Academic literature on the topic 'Shi zheng gong cheng'

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Journal articles on the topic "Shi zheng gong cheng"

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HUANG, JIA, LU GONG, SHUN-CHERN TSAUR, LIN ZHU, KEYING AN, and HONGWEI CHEN. "Revision of the subgenus Phortica (sensu stricto) (Diptera, Drosophilidae) from East Asia, with assessment of species delimitation using DNA barcodes." Zootaxa 4678, no. 1 (September 30, 2019): 1–75. http://dx.doi.org/10.11646/zootaxa.4678.1.1.

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A total of 50 (43 known and seven new) species in the subgenus Phortica (sensu stricto) were surveyed and (re)described from China: P. bicornuta (Chen & Toda, 1997); P. bipartita (Toda & Peng, 1992); P. biprotrusa (Chen & Toda, 1998); P. cardua (Okada, 1977); P. chi (Toda & Sidorenko, 1996); P. conifera (Okada, 1977); P. eparmata (Okada, 1977); P. eugamma (Toda & Peng, 1990); P. excrescentiosa (Toda & Peng, 1990); P. fangae (Máca, 1993); P. flexuosa (Zhang & Gan, 1986); P. foliata (Chen & Toda, 1997); P. gamma (Toda & Peng, 1990); P. gigas (Okada, 1977); P. glabtabula Chen & Gao, 2005; P. hainanensis (Chen & Toda, 1998); P. hongae (Máca, 1993); P. huazhii Cheng & Chen, 2008; P. iota (Toda & Sidorenko, 1996); P. jadete Zhu, Cao & Chen, 2018; P. kappa (Máca, 1977); P. lambda (Toda & Peng, 1990); P. latifoliacea Chen & Watabe, 2008; P. magna (Okada, 1960); P. okadai (Máca, 1977); P. omega (Okada, 1977); P. orientalis (Hendel, 1914); P. pangi Chen & Wen, 2005; P. paramagna (Okada, 1971); P. perforcipata (Máca & Lin, 1993); P. pi (Toda & Peng, 1990); P. protrusa (Zhang & Shi, 1997); P. pseudopi (Toda & Peng, 1990); P. pseudotau (Toda & Peng, 1990); P. psi (Zhang & Gan, 1986); P. rhagolobos Chen & Gao, 2008; P. saeta (Zhang & Gan, 1986); P. setitabula Chen & Gao, 2005; P. subradiata (Okada, 1977); P. tau (Toda & Peng, 1990); P. uncinata Chen & Gao, 2005; P. unipetala Chen & Wen, 2005; P. allomega Gong & Chen, sp. nov.; P. archikappa Gong & Chen, sp. nov.; P. dianzangensis Gong & Chen, sp. nov.; P. imbacilia Gong & Chen, sp. nov.; P. liukuni Gong & Chen, sp. nov.; P. tibeta Gong & Chen, sp. nov.; and P. xianfui Gong & Chen, sp. nov. In addition, seven new synonyms were recognized: P. acongruens (Zhang & Shi, 1997), syn. nov.; P. antillaria (Chen & Toda, 1997), syn. nov.; P. kukuanensis Máca, 2003, syn. nov.; P. linae (Máca & Chen, 1993), syn. nov.; P. shillongensis (Singh & Gupta, 1979), syn. nov.; P. takadai (Okada, 1977), syn. nov.; and P. watanabei (Máca & Lin, 1993), syn. nov. A key to all Asian species (except for the eparmata species complex) of this subgenus was provided. All currently available DNA barcode (partial mitochondrial cytochrome c oxidase subunit I (COI) gene) sequences of this subgenus (217 sequences of 54 species) are employed in a molecular analysis using different species delimitation methods. The results indicate that approximately 68.5% (37 of 54 spp.) of Phortica (s. str.) species could be clearly distinguished from closely related morphospecies or cryptic species.
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CAO, CHENG-QUAN, JIAN-PING SHI, and ZHAN YIN. "A new species of the genus Chrysacris Zheng, 1983 from China (Orthoptera: Acridoidea, Acrididae)." Zootaxa 4311, no. 3 (August 24, 2017): 443. http://dx.doi.org/10.11646/zootaxa.4311.3.11.

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The Chrysacris Zheng, 1983 is a median genus in Acrididae, which contains 18 species [Tu & Cheng, 1964; Zheng, 1983; Lian & Zheng, 1987; Li & Chen, 1988; Zheng, 1988; Liu, 1990; Ren et al, 1991; Liang & Jia, 1992; Zheng et al, 1992; Ren et al, 1993; Zhang & Zheng, 1993; Zheng, 1993; Zheng & Shi, 1993; Niu, 1994; Ren et al, 1994; Zheng et al, 1995; Yin et al, 1996; Ren 2001; Ren et al, 2002; Yin et al, 2003; Zheng et al, 2011; Dong et al, 2015; Eades, et al, 2017; Zhang et al, 2017], mainly distributed in Heilongjiang, Jilin, Liaoning, Inner Mongolia, Shanxi, Shaanxi, Henan and Guizhou provinces of China. A new species of the genus Chrysacris is described from Inner Mongolia, China in this paper. Type specimens are deposited in the Natural Museum of Hebei University, Baoding, Hebei, China.
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Wu, Guo. "ZHENG ZHEN AND THE RISE OF EVIDENTIAL RESEARCH IN LATE QING NORTHERN GUIZHOU." Journal of Chinese History 2, no. 1 (August 7, 2017): 145–67. http://dx.doi.org/10.1017/jch.2017.15.

