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2602篇 您的检索式:作者名="R Tanaka"
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1Treating inflammatory bowel disease by adsorptive leucocytapheresis:A desire to treat without drugs显示文摘Ulcerative colitis and Crohn’s disease are the major phenotypes of the idiopathic inflammatory bowel disease(IBD),which afflicts millions of individuals throughout the world with debilitating symptoms,impairing function and quality of life.Current medications are aimed at reducing the symptoms or suppressing exacerbations.However,patients require life-long medications,and this can lead to drug dependency,loss of response together with adverse side effects.Indeed,drug side effects become additional morbidity factor in many patients on long-term medications.Nonetheless,the efficacy of anti-tumour necrosis factors(TNF)-αbiologics has validated the role of inflammatory cytokines notably TNF-αin the exacerbation of IBD.However,inflammatory cytokines are released by patients’own cellular elements including myeloid lineage leucocytes,which in patients with IBD are elevated with activation behaviour and prolonged survival.Accordingly,these leucocytes appear logical targets of therapy and can be depleted by adsorptive granulocyte/monocyte apheresis(GMA)with an Adacolumn.Based on this background,recently GMA has been applied to treat patients with IBD in Japan and in the European Union countries.Efficacy rates have been impressive as well as disappointing.In fact the clinical response to GMA seems to define the patients’disease course,response to medications,duration of active disease,and severity at entry.The best responders have been first episode cases(up to 100%)followed by steroid nave and patients with a short duration of active disease prior to GMA.Patients with deep ulcers together with extensive loss of the mucosal tissue and cases with a long duration of IBD refractory to existing medications are not likely to benefit from GMA.It is clinically interesting that patients who respond to GMA have a good long-term disease course by avoiding drugs including corticosteroids in the early stage of their IBD.Additionally,GMA is very much favoured by patients for its good safety profile.GMA in 21st century reminds us of phlebotomy as a major medical practice at the time of Hippocrates.However,in patients with IBD,there is a scope for removing from the body the sources of proinflammatory cytokines and achieve disease remission.The bottom line is that by introducing GMA at an early stage following the onset of IBD or before patients develop extensive mucosal damage and become refractory to medications,many patients should respond to GMA and avoid pharmacologics.This should fulfill the desire to treat without drugs.Abbi R Saniabadi Tomotaka Tanaka Toshihide Ohmori Koji Sawada Takayuki Yamamoto Hiroyuki Hanai 2014World Journal of Gastroenterology2014,20,29:11
2Cranial base chordoma——long term outcome and review of the literature显示文摘BACKGROUND: The purpose of this study is to clarify the latest long-term therapeutic result for cranial base chordomas.We are seeking an improvement of long term therapeutic outcome through a review of cranial base chordomas treated inYoneoka Y Tsumanuma I Fukuda M Tamura T Morii K Tanaka R Fujii Y 2008中国神经肿瘤杂志2008,6,3:9
