusions. The introduction of traditional Chinese music genres in the world is due to the development of culture and education in the country. The system of thinking of Chinese culture is based on the ancient philosophy of the country. Musical art is in constant search: the nature of sound, timbre palette, forms, combining national motives. Through the combination of national traits, country philosophy, religious tendencies, elements of vocal and instrumental folklore, theater and composition, and piano culture, China's musical piano culture has become well-known in the world. It was the Suetan School and Yuege's educational system that formed the basis for the development of Chinese musical culture. Speaking about the nature of Chinese music, it should be emphasized that it has its intonation-melodic nature, which is different from European music samples. Chinese people became acquainted with the performance of European works through touring. In the early ’70s began to reform the conservatories into musical institutes. For example, music institutions such as the conservatories in Wuhan (Hubei), Shenyang (Liaoning), Xi'an (Shaanxi), and Chengdu (Sichuan) have undergone these changes. During this period (the ’70s), the flowering of Chinese music education began, orchestras, amateur bands appeared, research aroused curiosity, and music magazines began to be published. Teachers such as Zhou Xiaoyan, Lan Yushu, Yu Yixuan, Shen Xiang, Xi Ggui, Wen Quecheng, Li Zhishui, Wei Chixian, Man Jiangxi, Sung Xin, Hu Yan, Gao Zhilan, Do Shinji, and others start their creative activity. The revitalization of music education is in the twentieth century, which causes the development and rethinking of new turns in educational processes. The processes of formation and development of the Chinese music education system are reflected in the works of Wang Yuhe, Liu Pei, Yang Bohua, stylistic features of musical art were interested in F. Arzamanov, V. Vakulishin, Lin Hai, Liu Da-jung, Ma Gesun, Sun Tsunin, In Gen- Ira, Chang Ling, Yang Xiao Xu and more. Chinese education has interested such scholars as: Ding Yun, Yang Bohua. It should be said that much attention was paid to education, as evidenced by the work of scientists. Turning to the historical facts, it becomes known that music education began to develop during the Tang era (VII-X centuries). This led to the emergence of performing schools and the establishment of educational institutions, which allowed to expand the representation of traditional genres of the world.
Gli stili APA, Harvard, Vancouver, ISO e altri
3

Thanh Huyen, Le, Dao Sy Duc, Nguyen Xuan Hoan, Nguyen Huu Tho e Nguyen Xuan Viet. "Synthesis of Fe3O4-Reduced Graphene Oxide Modified Tissue-Paper and Application in the Treatment of Methylene Blue". VNU Journal of Science: Natural Sciences and Technology 35, n. 3 (20 settembre 2019). http://dx.doi.org/10.25073/2588-1140/vnunst.4883.