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AbstractThis article investigates the formation of the Shatan scholarly group and the contribution of its leader, Zheng Zhen. Zheng benefitted from a vigorous trans-regional cultural network of returned local scholars such as Li Xun and Mo Yuchou and prominent scholar-officials from outside such as Cheng Enze and He Changling. Zheng Zhen remained true to the approaches and research topics of evidential research, i.e., historical philology and exegesis of pre-Qin classics, bibliography, and an inquiry into ancient institutions and technology, in an era when the general intellectual trend turned toward statecraft studies and the politicized Modern Text School, promoted by scholars like Gong Zizhen and Kang Youwei. The contribution of the Shatan group, Zheng Zhen in particular, embodies the rise of evidential research, a passion for facts, as well as concerns about society. More importantly, it prompts us to rethink Guizhou as an active agent in the late Qing Chinese cultural landscape.
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Jian, Hong, Zhenbo Song, Yiping Zhang, Kunyan Li, Nong Yang, Melissa Moore, Pingli Wang, et al. "Abstract CT505: Phase I study of D-1553 to assess safety and efficacy in patients with non-small cell lung cancer (NSCLC) harboring KRASG12C mutation." Cancer Research 82, no. 12_Supplement (June 15, 2022): CT505. http://dx.doi.org/10.1158/1538-7445.am2022-ct505.

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Abstract Background: KRASG12C mutation acts as an oncogenic driver and occurs in ~15% of NSCLC. D-1553 is a novel and potent small molecule inhibitor of KRASG12C. Here we present the safety, tolerability, pharmacokinetics (PK) and preliminary efficacy of D-1553 in KRASG12C mutated NSCLC. Methods: Key inclusion criteria: KRASG12C identified by molecular testing, and after progression of standard therapy. Oral daily (QD) doses of 600, 800 and 1200 mg, and twice daily (BID) doses of 400 and 600 mg were assessed in dose escalation part; 600 mg BID was assessed in dose expansion part. Endpoints included safety, PK parameters, objective response rate (ORR), disease control rate (DCR), progression-free survival (PFS) and duration of response (DOR), evaluated by RECIST 1.1. Efficacy results included 6 NSCLC pts from dose escalation part of another Phase I study of D-1553 [NCT04585035] with similar inclusion/exclusion criteria as this study. Results: As of Dec 27, 2021, 16 pts with NSCLC (15 [93.8%] male, median age 61 [range: 30-74]) were enrolled in dose escalation part and 8 pts were evaluated in dose expansion part. D-1553 was well absorbed, with a median time to reach tmax in 1-4 hours. The Cmax and AUC of each dose group tested (400 mg and 600 mg, BID) increased linearly as the dose increased. However, the changes of Cmax and AUC in 600, 800 and 1200 mg (QD) group were not dose-dependent. No DLTs had been reported in dose escalation part. 15 pts (93.8%) had treatment-related adverse events (TRAEs), most of which were grade 1-2. The most frequently reported TRAEs (frequency ≥ 15%) were elevated alanine aminotransferase, aspartate aminotransferase and conjugated bilirubin, rash, anemia, asthenia, decreased appetite, hyperuricemia, and increased γ-glutamyltransferase. Among the 28 pts (including 14 pts from dose escalation, 8 pts from dose expansion, and 6 pts with NSCLC from another D-1553 study) evaluable for tumor response, 12 pts had partial response (PR), and 14 had stable disease (SD). ORR and DCR were 42.9% (12/28) and 92.9% (26/28), respectively. Among the 11 pts in 600 mg BID group, 6 pts had PR, and 3 had SD. ORR and DCR were 54.5% (6/11,) and 81.8% (9/11), respectively. Most of the patients with PR or SD were continuing on study at the time of the data cut-off. Conclusion: D-1553 is well tolerated with no DLTs at studied doses. Early results demonstrate significant anti-tumor activity of single-agent D-1553 in pts with KRASG12C mutated NSCLC. This study is ongoing. More results will be presented at the meeting. Citation Format: Hong Jian, Zhenbo Song, Yiping Zhang, Kunyan Li, Nong Yang, Melissa Moore, Pingli Wang, Yanqiu Zhao, Yi Gong, Craig Underhill, Sang-We Kim, Cheng-Ta Yang, Ziyong Xiang, Zhe Shi, Ling Zhang, Yaolin Wang, Shun Lu. Phase I study of D-1553 to assess safety and efficacy in patients with non-small cell lung cancer (NSCLC) harboring KRASG12C mutation [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2022; 2022 Apr 8-13. Philadelphia (PA): AACR; Cancer Res 2022;82(12_Suppl):Abstract nr CT505.
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Zavidovskaia, Ekaterina A., Tatiana I. Vinogradova, and Dmitry I. Maiatskii. "Interpretation of Novels and Plays about Song Dynasty Judge Bao in the Chinese Illustrated Woodblock Editions and Popular Prints nianhua." Vestnik of Saint Petersburg University. Asian and African Studies 13, no. 3 (2021): 383–99. http://dx.doi.org/10.21638/spbu13.2021.306.

