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| 1 | Network medicine:a network-based approach to human disease显示文摘 | Barabási AL Gulbahce N Loscalzo | 2011 | Nature Rev Genetics2011,12,1: | 1 |
| 2 | Sperm DNA fragmentation index does not correlate with the sperm or embryo aneuploidy rate in recurrent miscarriage or implantation failure patients显示文摘 | Bronet F Martínez E Gaytán M er al | 2012 | Human Reproduction2012,27,7: | 1 |
| 3 | Network medicine:a network-based approach to human disease显示文摘 | Barabási AL Gulbahce N Loscalzo J | 2011 | Nature Genetics2011,,12: | 1 |
| 4 | Variation of serum uric acid levels in multiple sclerosis during relapses and immunomodulatory treatment显示文摘 | Guerrero AL Martín-Polo J Laherrán E | | 0,,: | 1 |
| 5 | Cyclosporine A effect in mice C57BL/6 infected with Encephalitozoon intestinalis显示文摘 | Galván AL Agudelo Sdel P Restrepo JG | 2006 | Biomedica2006,26,1: | 1 |
| 6 | The p(l)ot thickens:cannabinoid receptors on astroglial mitochondria coordinate animal behaviors by regulating lactate availability for neurons显示文摘The coordinated interplay between neurons and astroglia,the latter producing essential metabolic precursors for neurons,is critical for the precision of neurotransmission in the execution of specific behaviors.Most recently,Jimenez-Blasco et al.1 identified CB1 cannabinoid receptors in astroglial mitochondria as gatekeepers of lactate production by regulating the stability of mitochondrial complex I through the hypoxia-inducible factor-1 pathway and thus,metabolically tuning neurons that control social behaviors. | Erik Keimpema Tibor Harkany Alán Alpár | 2020 | Signal Transduction and Targeted Therapy2020,5,1: | 0 |
| 7 | Medial calcar of proximal humeral fracture as landmark in restoration of humeral length in case of hemiarthroplasty显示文摘 | Rastislav Hromádka Ales Antonín Kuběna Martin?míd Stanislav Popelka | 2014 | Surgical and Radiologic Anatomy2014,,: | 1 |
| 8 | Short anoxic treatments to enhance transresveratrol content in grapes and wine显示文摘 | Jiménez J B Oreal J M González Ure(n)al A | 2007 | European Food Research and Technology2007,224,: | 1 |
| 9 | Competing for the disability tourism market – A comparative exploration of the factors of accessible tourism competitiveness in Spain and Australia显示文摘 | Trinidad Domínguez Vila Simon Darcy Elisa Alén González | 2015 | Tourism Management2015,,: | 1 |
| 10 | Epi- and endobiont faunal communities on an Egyptian Mediterranean rocky shore: species composition and their competition for space显示文摘The exposed calcareous rocky area of the Abu Qir Headland,east of Alexandria,Egypt which range from coarse grains,through pebbles,cobbles,and boulders to rocky platforms,was signifi cantly colonized by sclerobionts(epibionts and endobionts).The epibiont species diversity was comparatively higher than that of endobionts.Epibiont communities included bryozoans(the anascan-grade cheilostome Bifl ustra savartii),serpulid(Hydroides elegans,Spirobranchus cf.tetraceros,Vermiliopsis striaticeps and Protula or Apomatus)and spirorbid(Spirorbis)wormtubes,and balanoid barnacles(Amphibalanus amphitrite,Balanus trigonus,and Perforatus perforatus).The cheilostome bryozoan colonies,which