Testo completo
Abstract (sommario):
Graphene-based composites have received a great deal of attention in recent year because the presence of graphene can enhance the conductivity, strength of bulk materials and help create composites with superior qualities. Moreover, the incorporation of metal oxide nanoparticles such as Fe3O4 can improve the catalytic efficiency of composite material. In this work, we have synthesized a composite material with the combination of reduced graphene oxide (rGO), and Fe3O4 modified tissue-paper (mGO-PP) via a simple hydrothermal method, which improved the removal efficiency of the of methylene blue (MB) in water. MB blue is used as the model of contaminant to evaluate the catalytic efficiency of synthesized material by using a Fenton-like reaction. The obtained materials were characterized by SEM, XRD. The removal of materials with methylene blue is investigated by UV-VIS spectroscopy, and the result shows that mGO-PP composite is the potential composite for the color removed which has the removal efficiency reaching 65% in acetate buffer pH = 3 with the optimal time is 7 h. Keywords Graphene-based composite, methylene blue, Fenton-like reaction. References [1] Ma Joshi, Rue Bansal, Reng Purwar, Colour removal from textile effluents, Indian Journal of Fibre & Textile Research, 29 (2004) 239-259 http://nopr.niscair.res.in/handle/123456789/24631.[2] Kannan Nagar, Sundaram Mariappan, Kinetics and mechanism of removal of methylene blue by adsorption on various carbons-a comparative study, Dyes and pigments, 51 (2001) 25-40 https://doi.org/10.1016/S0143-7208(01)00056-0.[3] K Rastogi, J. N Sahu, B. C Meikap, M. N Biswas, Removal of methylene blue from wastewater using fly ash as an adsorbent by hydrocyclone, Journal of hazardous materials, 158 (2008) 531-540.https://doi.org/10.1016/j.jhazmat.2008.01. 105.[4] Qin Qingdong, Ma Jun, Liu Ke, Adsorption of anionic dyes on ammonium-functionalized MCM-41, Journal of Hazardous Materials, 162 (2009) 133-139 https://doi.org/10.1016/j.jhazmat. 2008.05.016.[5] Mui Muruganandham, Rps Suri, Sh Jafari, Mao Sillanpää, Lee Gang-Juan, Jaj Wu, Muo Swaminathan, Recent developments in homogeneous advanced oxidation processes for water and wastewater treatment, International Journal of Photoenergy, 2014 (2014). http://dx. doi.org/10.1155/2014/821674.[6] Herney Ramirez, Vicente Miguel , Madeira Luis Heterogeneous photo-Fenton oxidation with pillared clay-based catalysts for wastewater treatment: a review, Applied Catalysis B: Environmental, 98 (2010) 10-26 https://doi.org/ 10.1016/j.apcatb.2010.05.004.[7] Guo Rong, Jiao Tifeng, Li Ruifei, Chen Yan, Guo Wanchun, Zhang Lexin, Zhou Jingxin, Zhang Qingrui, Peng Qiuming, Sandwiched Fe3O4/carboxylate graphene oxide nanostructures constructed by layer-by-layer assembly for highly efficient and magnetically recyclable dye removal, ACS Sustainable Chemistry & Engineering, 6 (2017) 1279-1288 https://doi.org/10.1021/acssuschemeng.7b03635.[8] Sun Chao, Yang Sheng-Tao, Gao Zhenjie, Yang Shengnan, Yilihamu Ailimire, Ma Qiang, Zhao Ru-Song, Xue Fumin, Fe3O4/TiO2/reduced graphene oxide composites as highly efficient Fenton-like catalyst for the decoloration of methylene blue, Materials Chemistry and Physics, 223 (2019) 751-757 https://doi.org/ 10.1016/j.matchemphys.2018.11.056.[9] Guo Hui, Ma Xinfeng, Wang Chubei, Zhou Jianwei, Huang Jianxin, Wang Zijin, Sulfhydryl-Functionalized Reduced Graphene Oxide and Adsorption of Methylene Blue, Environmental Engineering Science, 36 (2019) 81-89 https://doi. org/10.1089/ees.2018.0157.[10] Zhao Lianqin, Yang Sheng-Tao, Feng Shicheng, Ma Qiang, Peng Xiaoling, Wu Deyi, Preparation and application of carboxylated graphene oxide sponge in dye removal, International journal of environmental research and public health, 14 (2017) 1301 https://doi.org/10.3390/ijerph14111301.[11] Yu Dandan, Wang Hua, Yang Jie, Niu Zhiqiang, Lu Huiting, Yang Yun, Cheng Liwei, Guo Lin, Dye wastewater cleanup by graphene composite paper for tailorable supercapacitors, ACS applied materials & interfaces, 9 (2017) 21298-21306 https://doi.org/10.1021/acsami.7b05318.[12] Wang Hou, Yuan Xingzhong, Wu Yan, Huang Huajun, Peng Xin, Zeng Guangming, Zhong Hua, Liang Jie, Ren MiaoMiao, Graphene-based materials: fabrication, characterization and application for the decontamination of wastewater and wastegas and hydrogen storage/generation, Advances in Colloid and Interface Science, 195 (2013) 19-40 https://doi. org/10.1016/j.cis.2013.03.009.[13] Marcano Daniela C, Kosynkin Dmitry V, Berlin Jacob M, Sinitskii Alexander, Sun Zhengzong, Slesarev Alexander, Alemany Lawrence B, Lu Wei, Tour James M, Improved synthesis of graphene oxide, ACS nano, 4 (2010) 4806-4814 https://doi.org/10.1021/nn1006368.[14] Zhang Jiali, Yang Haijun, Shen Guangxia, Cheng Ping, Zhang Jingyan, Guo Shouwu, Reduction of graphene oxide via L-ascorbic acid, Chemical Communications, 46 (2010) 1112-1114 http://doi. org/10.1039/B917705A [15] Gong Ming, Zhou Wu, Tsai Mon-Che, Zhou Jigang, Guan Mingyun, Lin Meng-Chang, Zhang Bo, Hu Yongfeng, Wang Di-Yan, Yang Jiang, Nanoscale nickel oxide/nickel heterostructures for active hydrogen evolution electrocatalysis, Nature communications, 5 (2014) 4695 https:// doi.org/10.1038/ncomms5695.[16] Wu Zhong-Shuai, Yang Shubin, Sun Yi, Parvez Khaled, Feng Xinliang, Müllen Klaus, 3D nitrogen-doped graphene aerogel-supported Fe3O4 nanoparticles as efficient electrocatalysts for the oxygen reduction reaction, Journal of the American Chemical Society, 134 (2012) 9082-9085 https://doi.org/10.1021/ja3030565.[17] Nguyen Son Truong, Nguyen Hoa Tien, Rinaldi Ali, Nguyen Nam Van, Fan Zeng, Duong Hai Minh, Morphology control and thermal stability of binderless-graphene aerogels from graphite for energy storage applications, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 414 (2012) 352-358 https://doi.org/ 10.1016/j.colsurfa.2012.08.048.[18] Deng Yang, Englehardt James D, Treatment of landfill leachate by the Fenton process, Water research, 40 (2006) 3683-3694 https://doi.org/ 10.1016/j.watres.2006.08.009.
Gli stili APA, Harvard, Vancouver, ISO e altri