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The article aims to analyze various illustrations of court case stories about Song dynasty judge Bao Zheng (包拯, also named as Bao-gong 包公, Bao Longtu 包龍圖, 999–1062), found in Qing woodblock editions of the novel and popular woodblock prints nianhua, in order to determine how tales about the famous incorruptible judge have been transformed in the visual culture of late imperial times. The authors discovered several woodblock editions of novels about Judge Bao-gong, or Bao Dragon-Design (Bao Longtu), in the St. Petersburg State University library including one illustrated edition and several non-illustrated ones. The State Hermitage and other Russian collections hold an impressive number of popular prints depicting scenes from the traditional drama based on Judge Bao stories, while only several of them refer directly to literary pieces, being mostly scenes from the plays. The protagonists are shown wearing theatrical make-up matching their theatrical character, Judge Bao is recognized by a black-colored face symbolizing his astuteness and uncorrupted nature. The article attempts to find connections between Shi Yukun’s 石玉昆 novel “The Three Heroes and Five Gallants” (Sanxiawuyi 三俠五義, 1879), the traditional drama plays and nianhua prints featuring Judge Bao, which proliferated in the late 19th — early 20th centuries. This research claims to define sources of various types of illustrations and clarify connections between book illustration, popular prints and drama.
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FUMOTO, Kazuyoshi, Jun CAI, Jian ZHANG, and Akira NAITO. "DESIGN TECHNIQUE OF THE KIWARI OF THE "HUN HE TYPE" IN THE "GONG CHENG ZUO FA ZE LIE" : Zheng lou・Zuan jiao lou・Jian lou." Journal of Architecture and Planning (Transactions of AIJ) 66, no. 541 (2001): 227–34. http://dx.doi.org/10.3130/aija.66.227.

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Akbar, Said Ali. "Sensor Gas Amonia Berbasis Polimer Konduktif Polianilina: Sebuah Review." QUIMICA: Jurnal Kimia Sains dan Terapan 3, no. 2 (February 2, 2022): 1–8. http://dx.doi.org/10.33059/jq.v3i2.4678.

