26,592 research outputs found

    Jing yu bi du: [8 juan : xu bian 8 juan. v.1

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    雷琳, 錢樹棠, 錢樹立同輯]線裝; 1函.Xian zhuang; 1 han.Lei Lin, Qian Shutang, Qian Shuli tong ji]

    Jing yu bi du: [8 juan : xu bian 8 juan. v.1

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    雷琳, 錢樹棠, 錢樹立同輯]線裝; 1函.Xian zhuang; 1 han.Lei Lin, Qian Shutang, Qian Shuli tong ji]

    Fig. 6. X in Pentacyclic Triterpenes from the resin of Liquidambar formosana have anti-angiogenic properties

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    Fig. 6. X-ray ORTEP drawing of 3 with ellipsoids drawn at the 30% probability level.Published as part of Zhu, Yao, Guan, Yi-Jian, Chen, Qian-Zheng, Yuan, Liao-Heng, Xu, Qian-Qian, Zhou, Mei-Lin, Liu, Hui, Lin, Wei, Zhang, Zong-Duan, Zhou, Zhong-Lou & Dong, Jian-Yong, 2021, Pentacyclic Triterpenes from the resin of Liquidambar formosana have anti-angiogenic properties, pp. 1-9 in Phytochemistry (112676) 184 on page 5, DOI: 10.1016/j.phytochem.2021.112676, http://zenodo.org/record/829201

    Fig. 1 in Pentacyclic Triterpenes from the resin of Liquidambar formosana have anti-angiogenic properties

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    Fig. 1. Structures of compounds 1–15.Published as part of Zhu, Yao, Guan, Yi-Jian, Chen, Qian-Zheng, Yuan, Liao-Heng, Xu, Qian-Qian, Zhou, Mei-Lin, Liu, Hui, Lin, Wei, Zhang, Zong-Duan, Zhou, Zhong-Lou & Dong, Jian-Yong, 2021, Pentacyclic Triterpenes from the resin of Liquidambar formosana have anti-angiogenic properties, pp. 1-9 in Phytochemistry (112676) 184 on page 2, DOI: 10.1016/j.phytochem.2021.112676, http://zenodo.org/record/829201

    Fig. 8 in Pentacyclic Triterpenes from the resin of Liquidambar formosana have anti-angiogenic properties

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    Fig. 8. The effect of compounds 1–5, 6, 11, and14 on VEGF-induced migration observed in HUVECs. Data are presented as mean ± SEM of at least three independent experiments. *P <0.05; **P <0.01; ***P <0.001 vs. VEGF-treated control.Published as part of Zhu, Yao, Guan, Yi-Jian, Chen, Qian-Zheng, Yuan, Liao-Heng, Xu, Qian-Qian, Zhou, Mei-Lin, Liu, Hui, Lin, Wei, Zhang, Zong-Duan, Zhou, Zhong-Lou & Dong, Jian-Yong, 2021, Pentacyclic Triterpenes from the resin of Liquidambar formosana have anti-angiogenic properties, pp. 1-9 in Phytochemistry (112676) 184 on page 6, DOI: 10.1016/j.phytochem.2021.112676, http://zenodo.org/record/829201

    sj-docx-2-tag-10.1177_17562848231154101 – Supplemental material for Characteristics of fecal microbiota in different constipation subtypes and association with colon physiology, lifestyle factors, and psychological status

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    Supplemental material, sj-docx-2-tag-10.1177_17562848231154101 for Characteristics of fecal microbiota in different constipation subtypes and association with colon physiology, lifestyle factors, and psychological status by Ting Yu, Yu Ding, Dong Qian, Lin Lin and Yurong Tang in Therapeutic Advances in Gastroenterology</p

    sj-docx-1-tag-10.1177_17562848231154101 – Supplemental material for Characteristics of fecal microbiota in different constipation subtypes and association with colon physiology, lifestyle factors, and psychological status

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    Supplemental material, sj-docx-1-tag-10.1177_17562848231154101 for Characteristics of fecal microbiota in different constipation subtypes and association with colon physiology, lifestyle factors, and psychological status by Ting Yu, Yu Ding, Dong Qian, Lin Lin and Yurong Tang in Therapeutic Advances in Gastroenterology</p

    Yushan cao tang xu ji: [6 juan].

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    錢林撰 ; [伍崇曜輯]Date from preface.框13.1 x 9.1 cm., 9行21字, 黑口, 左右雙邊, 無魚尾, 版心中鐫分冊書名, 下鐫叢書名.Qian Lin zhuan ; [Wu Chongyao ji]Kuang 13.1 x 9.1 cm., 9 xing 21 zi, hei kou, zuo you shuang bian, wu yu wei, ban xin zhong juan fen ce shu ming, xia juan cong shu ming