Libri sul tema "Hubei Sheng wei yuan hui"

1

"Hubei Sheng zheng xie zhi" bian zuan wei yuan hui. 湖北省政协志 (1983.4-2003.1). Wuhan: Hubei ren min chu ban she, 2008.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
2

Hanchuan zheng xie zhi bian zuan wei yuan hui. Hanchuan zheng xie zhi, 1956.2-1999.2. [Hanchuan Xian: Hanchuan zheng xie zhi bian zuan wei yuan hui], 1999.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
3

Zhongguo ren min zheng zhi xie shang hui yi. Hubei Sheng Zhongxiang Xian wei yuan hui. Zheng xie zhi bian zuan wei yuan hui. 鍾祥縣政协誌. Zhongxiang Xian: Zhongguo ren min zheng zhi xie shang hui Hubei Sheng Zhongxiang Xian wei yuan hui zheng xie zhi bian zuan wei yuan hui, 1988.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
4

Zhijiang zheng xie zhi bian zuan wei yuan hui. Zhijiang zheng xie zhi, 1980.12 - 1996.11. [Zhijiang Xian: Zhijiang zheng xie zhi bian zuan wei yuan hui], 1998.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
5

Jinfa, Xu, a cura di. Xue sheng gong zuo wei yuan hui an shi liao hui bian. Taibei Xian Xindian Shi: Guo shi guan, 2008.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
6

Guosheng, Jiang, Han Yiyi, Zeng Xiulun, Liu Shuqing e Guizhou sheng dang an guan., a cura di. Minguo Guizhou Sheng zheng fu wei yuan hui hui yi ji yao. Guiyang Shi: Guizhou ren min chu ban she, 2000.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
7

Hunan Sheng di fang zhi bian zuan wei yuan hui., a cura di. Hunan Sheng zhi.: Hunan Sheng di fang zhi bian zuan wei yuan hui bian. Changsha: Hunan ren min chu ban she, 2003.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
8

Hunan Sheng di fang zhi bian zuan wei yuan hui., a cura di. Hunan Sheng zhi.: Hunan Sheng di fang zhi bian zuan wei yuan hui bian. Changsha: Hunan ren min chu ban she, 2001.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
9

Hunan Sheng di fang zhi bian zuan wei yuan hui., a cura di. Hunan Sheng zhi.: Hunan Sheng di fang zhi bian zuan wei yuan hui bian. Beijing: Wu zhou chuan bo chu ban she, 2005.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
10

Zhiwei, Gao, a cura di. Zhongguo guo min dang zhong yang wei yuan hui dang shi wei yuan hui cang Jiang Jingguo xian sheng zhao pian mu lu. Taibei Shi: Zhongguo guo min dang zhong yang wei yuan hui dang shi wei yuan hui, 1997.

Cerca il testo completo
Gli stili APA, Harvard, Vancouver, ISO e altri
Offriamo sconti su tutti i piani premium per gli autori le cui opere sono incluse in raccolte letterarie tematiche. Contattaci per ottenere un codice promozionale unico!

Vai alla bibliografia