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Artikel review ini memberikan informasi tentang aplikasi polianilina (PANI) dan kompositnya sebagai sensor gas berbahaya khususnya amonia (NH3). Kajian yang dibahas pada artikel ini meliputi sifat gas NH3, material komposit, kinerja sensor, serta limit deteksi. Tinjauan sensor gas amonia berbasis polimer konduktif polianilina secara menyeluruh diambil dari referensi sepuluh tahun terakhir. Sebagai contoh, komposit polianilina dengan turunan karbon seperti reduced Graphene Oxide (rGO) dan Carbon Nanotube menunjukkan limit deteksi hingga 46 ppb dengan waktu pemulihan hanya 75 detik. Selain itu, komposit PANI dengan logam seperti Ag, Sr dan sebagainya, menunjukkan limit deteksi yang lebih besar yaitu 1 ppm, namun terdapat keunggulan dimana waktu pemulihan hanya 4 deti. Oleh sebab itu, polimer konduktif polianilina menjadi material yang sangat menjanjikan untuk mendeteksi keberadaan gas NH3. Terakhir, mekanisme penginderaan gas amonia terhadap material PANI juga dibahas pada tulisan ini. Referensi: [1] M. Insausti, R. Timmis, R. Kinnersley, and M. C. Rufino, “Advances in sensing ammonia from agricultural sources,” Science of the Total Environment, vol. 706. 2020. doi: 10.1016/j.scitotenv.2019.135124. [2] H. Shen et al., “Intense Warming Will Significantly Increase Cropland Ammonia Volatilization Threatening Food Security and Ecosystem Health,” One Earth, vol. 3, no. 1, 2020, doi: 10.1016/j.oneear.2020.06.015. [3] W. Wu, B. Wei, G. Li, L. Chen, J. Wang, and J. Ma, “Study on ammonia gas high temperature corrosion coupled erosion wear characteristics of circulating fluidized bed boiler,” Engineering Failure Analysis, vol. 132, p. 105896, 2022, doi: https://doi.org/10.1016/j.engfailanal.2021.105896. [4] X. Huang et al., “Reduced graphene oxide–polyaniline hybrid: Preparation, characterization and its applications for ammonia gas sensing,” Journal of Materials Chemistry, vol. 22, no. 42, pp. 22488–22495, 2012, doi: 10.1039/C2JM34340A. [5] T. Jiang, P. Wan, Z. Ren, and S. Yan, “Anisotropic Polyaniline/SWCNT Composite Films Prepared by in Situ Electropolymerization on Highly Oriented Polyethylene for High-Efficiency Ammonia Sensor,” ACS Applied Materials & Interfaces, vol. 11, no. 41, pp. 38169–38176, Oct. 2019, doi: 10.1021/acsami.9b13336. [6] H. Bai and G. Shi, “Gas sensors based on conducting polymers,” Sensors, vol. 7, no. 3. 2007. doi: 10.3390/s7030267. [7] D. Kwak, Y. Lei, and R. Maric, “Ammonia gas sensors: A comprehensive review,” Talanta, vol. 204. 2019. doi: 10.1016/j.talanta.2019.06.034. [8] M. Eising, C. E. Cava, R. V. Salvatierra, A. J. G. Zarbin, and L. S. Roman, “Doping effect on self-assembled films of polyaniline and carbon nanotube applied as ammonia gas sensor,” Sensors and Actuators, B: Chemical, vol. 245, pp. 25–33, 2017, doi: 10.1016/j.snb.2017.01.132. [9] M. P. Diana, W. S. Roekmijati, and W. U. Suyud, “Why it is often underestimated: Historical Study of Ammonia Gas Exposure Impacts towards Human Health,” in E3S Web of Conferences, 2018, vol. 73. doi: 10.1051/e3sconf/20187306003. [10] R. T. Xu et al., “Half-Century Ammonia Emissions From Agricultural Systems in Southern Asia: Magnitude, Spatiotemporal Patterns, and Implications for Human Health,” GeoHealth, vol. 2, no. 1, 2018, doi: 10.1002/2017GH000098. [11] S. A. Akbar, A. Mardhiah, N. Saidi, and D. Lelifajri, “The effect of graphite composition on polyaniline film performance for formalin gas sensor,” Bulletin of the Chemical Society of Ethiopia, vol. 34, no. 3, 2021, doi: 10.4314/bcse.v34i3.14. [12] X. Wang, L. Gong, D. Zhang, X. Fan, Y. Jin, and L. Guo, “Room temperature ammonia gas sensor based on polyaniline/copper ferrite binary nanocomposites,” Sensors and Actuators B: Chemical, vol. 322, p. 128615, 2020, doi: https://doi.org/10.1016/j.snb.2020.128615. [13] L. Wang et al., “Enhanced Sensitivity and Stability of Room-Temperature NH3 Sensors Using Core–Shell CeO2 Nanoparticles@Cross-linked PANI with p–n Heterojunctions,” ACS Applied Materials &Interfaces, vol. 6, no. 16, pp. 14131–14140, Aug. 2014, doi: 10.1021/am503286h. [14] Y. Guo et al., “Hierarchical graphene–polyaniline nanocomposite films for high-performance flexible electronic gas sensors,” Nanoscale, vol. 8, no. 23, pp. 12073–12080, 2016, doi: 10.1039/C6NR02540D. [15] M. Eising, C. E. Cava, R. V. Salvatierra, A. J. G. Zarbin, and L. S. Roman, “Doping effect on self-assembled films of polyaniline and carbon nanotube applied as ammonia gas sensor,” Sensors and Actuators B: Chemical, vol. 245, pp. 25–33, 2017, doi: https://doi.org/10.1016/j.snb.2017.01.132. [16] S. Bai et al., “Transparent conducting films of hierarchically nanostructured polyaniline networks on flexible substrates for high-performance gas sensors,” Small, vol. 11, no. 3, 2015, doi: 10.1002/smll.201401865. [17] Z. Wu et al., “Enhanced sensitivity of ammonia sensor using graphene/polyaniline nanocomposite,” Sensors and Actuators, B: Chemical, vol. 178, 2013, doi: 10.1016/j.snb.2013.01.014. [18] N. R. Tanguy, B. Wiltshire, M. Arjmand, M. H. Zarifi, and N. Yan, “Highly Sensitive and Contactless Ammonia Detection Based on Nanocomposites of Phosphate-Functionalized Reduced Graphene Oxide/Polyaniline Immobilized on Microstrip Resonators,” ACS Applied Materials and Interfaces, vol. 12, no. 8, 2020, doi: 10.1021/acsami.9b21063. [19] D. Maity and R. T. R. Kumar, “Polyaniline Anchored MWCNTs on Fabric for High Performance Wearable Ammonia Sensor,” ACS Sensors, vol. 3, no. 9, 2018, doi: 10.1021/acssensors.8b00589. [20] J. Ma et al., “Multi-walled carbon nanotubes/polyaniline on the ethylenediamine modified polyethylene terephthalate fibers for a flexible room temperature ammonia gas sensor with high responses,” Sensors and Actuators, B: Chemical, vol. 334, May 2021, doi: 10.1016/j.snb.2021.129677. [21] A. Javadian-Saraf, E. Hosseini, B. D. Wiltshire, M. H. Zarifi, and M. Arjmand, “Graphene oxide/polyaniline-based microwave split-ring resonator: A versatile platform towards ammonia sensing,” Journal of Hazardous Materials, vol. 418, Sep. 2021, doi: 10.1016/j.jhazmat.2021.126283. [22] A. Liu et al., “The gas sensor utilizing polyaniline/ MoS2 nanosheets/ SnO2 nanotubes for the room temperature detection of ammonia,” Sensors and Actuators, B: Chemical, vol. 332, Apr. 2021, doi: 10.1016/j.snb.2021.129444. [23] Q. Feng, H. Zhang, Y. Shi, X. Yu, and G. Lan, “Preparation and gas sensing properties of PANI/SnO2 hybrid material,” Polymers, vol. 13, no. 9, May 2021, doi: 10.3390/polym13091360. [24] S. Benhouhou, A. Mekki, M. Ayat, and N. Gabouze, “Facile Preparation of PANI-Sr Composite Flexible Thin Film for Ammonia Sensing at Very Low Concentration,” Macromolecular Research, vol. 29, no. 4, pp. 267–279, Apr. 2021, doi: 10.1007/s13233-021-9034-3. [25] X. Wang et al., “In situ polymerized polyaniline/MXene (V2C) as building blocks of supercapacitor and ammonia sensor self-powered by electromagnetic-triboelectric hybrid generator,” Nano Energy, vol. 88, Oct. 2021, doi: 10.1016/j.nanoen.2021.106242. [26] J. Chang et al., “Polyaniline-Reduced Graphene Oxide Nanosheets for Room Temperature NH3Detection,” ACS Applied Nano Materials, vol. 4, no. 5, pp. 5263–5272, May 2021, doi: 10.1021/acsanm.1c00633. [27] S. Matindoust, A. Farzi, M. Baghaei Nejad, M. H. Shahrokh Abadi, Z. Zou, and L. R. Zheng, “Ammonia gas sensor based on flexible polyaniline films for rapid detection of spoilage in protein-rich foods,” Journal of Materials Science: Materials in Electronics, vol. 28, no. 11, 2017, doi: 10.1007/s10854-017-6471-z. [28] J. Cai, C. Zhang, A. Khan, C. Liang, and W. di Li, “Highly transparent and flexible polyaniline mesh sensor for chemiresistive sensing of ammonia gas,” RSC Advances, vol. 8, no. 10, pp. 5312–5320, 2018, doi: 10.1039/c7ra13516e. [29] T. Syrový et al., “Gravure-printed ammonia sensor based on organic polyaniline colloids,” Sensors and Actuators, B: Chemical, vol. 225, pp. 510–516, Mar. 2016, doi: 10.1016/j.snb.2015.11.062.
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CAI, Jun, Kazuyoshi FUMOTO, Jian ZHANG, and Akira NAITO. "DESIGN TECHNIQUE OF "JING KOU TIAN HUA" (COFFERED CEILING) BY CHINESE CLASSICAL ARCHITECTURAL BOOK "YING ZAO FA SHI", "GONG CHENG ZUO FA ZE LIE" AND "YING ZAO SUAN LIE"." Journal of Architecture and Planning (Transactions of AIJ) 68, no. 566 (2003): 177–83. http://dx.doi.org/10.3130/aija.68.177_1.