3Effects of adacolumn selective leukocytapheresis on plasma cytokines during active disease in patients with active ulcerative colitis显示文摘瞄准:调查在临床的活动索引的 ulcerative (UC )( 蔡) 和 IL-1ra, IL-10, IL-6 和 IL-18 的传播层次之间的关系。方法:IL-1ra, IL-10, IL-6 和 IL-18 的血层次与活跃 UC 在 31 个病人被测量,吝啬的蔡是 11.1,从 5-25 ;并且是的 12 个健康个人控制。病人们与 Adacolumn 被给粒细胞和单核白血球 adsorptive 词首字母的脱落(GMA ) 。忍受 FcgammaR 并且补充受体的白细胞被吸附到列 leucocytapheresis 搬运人。每个病人能在 8 wk 上收到多达 11 个 GMA 会议。结果:我们发现了在蔡和 IL-10 之间的强壮的关联(r = 0.827, P < 0.001 ) , IL-6 (r = 0.785, P < 0.001 ) 并且 IL-18 (r = 0.791, P < 0.001 ) 。IL-1ra 没与蔡一起被相关。后面的 GMA 治疗, 31 个病人中的 24 个完成了宽恕,所有 4 cytokines 的层次掉在健康控制里到层次。进一步, IL-1ra 和 IL-10 的血层次在从遵守了搬运人的白细胞建议版本的 60 min 在列流出和流入增加了。Hiroyuki Hanai Takayuki Iida Masami Yamada Yoshihiko Sato Ken Takeuchi Tatsuo Tanaka Kenji Kondo Masataka Kikuyama Yasuhiko Maruyama Yasushi Iwaoka Akiko Nakamura Kazuhisa Hirayama Abby R Saniabadi Fumitoshi Watanabe 2006World Journal of Gastroenterology2006,12,21:8
4中心和外周动脉脉搏波传导速度测量的重复性:社区动脉粥样硬化风险研究显示文摘通过脉搏波传导速度(pulsewavevelocity,PwV)检测动脉硬化程度是当前对高血压和心血管病风险评估和分层所日渐常用的方式。颈股动脉脉搏波传导速度(catroidfemoralarteryPWV,cfPWV)是一项公认的测定中心动脉硬化程度的方式。Meyer ML Tanaka H Palta P Patel MD Camplain R Couper D Cheng S Al Qunaibet A Poon AK Heiss G 陈云 叶鹏 2016中华高血压杂志2016,24,5:6
5Fungal diversity notes 111-252-taxonomic and phylogenetic contributions to fungal taxa显示文摘This paper is a compilation of notes on 142 fungal taxa,including five new families,20 new genera,and 100 new species,representing a wide taxonomic and geographic range.The new families,Ascocylindricaceae,Caryosporaceae and Wicklowiaceae(Ascomycota)are introduced based on their distinct lineages and unique morphology.The new Dothideomycete genera Pseudomassariosphaeria(Amniculicolaceae),Heracleicola,Neodidymella and Pseudomicrosphaeriopsis(Didymellaceae),Pseudopithomyces(Didymosphaeriaceae),Brunneoclavispora,Neolophiostoma and Sulcosporium(Halotthiaceae),Lophiohelichrysum(Lophiostomataceae),Galliicola,Populocrescentia and Vagicola(Phaeosphaeriaceae),Ascocylindrica(Ascocylindricaceae),Elongatopedicellata(Roussoellaceae),Pseudoasteromassaria(Latoruaceae)and Pseudomonodictys(Macrodiplodiopsidaceae)are introduced.The newly described species of Dothideomycetes(Ascomycota)are Pseudomassariosphaeria bromicola(Amniculicolaceae),Flammeascoma lignicola(Anteagloniaceae),Ascocylindrica marina(Ascocylindricaceae),Lembosia xyliae(Asterinaceae),Diplodia crataegicola and Diplodia galiicola(Botryosphaeriaceae),Caryospora aquatica(Caryosporaceae),Heracleicola premilcurensis and Neodidymella thailandicum(Didymellaceae),Pseudopithomyces palmicola(Didymosphaeriaceae),Floricola viticola(Floricolaceae),Brunneoclavispora bambusae,Neolophiostoma pigmentatum and Sulcosporium thailandica(Halotthiaceae),Pseudoasteromassaria fagi(Latoruaceae),Keissleriella dactylidicola(Lentitheciaceae),Lophiohelichrysum helichrysi(Lophiostomataceae),Aquasubmersa japonica(Lophiotremataceae),Pseudomonodictys tectonae(Macrodiplodiopsidaceae),Microthyrium buxicola and Tumidispora shoreae(Microthyriaceae),Alloleptosphaeria clematidis,Allophaeosphaeria cytisi,Allophaeosphaeria