developed extensive sheets,proliferated on the study rocky shore either encrusting the bioeroded basement directly,or encrusting other epilithic taxa,particularly balanoid barnacles and serpulid worms.Encrusters displayed a remarkable marginal competitive interaction(overgrowth and stand-off)for space on the study rocky shore.On the other hand,endobionts were not well represented on the studied rocky shore exposure.It was possible to identify three ichnotaxa:Gastrochaenolites,Maeandropolydora,and Finichnus.The fi ndings documented represent a signifi cant contribution to our knowledge of sclerobionts composition,sequence of their colonization and/or bioerosion,and their mutual relationships on the intertidal rocky shore of the Abu Qir Headland. | Magdy EL HEDENY Mohamed RASHWAN Sebastián RICHIANO Saleh AL FARRAJ Ghada AL BASHER | 2021 | Journal of Oceanology and Limnology2021,39,1: | 0 |
| 11 | Polyamines reduces lipid peroxidation induced by different pro-oxidant agents显示文摘 | Nádia Aléssio Velloso Bellé Gerusa Duarte Dalmolin Graciela Fonini Maribel Antonello Rubin Jo?o Batista Teixeira Rocha | 2004 | Brain Research2004,,2: | 3 |
| 12 | Influence of major polyphenols on antioxidant activity in Mencía and Brancellao red wines显示文摘 | F. Alén-Ruiz M.S. García-Falcón M.C. Pérez-Lamela E. Martínez-Carballo J. Simal-Gándara | 2008 | Food Chemistry2008,,1: | 1 |
| 13 | Assessing tourist behavioral intentions through perceived service quality and customer satisfaction显示文摘 | Alén González María Elisa Comesa(n)a Lorenzo Rodríguez Fraiz Brea José Antonio | | 0,,: | 1 |
| 14 | A metal-free organic-inorganic aqueous flow battery显示文摘 | Huskinson Brian Marshak Michael P Suh Changwon Er Süleyman Gerhardt Michael R Galvin Cooper J Chen Xudong Aspuru-Guzik Alán Gordon Roy G Aziz Michael J | 2014 | Nature2014,505,7482: | 1 |
| 15 | Crop Improvement and Abiotic Stress Tolerance Promoted by Moringa Leaf Extract显示文摘Moringa leaf extract(MLE)has been shown to promote beneficial outcomes in animals and plants.It is rich in amino acids,antioxidants,phytohormones,minerals,and many other bioactive compounds with nutritional and growth-promoting potential.Recent reports indicated that MLE improved abiotic stress tolerance in plants.Our understanding of the mechanisms underlying MLE-mediated abiotic stress tolerance remains limited.This review summarizes the existing literature on the role of MLE in promoting plant abiotic stress acclimation processes.MLE is applied to plants in a variety of ways,including foliar spray,rooting media,and seed priming.Exogenous application of MLE promoted crop plant growth,photosynthesis,and yield under both nonstress and abiotic stress conditions.MLE treatment reduced the severity of osmotic and oxidative stress in plants by regulating osmolyte accumulation,antioxidant synthesis,and secondary metabolites.MLE also improves mineral homeostasis in the presence of abiotic stress.Overall,this review describes the potential mechanisms underpinning MLEmediated stress tolerance. | Md.Abir Ul Islam Juthy Abedin Nupur Charles T.Hunter Abdullah Al Mamun Sohag Ashaduzzaman Sagar Md.Sazzad Hossain Mona F.A.Dawood Arafat Abdel Hamed Abdel Latef Marián Brestič Md.Tahjib-UI-Arif | 2022 | Phyton-International Journal of Experimental Botany2022,91,8: | 0 |