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Leon, Carlos M., Zheng Gong, Qing Li, Jiayuan Shi, Wulin Zuo, Muneer G. Hasham, Lenny Shultz, Sheng Li, and Guangwen Ren. "Abstract 1863: Mouse strain variations in drug-induced lung stromal responses." Cancer Research 82, no. 12_Supplement (June 15, 2022): 1863. http://dx.doi.org/10.1158/1538-7445.am2022-1863.

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Abstract Chemotherapy has significantly improved the survival of cancer patients. However, the vast variation in treatment responses remains a major issue in the clinic. It is imperative to understand the molecular mechanisms underlying treatment failure in specific populations of patients. Genetic diversity has been recognized to mainly account for the differences in drug responses among patients. Yet, it is not feasible to map the responsible genetic variants within millions of single-nucleotide polymorphisms in the human genome in clinical settings with a limited number of subjects and insufficient genomic information. Genetically diverse mice are an ideal tool to overcome the limitations in clinical studies and model drug responses in hosts that require genetic susceptibility and resistance factors. Recent studies have also implicated a critical role for host cells (i.e., the tissue microenvironment) in building a protective “niche” for tumor cells enabling their escape from chemotherapeutic treatments. Notably, the host regenerative response upon chemotherapy “injury,” which is regarded as an intrinsic host mechanism to repair damaged tissues, may be exploited by tumor cells for their local recurrence or distant metastases. In this study, using a lung injury model, we determined how drug-induced lung stromal wound healing responses differed among eight inbred mouse strains (BALB/cJ, NSG, C57BL/6J, CH3/HeJ, CBA/J, SJL/J, A/J, and NOD/ShiLtJ). Upon either cisplatin or doxorubicin stimulation, the wound healing-associated genes Il-6, Spp1, Cxcl1, and Ccl2 were all found upregulated in lung stromal cells but showed a great variation across different strains. Furthermore, we performed single-cell RNA sequencing on the lung stromal cells and immune cells isolated from three selected mouse strains (BALB/cJ, C57BL/6J, and NOD/ShiLtJ) without and with doxorubicin treatment in vivo. The transcriptomic analyses revealed strain-specific and non-specific therapy-elicited gene signatures in different types of lung tissue cells. Collectively, our results signify an association between genetic backgrounds and drug-induced host responses in mice. The next steps of the study aim to understand how genetic diversity would functionally impact drug-induced lung tissue regeneration, lung inflammation, and post-therapy tumor relapse or metastasis in the lung. Citation Format: Carlos M. Leon, Zheng Gong, Qing Li, Jiayuan Shi, Wulin Zuo, Muneer G. Hasham, Lenny Shultz, Sheng Li, Guangwen Ren. Mouse strain variations in drug-induced lung stromal responses [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2022; 2022 Apr 8-13. Philadelphia (PA): AACR; Cancer Res 2022;82(12_Suppl):Abstract nr 1863.
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Jang, Taejin, Lubhani Mishra, Maitri Uppaluri, Scott A. Roberts, and Venkat R. Subramanian. "(Digital Presentation) An Efficient Modeling Framework for Electrodeposition in Lithium Metal Batteries." ECS Meeting Abstracts MA2022-01, no. 46 (July 7, 2022): 1948. http://dx.doi.org/10.1149/ma2022-01461948mtgabs.