subcylindrospora,Dematiopleospora luzulae,Entodesmium artemisiae,Galiicola pseudophaeosphaeria,Loratospora luzulae,Nodulosphaeria senecionis,Ophiosphaerella aquaticus,Populocrescentia forlicesenensis and Vagicola vagans(Phaeosphaeriaceae),Elongatopedicellata lignicola,Roussoella magnatum and Roussoella angustior(Roussoellaceae)and Shrungabeeja longiappendiculata(Tetraploasphaeriaceae).The new combinations Pseudomassariosphaeria grandispora,Austropleospora archidendri,Pseudopithomyces chartarum,Pseudopithomyces maydicus,Pseudopithomyces sacchari,Vagicola vagans,Punctulariopsis cremeoalbida and Punctulariopsis efibulata Dothideomycetes.The new genera Dictyosporella(Annulatascaceae),and Tinhaudeus(Halosphaeriaceae)are introduced in Sordariomycetes(Ascomycota)while Dictyosporella aquatica(Annulatascaceae),Chaetosphaeria rivularia(Chaetosphaeriaceae),Beauveria gryllotalpidicola and Beauveria loeiensis(Cordycipitaceae),Seimatosporium sorbi and Seimatosporium pseudorosarum(Discosiaceae),Colletotrichum aciculare,Colletotrichum fusiforme and Colletotrichum hymenocallidicola(Glomerellaceae),Tinhaudeus formosanus(Halosphaeriaceae),Pestalotiopsis subshorea and Pestalotiopsis dracaenea(Pestalotiopsiceae),Phaeoacremonium tectonae(Togniniaceae),Cytospora parasitica and Cytospora tanaitica(Valsaceae),Annulohypoxylon palmicola,Biscogniauxia effusae and Nemania fusoideis(Xylariaceae)are introduced as novel species to order Sordariomycetes.The newly described species of Eurotiomycetes are Mycocalicium hyaloparvicellulum(Mycocaliciaceae).Acarospora septentrionalis and Acarospora castaneocarpa(Acarosporaceae),Chapsa multicarpa and Fissurina carassensis(Graphidaceae),Sticta fuscotomentosa and Sticta subfilicinella(Lobariaceae)are newly introduced in class Lecanoromycetes.In class Pezizomycetes,Helvella pseudolacunosa and Helvella rugosa(Helvellaceae)are introduced as new species.The new families,Dendrominiaceae and Neoantrodiellaceae(Basidiomycota)are introduced together with a new genus Neoantrodiella(Neoantrodiellaceae),here based on both morphology coupled with molecular data.In the class Agaricomycetes,Agaricus pseudolangei,Agaricus haematinus,Agaricus atrodiscus and Agaricus exilissimus(Agaricaceae),Amanita melleialba,Amanita pseudosychnopyramis and Amanita subparvipantherina(Amanitaceae),Entoloma calabrum,Cora barbulata,Dictyonema gomezianum and Inocybe granulosa(Inocybaceae),Xerocomellus sarnarii(Boletaceae),Cantharellus eucalyptorum,Cantharellus nigrescens,Cantharellus tricolor and Cantharellus variabilicolor(Cantharellaceae),Cortinarius alboamarescens,Cortinarius brunneoalbus,Cortinarius ochroamarus,Cortinarius putorius and Cortinarius seidlii(Cortinariaceae),Hymenochaete micropora and Hymenochaete subporioides(Hymenochaetaceae),Xylodon ramicida(Schizoporaceae),Colospora andalasii(Polyporaceae),Russula guangxiensis and Russula hakkae(Russulaceae),Tremella dirinariae,Tremella graphidis and Tremella pyrenulae(Tremellaceae)are introduced.Four new combinations Neoantrodiella gypsea,Neoantrodiella thujae(Neoantrodiellaceae),Punctulariopsis cremeoalbida,Punctulariopsis efibulata(Punctulariaceae)are also introduced here for the division Basidiomycota.Furthermore Absidia