| 16 | Docetaxel and high-dose epirubicin as neoadjuvant chemotherapy in locally advanced breast cancer显示文摘 | E. Espinosa S. Morales P. Borrega A. Casas C. Madro?al I. Machengs J. A. Illarramendi J. Lizón J. A. Moreno J. Belón J. Janáriz M. Puente T. Checa J. R. Mel M. González Barón | 2004 | Cancer Chemotherapy and Pharmacology2004,,6: | 1 |
| 17 | Spanish-Latin American Multicenter Study of Attitudes Toward Organ Donation Among Personnel From Hospital Healthcare Centers显示文摘 | Antonio Ríos Ana López-Navas Marco Antonio Ayala-García María José Sebastián Anselmo Abdo-Cuza Jeannina Alán Laura Martínez-Alarcón Ector Jaime Ramírez Gerardo Mu?oz Juliette Suárez-López Roberto Castellanos Ricardo Ramírez Beatriz González Miguel Angel M | 2013 | Cirugía Espa?ola (English Edition)2013,,: | 1 |
| 18 | The Tetrad BMI, Leptin, Leptin/Adiponectin (L/A) Ratio and CA 15‐3 are Reliable Biomarkers of Breast Cancer显示文摘 | Jonnathan G. Santillán‐Benítez Hugo Mendieta‐Zerón Leobardo M. Gómez‐Oliván Juan J. Torres‐Juárez Juan M. González‐Ba?ales Lorena V. Hernández‐Pe?a Angel Ordó?ez‐Quiroz | 2013 | J Clin Lab Anal2013,,1: | 1 |
| 19 | Delphi consensus statement: Quality indicators for Inflammatory Bowel Disease Comprehensive Care Units显示文摘 | Xavier Calvet Julián Panés Noelia Alfaro Joaquin Hinojosa Beatriz Sicilia Marta Gallego Ildefonso Pérez Pablo Lázaro y de Mercado Fernando Gomollón Physicians: Xavier Aldeguer Rafael Alós Montserrat Andreu Manu Barreiro Fernando Bermejo Bego?a Casis Eugen | 2013 | Journal of Crohn’s and Colitis2013,,: | 1 |
| 20 | Measurement of the integrated luminosity of the Phase 2 data of the Belle Ⅱ experiment显示文摘From April to July 2018,a data sample at the peak energy of the T(4 S) resonance was collected with the Belle Ⅱ detector at the SuperKEKB electron-positron collider.This is the first data sample of the Belle Ⅱ experiment.Using Bhabha and digamma events,we measure the integrated luminosity of the data sample to be(496.3±0.3±3.0) pb-1,where the first uncertainty is statistical and the second is systematic.This work provides a basis for future luminosity measurements at Belle Ⅱ. | F.Abudinén I.Adachi P.Ahlburg H.Aihara N.Akopov A.Aloisio F.Ameli L.Andricek N.Anh Ky D.M.Asner H.Atmacan T.Aushev V.Aushev T.Aziz K.Azmi V.Babu S.Baehr S.Bahinipati A.M.Bakich P.Bambade Sw.Banerjee S.Bansal V.Bansal M.Barrett J.Baudot A.Beaulieu J.Becker P.K.Behera J.V.Bennett E.Bernieri F.U.Bernlochner M.Bertemes M.Bessner S.Bettarini V.Bhardwaj F.Bianchi T.Bilka S.Bilokin D.Biswas G.Bonvicini A.Bozek M.Bračko P.Branchini N.Braun T.E.Browder A.Budano S.Bussino M.Campajola L.Cao G.Casarosa C.Cecchi D.Červenkov M.-C.Chang P.Chang R.Cheaib V.Chekelian Y.Q.Chen Y.-T.Chen B.G.Cheon K.Chilikin H.-E.Cho K.Cho S.Cho S.