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Lithium metal batteries are drawing attention as a next generation of lithium-ion batteries due to their advantage of high theoretical capacity. However, the widespread application and commercialization of this potential battery technology is not achieved yet due to the poor cyclability and safety issues. Despite the recent progress1-2 and development of numerous strategies for the long and durable cyclability1-4, the analysis of lithium metal evolution still depends on the experimental approach in macroscale or molecular simulation in nanoscale5. In order to understand and optimize the system-level response of these lithium metal batteries, an accurate and robust modeling and simulation framework with a coupled macro and nanoscale approach is essential. In the previous reports, we have discussed simple 1D model to study stripping and plating of the lithium metal electrode and obtaining the characteristic inverse signatures in the cell voltage6, and appropriate boundary conditions ensuring mass conservation in a 2D model7. In this work, a 2D separator domain with initial surface morphology at the lithium metal electrode is considered for diffusion and migration of the lithium-ions in the domain along with reaction kinetics at the surface. The model is based on the mass and charge conservation in the system that captures the morphological evolution at the lithium metal electrode along the charge/discharge of the battery during cycling. This model is solved with in-house schemes based on spatial, temporal discretization schemes and coordinate transformation. The results show that the local current distribution at the electrode surface affects the rate and shape of the growth of the lithium metal at the negative electrode. The study has been performed for a wide range of geometric, kinetic and transport parameters. The proposed in-house model efficiently reaches a converged results compared with other numerical schemes both in speed and accuracy, and easily adaptive to optimizing tools towards cell design. Acknowledgments This research was supported by the Assistant Secretary for Energy Efficiency and Renewable Energy, Office of Vehicle Technologies of the US Department of Energy (DoE) through the Advanced Battery Materials Research Program (Battery500 Consortium). References K. N. Wood, E. Kazyak, A. F. Chadwick, K. H. Chen, J. G. Zhang, K. Thornton, and N. P. Dasgupta, ACS Cent. Sci., 2, 790-801 (2016). A. Pei, G. Zheng, F. Shi, Y. Li, and Y. Cui., Nano Lett., 17(2), 1132-1139 (2017). J. Liu, Z. Bao, Y. Cui, E. Dufek, J. B. Goodenough, P. Khalifah, Q. Li, B. Liaw, P. Liu, A. Manthiram, Y. S. Meng, V. R. Subramanian, M. F. Toney, V. V. Viswanathan, M. S. Whittingham, J. Xiao, W. Xu, J. Yang, X. Yang, and J. Zhang, Nat. Nanotechnol., 14 180-186 (2019). Y. Chen, Z. Yu, P. Rudnicki, H. Gong, Z. Huang, S. Kim, J. Lai, X. Kong, J. Qin, Y. Cui and Z. Bao, J. Am. Chem. Soc., 143(44), 18703-18713 (2021) S. Angarita-Gomez and P. B. Balbuena, Phys. Chem. Chem. Phys., 22, 21369-21382, (2020) M. Uppaluri, A. Subramaniam, L. Mishra, V. Viswanathan, and V. R. Subramanian, J. Electrochem. Soc., 167, 160547 (2020). L. Mishra, A. Subramaniam, T. Jang, K. Shah, M. Uppaluri, S. A. Roberts and V. R. Subramanian, J. Electrochem. Soc., 168, 092502 (2021).
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Dissertations / Theses on the topic "Shi zheng gong cheng"

1

Cheng, Xiaoke. "Shang shi gong si ying yu zhi liang fen xi yu ping jia yan jiu ji yu Zhongguo zi ben shi chang huan jing de yan jiu gou jia yu jing yan zheng ju /." Dalian Shi : Dongbei cai jing da xue chu ban she, 2006.

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Liu, Zhangzhang. "Tang dai Chang'an de ju min sheng ji yu cheng shi zheng ce /." Taibei Shi : Wen jin chu ban she, 2006. http://www.loc.gov/catdir/toc/chi0701/2007320257.html.

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Originally presented as the author's thesis (Ph. D.--University of Hong Kong) under the title: Tang dai shou du Chang'an de ju min sheng ji yu cheng shi zheng ce yan jiu.
Includes bibliographical references (p. 330-390).
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Tu, Tsung-lan. "Canonical and poetic studies in Hu Chenggong's Maoshi Houjian = Hu cheng gong "Mao shi hou jian" de jing xue yu shi xue /." View the Table of Contents & Abstract, 2007. http://sunzi.lib.hku.hk/hkuto/record/B38030780.

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Lai, Ka-chun Ken. "Shangdong Clan families and Chinese politics in the sixth century China Shandong da zu yu gong yuan liu shi ji Zhongguo zheng zhi /." Click to view the E-thesis via HKUTO, 2005. http://sunzi.lib.hku.hk/hkuto/record/B31642822.