caatinguensis,Absidia koreana and Gongronella koreana(Cunninghamellaceae),Mortierella pisiformis and Mortierella formosana(Mortierellaceae)are newly introduced in the Zygomycota,while Neocallimastix cameroonii and Piromyces irregularis(Neocallimastigaceae)are introduced in the Neocallimastigomycota.Reference specimens or changes in classification and notes are provided for Alternaria ethzedia,Cucurbitaria ephedricola,Austropleospora,Austropleospora archidendri,Byssosphaeria rhodomphala,Lophiostoma caulium,Pseudopithomyces maydicus,Massariosphaeria,Neomassariosphaeria and Pestalotiopsis montellica.Hiran A.Ariyawansa Kevin D.Hyde Subashini C.Jayasiri Bart Buyck K.W.Thilini Chethana Dong Qin Dai Yu Cheng Dai Dinushani A.Daranagama Ruvishika S.Jayawardena Robert Lücking Masoomeh Ghobad-Nejhad Tuula Niskanen Kasun M.Thambugala Kerstin Voigt Rui Lin Zhao Guo-Jie Li Mingkwan Doilom Saranyaphat Boonmee Zhu L.Yang Qing Cai Yang-Yang Cui Ali H.Bahkali Jie Chen Bao Kai Cui Jia Jia Chen Monika C.Dayarathne Asha J.Dissanayake Anusha H.Ekanayaka Akira Hashimoto Sinang Hongsanan E.B.Gareth Jones Ellen Larsson Wen Jing Li Qi-Rui Li Jian Kui Liu Zong Long Luo Sajeewa S.N.Maharachchikumbura Ausana Mapook Eric H.C.McKenzie Chada Norphanphoun Sirinapa Konta Ka Lai Pang Rekhani H.Perera Rungtiwa Phookamsak Chayanard Phukhamsakda Umpava Pinruan Emile Randrianjohany Chonticha Singtripop Kazuaki Tanaka Cheng Ming Tian Saowaluck Tibpromma Mohamed A.Abdel-Wahab Dhanushka N.Wanasinghe Nalin N.Wijayawardene Jin-Feng Zhang Huang Zhang Faten A.Abdel-Aziz Mats Wedin Martin Westberg Joseph F.Ammirati Timur S.Bulgakov Diogo X.Lima Tony M.Callaghan Philipp Callac Cheng-Hao Chang Luis F.Coca Manuela Dal-Forno Veronika Dollhofer Kateřina Fliegerová Katrin Greiner Gareth W.Griffith Hsiao-Man Ho Valerie Hofstetter Rajesh Jeewon Ji Chuan Kang Ting-Chi Wen Paul M.Kirk Ilkka Kytövuori James D.Lawrey Jia Xing Hong Li Zou Yi Liu Xing Zhong Liu Kare Liimatainen H.Thorsten Lumbsch Misato Matsumura Bibiana Moncada Salilaporn Nuankaew Sittiporn Parnmen AndréL.C.M.de Azevedo Santiago Sujinda Sommai Yu Song Carlos A.F.de Souza Cristina M.de Souza-Motta Hong Yan Su Satinee Suetrong Yong Wang Syuan-Fong Wei Ting Chi Wen Hai Sheng Yuan Li Wei Zhou Martina Réblová Jacques Fournier Erio Camporesi J.Jennifer Luangsa-ard Kanoksri Tasanathai Artit Khonsanit Donnaya Thanakitpipattana Sayanh Somrithipol Paul Diederich Ana M.Millanes Ralph S.Common Marc Stadler Ji Ye Yan XingHong Li Hye Won Lee Thi T.T.Nguyen Hyang Burm Lee Eliseo Battistin Orlando Marsico Alfredo Vizzini Jordi Vila Enrico Ercole Ursula Eberhardt Giampaolo Simonini Hua-An Wen Xin-Hua Chen Otto Miettinen Viacheslav Spirin Hernawati 2015Fungal Diversity2015,,6:2
6In vitro shoot proliferation and rooting of several Japanese persimmon cultivars显示文摘MURAYAMA H TAO R TANAKA T 1989Journal of the Japanese Society for Horticultural Science1989,58,1:2