    A fuzzy approach for sequencing interrelated activities in a DSM

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    Production and manufacturing systems often involve a myriad of interrelated activities. How these activities are organised and scheduled has a significant effect on the success of a system. Recently, the Design Structure Matrix (DSM) has been regarded as an effective tool for modelling and scheduling interrelated activities. Based on fuzzy set theory, this study explicitly addresses the uncertain activity dependencies in our formulation and develops a mathematical model for sequencing interrelated activities in a DSM. Because of the complexity of the model, a new approach, which embeds an exact algorithm within a framework of a local search heuristic, is presented for solving large problem instances. Testing results demonstrate that relatively good solutions can be easily obtained by our approach, thereby providing managers with an effective tool for scheduling a large number of interrelated activities with uncertain dependencies. © 2012 Copyright Taylor and Francis Group, LLC.Abdelsalam HME, 2006, IEEE T ENG MANAGE, V53, P69, DOI 10.1109-TEM.2005.861805; Ahmadi R, 2001, EUR J OPER RES, V130, P539, DOI 10.1016-S0377-2217(99)00412-9; Banerjee A, 2007, IIE TRANS, V39, P453, DOI 10.1080-07408170601180510; Browning TR, 2001, IEEE T ENG MANAGE, V48, P292, DOI 10.1109-17.946528; Chen CH, 2004, INT J PROD RES, V42, P4623, DOI 10.1080-00207540410001721727; Chen SJ, 2003, COMPUT IND ENG, V44, P435, DOI 10.1016-S0360-8352(02)00230-9; Debels D, 2007, OPER RES, V55, P457, DOI 10.1287-opre.1060.0358; Dubois D., 2000, FUNDAMENTALS FUZZY S; Dubois D, 2003, EUR J OPER RES, V147, P231, DOI 10.1016-S0377-2217(02)00558-1; EPPINGER SD, 1994, RES ENG DES, V6, P1, DOI 10.1007-BF01588087; Eppinger SD, 2001, HARVARD BUS REV, V79, P149; Fortemps P, 1996, FUZZY SET SYST, V82, P319, DOI 10.1016-0165-0114(95)00273-1; Guschinskaya O, 2008, EUR J OPER RES, V189, P902, DOI 10.1016-j.ejor.2006.03.072; Karniel A, 2009, IEEE T ENG MANAGE, V56, P636, DOI 10.1109-TEM.2009.2032032; Karniel A, 2005, COMPUT AIDED DESIGN, V37, P399, DOI 10.1016-j.cad.2004.06.015; KUSIAK A, 1993, INT J PROD RES, V31, P753, DOI 10.1080-00207549308956755; Lancaster J, 2008, INT J PROD RES, V46, P5043, DOI 10.1080-00207540701324176; Li D., 2006, NONLINEAR INTEGER PR; Lin J, 2009, EUR J OPER RES, V196, P1158, DOI 10.1016-j.ejor.2008.05.030; Lin J, 2010, EUR J OPER RES, V201, P737, DOI 10.1016-j.ejor.2009.03.040; Lin J, 2008, EUR J OPER RES, V185, P378, DOI 10.1016-j.ejor.2006.12.022; Luh DB, 2009, CONCURRENT ENG-RES A, V17, P43, DOI 10.1177-1063293X09102249; McCulley C, 1996, STRUCT OPTIMIZATION, V12, P186, DOI 10.1007-BF01196956; Meier C, 2007, J MECH DESIGN, V129, P566, DOI 10.1115-1.2717224; Palpant M, 2004, ANN OPER RES, V131, P237, DOI 10.1023-B:ANOR.0000039521.26237.62; Qian YJ, 2011, IEEE T ENG MANAGE, V58, P688, DOI 10.1109-TEM.2011.2107558; Rowles C. M., 1999, THESIS MIT; Shaja AS, 2010, RES ENG DES, V21, P173, DOI 10.1007-s00163-009-0082-5; Smith RP, 1997, MANAGE SCI, V43, P1104, DOI 10.1287-mnsc.43.8.1104; Smith RP, 1998, CONCURRENT ENG-RES A, V6, P15, DOI 10.1177-1063293X9800600103; Steward D. V., 1981, IEEE T ENG MANAGE, V49, P428; Tang DB, 2010, ADV ENG INFORM, V24, P159, DOI 10.1016-j.aei.2009.08.005; Tang DB, 2000, COMPUT IND ENG, V38, P479, DOI 10.1016-S0360-8352(00)00059-0; Tang DB, 2009, CONCURRENT ENG-RES A, V17, P129, DOI 10.1177-1063293X09105348; YAGER RR, 1981, INFORM SCIENCES, V24, P143, DOI 10.1016-0020-0255(81)90017-7; Yassine A, 2003, CONCURRENT ENG-RES A, V11, P165, DOI 10.1177-106329303034503; Zimmermann H.-J., 1996, FUZZY SET THEORY ITS32

    FIGURE 3 in A new species of Punctularia (Punctulariaceae, Basidiomycota) from southwest China

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    FIGURE 3. Microscopic structures of Punctularia bambusicola (drawn from the holotype). A: basidiospores. B: basidia and basidioles. C: a section of hymenium. Bars: A = 5 μm, B–C = 10 μm. Drawings by: Qian-Xin Guan.Published as part of Guan, Qian-Xin, Zhao, Wei & Zhao, Chang-Lin, 2021, A new species of Punctularia (Punctulariaceae, Basidiomycota) from southwest China, pp. 285-292 in Phytotaxa 489 (3) on page 290, DOI: 10.11646/phytotaxa.489.3.5, http://zenodo.org/record/575444
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