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Lau, Cheung-cheung. "A study of livelihood and city policy in Chang'an, the capital of Tang dynasty (618-907) Tang dai shou du Changan de ju min sheng ji yu cheng shi zheng ce yan jiu /." Click to view the E-thesis via HKUTO, 2005. http://sunzi.lib.hku.hk/hkuto/record/Bibno.

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He, Jiahua. "Li yong shi xiang gong ju jin xing xie zuo qian gou si xun lian dui zuo wen cheng ji de ying xiang : kong zhi zu qian hou ce zhun shi yan she ji = The influence of prewriting training by using visual tools on achievement in Chinese composition : control group pre-test and post-test quasi experimental design /." click here to view the abstract and table of contents click here to view the fulltext, 2005. http://net3.hkbu.edu.hk/~libres/cgi-bin/thesisab.pl?pdf=b18517511a.pdf.

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簡澤峰. "Hu-Cheng-Gong” Mao-shi-hou-jian”analysis." Thesis, 2001. http://ndltd.ncl.edu.tw/handle/89697842750352039016.

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碩士
國立暨南國際大學
中國語文學系
89
This thesis has two chapters. The first chapter is Hu’s hermeneutic demeanor. Then analyze his hermeneutic. Since first chapter, we can demarcate Hu’s study-system. From second chapter, we can explicate Hu’s hermeneutic way.
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Yu, Sui-Chong, and 尤隨終. "A Sutvey of Confucianism in Taiwan from Zheng Cheng-gong of Ming Dynasty to the Japanese." Thesis, 2005. http://ndltd.ncl.edu.tw/handle/93593117310731721969.

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碩士
華梵大學
東方人文思想研究所
93
In this study the sources of the “Confucianism in Taiwan”are derived mainly from the corpus of Taiwan Wenxian Congkao. In accordance, the name “Taiwan”indicates the “Land”proper in its geographical sense. Owing to the existence of this land, the “Confucianism in Taiwan”can therefore be appended to the title “Taiwan”, which in turn can well be extended and spread over to the “History of Taiwan”As a result , the theme in this study is neither independent of the land ,nor independent of the traditional Confucianism , but a fusion of both . The essence of Taiwanese Confucianism has come down from traditional culture with self–motivated innovations and therefore is a kind of cultural fulfillment centered around Taiwan in respect to the connections between the traditional and present times. The traditional “Cultural China”relates closely to the “Cultural Taiwan”which , as shown in today’s reality , invents a cultural modernism as well as a native concern in every aspect . Furthermore, it has also survived a variety of difficulties stemmed from self-disorders and the impact from outside world. The culture of Taiwan is indeed different from the culture of China, especially from that under the control of the Chinese Communist Party. In fact, the culture of Taiwan should not be identified as the culture of China, even though the former holds a strong feeling fowards the latter. Culturally, Taiwan has its own identity and fulfills its own expectations. In Taiwan, Confucianism has become a spiritual and cultural sustenance relied on by the entire population. Also, it functions as a fountainhead from which flows incessantly an inspiration appearing on every level of lives.
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"轉變中的工商所: 1949年後國家基礎權力的演變及其邏輯." Thesis, 2008. http://library.cuhk.edu.hk/record=b6074524.

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According to Mann, the state infrastructure power is "the institutional capacity of a central state, despotic or not, to penetrate its territories and logistically implement decisions." From the perspective of state-building, this paper investigates the change of the state infrastructure power from the Maoist time to the Post-Mao period with the case study of the Industrial and Commercial Administrative Office (ICAO) in Guang Zhou city. The paper illustrates the following three arguments.
First, different from the perspectives which focus on the change of the authoritarian or communist factors in China, the state-building studies give us fresh perspective to outline the change of the state infrastructure power from the Maoist time to the Post-Mao period. In the case study of the ICAO in Guang Zhou city, the state fell short of fiscal revenue to finance the ICAO. The self-supply funding system of the ICAO hindered the formalization of the ICAO and rendered the ICAO to pursue revenue increase, which led to the arbitrary charges of the market management fee and distorted the function of the ICAO. Since 1990s, the state tried to check the ICAO's orientation of pursuing revenue increase by launching reforms to change the funding system of the ICAO and promoting the institution-building of it. Despite the limitation of the reform measures, the state enhanced its agent-monitoring capacity under the circumstance of disappearance of political movement and ideological bindings.
Second, the state-building effort of the rulers, the shortage of the fiscal revenue and the path-dependence are three outstanding factors which influence the change of the state infrastructure power from the Maoist time to the Post-Mao era. In the case of ICAO, the rulers takes efforts to extend their power to penetrate the society and monitor their agents. In order to achieve the objective of market control, the rulers established the ICAO and tried to enhance the agent-monitoring capacity. The shortage of the fiscal revenue baffled the rulers efforts to widely set up ICAO and restricted the formalization of it. Furthermore, the path dependence impacts on the development of the state infrastructure power. When the self-supply funding system of the ICAO was established, new problems and resistance arose from the funding system prevent the rulers to reform it.
Third, the state infrastructure power influences the relationship between the state and society. The state infrastructure power not only shapes how the ICAO deals with different market subjects, it also works on the coping strategies different market subjects take to protect themselves from the investigation and penalty of the ICAO. By taking the social control capacity and agent-monitoring capacity of the state into consideration, we could better understand the interaction between the ICAO and different market subjects.
黃冬婭.
Adviser: Shaoguang Wang.
Source: Dissertation Abstracts International, Volume: 69-08, Section: A, page: 3299.
Submitted: October 2007.
Thesis (doctoral)--Chinese University of Hong Kong, 2008.
Includes bibliographical references (p. 217-229).
Electronic reproduction. Hong Kong : Chinese University of Hong Kong, [2012] System requirements: Adobe Acrobat Reader. Available via World Wide Web.
Electronic reproduction. [Ann Arbor, MI] : ProQuest Information and Learning, [200-] System requirements: Adobe Acrobat Reader. Available via World Wide Web.
Abstracts in Chinese and English.
School code: 1307.
Huang Dongya.
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Books on the topic "Shi zheng gong cheng"