7卒中介入治疗培训指南:国际多学会共识文件显示文摘1背景 缺血性卒中是全球人口死亡和残疾的首要原因。很多急性大血管闭塞(emergent large vesselocclusion,ELVO)患者都会遗留长期残疾。事实上,这些颅内大动脉闭塞经常会导致大面积脑损伤,进而造成患者死亡或严重致残。Lavine SD Cockroft K Hoh B Bambakidis N Khalessi AA Woo H Riina H Siddiqui A Hirsch JA Chong W Rice H Wenderoth J Mitchell P Coulthard A Signh TJ Phatorous C Khangure M Klurfan P ter Brugge K Iancu D Gunnarsson T Pongpech S Rodesch G Soderman M Taylor A Krings T Orbach D Picard L Suh DC Zheng HQ Jansen O Muto M Szikora I Pierot L Brouwer P Gralla J Renowden S Andersson T Fiehler J Turjman F White P Januel AC Spelle L Kulcsar Z Chapot R Biondi A Dima S Taschner C Szajner M Krajina A Sakai N Matsumaru Y Yoshknura S Ezura M Fujinaka T Iihara K Ishii A Higashi T Hirohata M Hyodo A Ito Y Kawanishi M Kiyosue H Kobayashi E Kobayashi S Kuwayama N Matsumoto Y Miyachi S Murayama Y Nagata I Nakahara I Nemoto S Niimi Y Oishi H Satomi J Satow T Sugiu K Tanaka M Terada T Yamagami H Diaz O Lylyk P Jayaraman MV Patsalides A Gandhi CD Lee SK Abruzzo T Albani B Ansari SA Arthur AS Baxter BW Bulsara KR Chen M Almandoz JE Fraser JF Heck DV Hetts SW Hussain MS Klucznik RP Leslie-Mawzi TM Mack WJ McTaggart RA Meyers PM Mocco J Prestigiacomo CA Pride GL Rasmussen PA Starke RM Sunenshine PJ Tarr RW Frei DF Pabo M Nogueira RG Zaidat OO Jovin T Linfante I Yavagal D Liebeskind D Novakovic R Pongpech S 许岩 孙瑞 郭芮兵 2017国际脑血管病杂志2017,25,5:2
8Fast ignition inertial fusion: An inroduction and preview显示文摘CAMPBELL E M FEEEMAN R R TANAKA K A 2006Fusion Sci Technol2006,49,3:1
9Bioactive steroids from the whole herb of Euphorbia chamaesyce显示文摘TANAKA R KASUBUCHI K KITA S 2000J Nat Prod2000,63,:1
10Autoantibodies against cardiac troponin I are responsible for dilated cardiomyopathy in PD-1- deficient mice显示文摘Okazaki T Tanaka Y Nishio R 2003Nat Med2003,9,12:1
11The nuclear factor HMGB1 mediates hepatic injury after murine liver ischemia reperfusion显示文摘Tsung A Sahai R Tanaka H 2005J Exp Med2005,201,7:1
12Steam reforming of dimethyl ether over composite catalysts of gamma-Al2O3 and Cu-based spinel显示文摘TANAKA Y KIKUCHI R TAKEGUCHI T 2005Applied Catalysis B- Environmental2005,57,3:1
13Expression of neural cell adhesion molecules(polysialylated form of neural cell adhesion molecule and ll-cell adhesion molecul0 oil resected small cell lung cancer specimens: in relation to proliferation state显示文摘Miyahara R Tanaka F Nakagawa T 2001Jo Surgi Oneol2001,77,:1
14Thioredoxin-related regulation of N0/NOS activities显示文摘Shao LE Tanaka T Gribi R Yu J 2002Ann N Y Acad Sci2002,962,:1
15High temperature air combustion Revolution in combustion technology显示文摘Hasegawa T Tanaka R 1998JSME International Journal1998,,4:1
16Thionine and ferric chelate compounds as coupled mediators in microbial fuel ceUs显示文摘Tanaka K Vega C A Tamamushi R 1983Bioelectrochem Bioenerg1983,11,:1
17Hematoma enlargement in spontaneous intracerebral hemorrhage显示文摘Fujii Y Tanaka R Takeuchi S 1994J Neurosurg1994,80,:1
18Cardiac remodeling and angiotensin Ⅱ-forming enzyme activity of the left ventricle in hamsters with chronic pressure overload induced by ascending aortic stenosis显示文摘Shimizu M Tanaka R Fukuyama T 2006J Vet Med Sci2006,68,3:1
19Melanoma differentiation-associated gene 7/interleukin (IL)-24 is a novel ligand that regulates angiogenesis via the IL-22 receptor显示文摘Ramesh R Mhashilkar AM Tanaka F 2003Cancer Res2003,63,16:1
20Clival chordoma in early childhood without bone involvement显示文摘Niida H Tanaka R Tamura T 1994Childs Nerv Syst1994,10,:1
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