-K.Choi S.Choudhury D.Cinabro L.Corona L.M.Cremaldi S.Cunliffe T.Czank F.Dattola E.De La Cruz-Burelo G.De Nardo M.De Nuccio G.De Pietro R.de Sangro M.Destefanis S.Dey A.De Yta-Hernandez F.Di Capua S.Di Carlo J.Dingfelder Z.Doležal I.Domínguez Jiménez T.V.Dong K.Dort S.Dubey S.Duell S.Eidelman M.Eliachevitch T.Ferber D.Ferlewicz G.Finocchiaro S.Fiore A.Fodor F.Forti A.Frey B.G.Fulsom M.Gabriel E.Ganiev M.Garcia-Hernandez R.Garg A.Garmash V.Gaur A.Gaz U.Gebauer A.Gellrich J.Gemmler T.Geßler R.Giordano A.Giri B.Gobbo R.Godang P.Goldenzweig B.Golob P.Gomis P.Grace W.Gradl E.Graziani D.Greenwald C.Hadjivasiliou S.Halder K.Hara T.Hara O.Hartbrich K.Hayasaka H.Hayashii C.Hearty M.T.Hedges I.Heredia de la Cruz M.Hernández Villanueva A.Hershenhorn T.Higuchi E.C.Hill H.Hirata M.Hoek S.Hollitt T.Hotta C.-L.Hsu Y.Hu K.Huang T.Iijima K.Inami G.Inguglia J.Irakkathil Jabbar A.Ishikawa R.Itoh M.Iwasaki Y.Iwasaki S.Iwata P.Jackson W.W.Jacobs D.E.Jaffe E.-J.Jang H.B.Jeon S.Jia Y.Jin C.Joo J.Kahn H.Kakuno A.B.Kaliyar G.Karyan Y.Kato T.Kawasaki H.Kichimi C.Kiesling B.H.Kim C.-H.Kim D.Y.Kim S.-H.Kim Y.K.Kim Y.Kim T.D.Kimmel K.Kinoshita C.Kleinwort B.Knysh P.Kodyš T.Koga I.Komarov T.Konno S.Korpar D.Kotchetkov N.Kovalchuk T.M.G.Kraetzschmar P.Križan R.Kroeger J.F.Krohn P.Krokovny W.Kuehn T.Kuhr M.Kumar R.Kumar K.Kumara S.Kurz A.Kuzmin Y.-J.Kwon S.Lacaprara Y.-T.Lai C.La Licata K.Lalwani L.Lanceri J.S.Lange K.Lautenbach I.-S.Lee S.C.Lee P.Leitl D.Levit P.M.Lewis C.Li L.K.Li S.X.Li Y.M.Li Y.B.Li J.Libby K.Lieret L.Li Gioi J.Lin Z.Liptak Q.Y.Liu D.Liventsev S.Longo A.Loos F.Luetticke T.Luo C.MacQueen Y.Maeda M.Maggiora S.Maity E.Manoni S.Marcello C.Marinas A.Martini M.Masuda K.Matsuoka D.Matvienko J.McNeil J.C.Mei F.Meier M.Merola F.Metzner M.Milesi C.Miller K.Miyabayashi H.Miyata R.Mizuk G.B.Mohanty H.Moon T.Morii H.-G.Moser F.Mueller F.J.Müller Th.Muller R.Mussa K.R.Nakamura E.Nakano M.Nakao H.Nakayama H.Nakazawa M.Nayak G.Nazaryan D.Neverov M.Niiyama N.K.Nisar S.Nishida K.Nishimura M.Nishimura M.H.A.Nouxman B.Oberhof S.Ogawa Y.Onishchuk H.Ono Y.Onuki P.Oskin H.Ozaki P.Pakhlov G.Pakhlova A.Paladino T.Pang E.Paoloni H.Park S.-H.Park B.Paschen A.Passeri S.Patra S.Paul T.K.Pedlar I.Peruzzi R.Peschke R.Pestotnik M.Piccolo L.E.Piilonen P.L.M.Podesta-Lerma V.Popov C.Praz E.Prencipe M.T.Prim M.V.Purohit P.Rados M.Remnev P.K.Resmi I.Ripp-Baudot M.Ritter M.Ritzert G.Rizzo L.B.Rizzuto S.H.Robertson D.Rodríguez Pérez J.M.Roney C.Rosenfeld A.Rostomyan N.Rout G.Russo D.Sahoo Y.Sakai D.A.Sanders S.Sandilya A.Sangal L.Santelj P.Sartori Y.Sato V.Savinov B.Scavino M.Schram H.Schreeck J.Schueler C.Schwanda A.J.Schwartz B.Schwenker R.M.Seddon Y.Seino A.Selce K.Senyo M.E.Sevior C.Sfienti C.P.Shen H.Shibuya J.-G.Shiu A.Sibidanov F.Simon S.Skambraks R.J.Sobie A.Soffer A.Sokolov E.Solovieva S.Spataro B.Spruck M.Starič S.Stefkova Z.S.Stottler R.Stroili J.Strube M.Sumihama T.Sumiyoshi D.J.Summers W.Sutcliffe M.Tabata M.Takizawa U.Tamponi S.Tanaka K.Tanida H.Tanigawa N.Taniguchi Y.Tao P.Taras F.Tenchini E.Torassa K.Trabelsi T.Tsuboyama N.Tsuzuki M.Uchida I.Ueda S.Uehara T.Uglov K.Unger Y.Unno S.Uno P.Urquijo Y.Ushiroda S.E.Vahsen R.van Tonder G.S.Varner K.E.Varvell A.Vinokurova L.Vitale A.Vossen E.Waheed H.M.Wakeling K.Wan W.Wan Abdullah B.Wang M.-Z.Wang X.L.Wang A.Warburton M.Watanabe S.Watanuki J.Webb S.Wehle N.Wermes C.Wessel J.Wiechczynski P.Wieduwilt H.Windel E.Won S.Yamada W.Yan S.B.Yang H.Ye J.Yelton J.H.Yin M.Yonenaga Y.M.Yook C.Z.Yuan Y.Yusa L.Zani J.Z.Zhang Z.Zhang V.Zhilich Q.D.Zhou X.Y.Zhou V.I.Zhukova V.Zhulanov A.Zupanc | 2020 | Chinese Physics C2020,44,2: | 2 |