1

chang, Liu xing. Shi zheng gong cheng gui hua. Bei jing: Zhong guo jian zhu gong ye chu ban she, 2006.

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Shi zheng gong cheng gai lun. 3rd ed. Beijing: Zhong guo jian zhu gong ye chu ban she, 2015.

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"Shanghai shi zheng gong cheng zhi" bian zuan wei yuan hui, ed. Shanghai shi zheng gong cheng zhi. Shanghai: Shanghai she hui ke xue yuan chu ban she, 1998.

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Yangquan shi zheng gong cheng zhi. Taiyuan Shi: Shanxi ren min chu ban she, 2009.

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Shi zheng gong cheng she ji yu shi gong gui fan. Beijing: Zhongguo jian zhu gong ye chu ban she, 1985.

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Quan guo er ji jian zao shi zhi ye zi ge kao shi yong shu bian xie wei yuan hui, ed. Shi zheng gong yong gong cheng guan li yu shi wu. 3rd ed. Bei jing: Zhong guo jian zhu gong ye chu ban she, 2011.

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Shi zheng gong yong gong cheng guan li yu shi wu. Beijing: Ji xie gong ye chu ban she, 2013.

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Shi zheng gong yong gong cheng guan li yu shi wu. 4th ed. Beijing: Zhong guo jian zhu gong ye chu ban she, 2014.

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Cheng shi gong cheng xi tong gui hua. 2nd ed. Beijing: Zhong guo jian zhu gong ye chu ban she, 2011.

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Zhongguo cheng shi gong gong xing zheng yu gong gong zheng ce bi jiao yan jiu. Beijing: Zhongguo she hui ke xue chu ban she, 2005.

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Book chapters on the topic "Shi zheng gong cheng"

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"Impressions of NCKU and Zheng Cheng-Gong(郑 成 功)." In Edu-renaissance, 379–85. WORLD SCIENTIFIC, 2016. http://dx.doi.org/10.1142/9789814632713_0044.

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Taber, Douglass F. "C–H Functionalization: The Snyder Synthesis of (+)-Scholarisine A." In Organic Synthesis. Oxford University Press, 2017. http://dx.doi.org/10.1093/oso/9780190646165.003.0020.

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Thomas R. Hoye of the University of Minnesota devised (Nature 2013, 501, 531) the reagent 2, that cyclized to a benzyne that in turn dehydrogenated the alkane 1 to the alkene 3, and 4. Abigail G. Doyle of Princeton University developed (J. Am. Chem. Soc. 2013, 135, 12990) a reagent combination for the allylic fluorination of a terminal alkene 5 to the branched product 6. Yan Zhang and Jianbo Wang of Peking University oxidized (Angew. Chem. Int. Ed. 2013, 52, 10573) the methyl group of 7 to give the nitrile 8. Hanmin Huang of the Lanzhou Institute of Chemical Physics found (Org. Lett. 2013, 15, 3370) conditions for the carbonylation of the benzylic site of 9, leading to coupling with 10 to form the amide 11. Yu Rao of Tsinghua University effected (Angew. Chem. Int. Ed. 2013, 52, 13606) the direct methoxylation of 12, to give 13. Pd-mediated methoxylation had previously been described (Chem. Sci. 2013, 4, 4187) by Bing-Feng Shi of Zhejiang University. M. Christina White of the University of Illinois, Urbana found (J. Am. Chem. Soc. 2013, 135, 14052) that with variant ligands on the Fe catalyst, the oxidation of 14 could be directed selectively to either 15 or 16. C–H bonds can also be converted to C–N bonds. Sukbok Chang of KAIST oxi­dized (J. Am. Chem. Soc. 2013, 135, 12861) the unsaturated ester 17 with 18 to form the enamide 18. Gong Chen of Pennsylvania State University cyclized (Angew. Chem. Int. Ed. 2013, 52, 11124) the amide 20 to the γ-lactam 21. Professor Shi reported (Angew. Chem. Int. Ed. 2013, 52, 13588) a related approach to β-lactams. Ethers are easily oxidized. Taking advantage of this, Yun Liang of Hunan Normal University coupled (Synthesis 2013, 45, 3137) the bromoalkyne 23 with tetrahydro­furan 22 to give 24. Guangbin Dong of the University of Texas, Austin devised (J. Am. Chem. Soc. 2013, 135, 17747) a protocol for the β-arylation of ketones, includ­ing the preparation of 27 by the coupling of 25 with 26.
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