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20篇 您的检索式:作者名="Martin Molina"
    题名 作者 年代 出处 被引量
1Tourism marketing information and destination image management 显示文摘Molina A G6mez M Martin -Consuegra D 2010African Jouma| of Business Management2010,4,5:1
2Corporatism:the Past,Present and Future of a Concept显示文摘Oscar Molina and Martin Rhodes 2002The Annual Review of Political Science2002,,5:1
3A fuzzy reasoning system for boundary detection in radiological image显示文摘Molina J M Martin J M Isasi M J 1998IEEE1998,2,4:1
4Prepulse inhibition of the startle reflex in schizophrenia remains stable with short-term quetiapine显示文摘Molina V Lopez DE Villa R Perez J Martin C Ballesteros A 0,,:1
5Mitral heart disease due to cabergoline显示文摘Martin M Iglesias-Cubero G Diaz Molina B 2007Int J Cardiol2007,114,:1
6Gene structure of the carp fish ribosomal protein L41:seasonally regulated expression显示文摘Molina A Corta A Martin RS 0,,03:1
7A Fuzzy Reasoning System for Boundary Detection in Radiological Image显示文摘J M Molina M J Martin 1998IEEE1998,,:1
8Analysis of cows' ,ewes' and goats' milk mixtures by capillary electrophoresis:quantification by multivariate regression analysis 显示文摘Elena Molina Pedro Jesus Martin - Alvarez Mercedes Ramose 1999International Dairy1999,9,1:1
9CD4+ CD56+ Cutaneous Neoplasms: A Distinct Hematological Entity?显示文摘Tony Petrella Sophie Dalac Marc Maynadié Francine Mugneret Elisabeth Thomine Philippe Courville Pascal Joly Bernard Lenormand Laurent Arnould Janine Wechsler Martine Bagot Claire Rieux Jacques Bosq Marie-Fran?oise Avril Alain Bernheim Thierry Molina Alain 1999The American Journal of Surgical Pathology1999,,2:1
10Gene structure of thecarp fish ribosomal protein L41:seasonally regulated expres-sion 显示文摘Molina A Corta A Martin R S 2002Biochem Biophys Res Commun2002,295,3:1
11Reciprocal regulation between Slt2 MAPK and isoforms of Msg5 dual-specificity protein phosphatase modulates the yeast cell integrity pathway显示文摘Flandez M Cosano I C Nombela C Martin H Molina M 0,,:1
12Concentration of docosahexaenoic acid(DHA)by kinetic resolution by a Thermomyces lanuginosus lipase显示文摘Martin L Gonzalez PA Robles A Rodriguez A Hita E Jimenez MJ Esteban L Molina E 0,,:1
13门诊成人社区获得性肺炎的危险因素:生活方式和共病条件(NEUMO-ES-RISK项目)显示文摘背景社区获得性肺炎(CAP)风险在初级保健中的信息是有限的。我们评估了不同生活方式和共病条件作为初级保健成人CAP的危险因素。方法一项回顾性观察对照研究。使用国家初级保健数据监测系统检索了2009至2013年在西班牙初级保健部门诊断的成人CAP病例。匹配年龄和匹配性别的对照组采用发病率密度抽样(比例2∶1)。以百分比和比值比来表示关联分析。为了避免偏倚效应,建立二项回归模型。结果51 139例患者和102 372例对照组做比较。平均年龄为61.4(19.9)岁。危险因素与CAP的显著相关性如下:艾滋病[比值比(95%可信区间)5.21(4.35~6.27)]、慢性阻塞性肺病(COPD)[2.97(2.84~3.12)]、哮喘[2.16(2.07~2.26)]、吸烟[1.96(1.91~2.02)]和口腔卫生问题[1.45(1.41~1.49)]。患者组中有危险因素存在的平均患病率为82.2%,对照组为69.2%。CAP患病率的增加与危险因素和年龄的累积有关:1个危险因素时,在18~60岁老人中的风险相关性是1.42,在>60岁人中是1.57;2个危险因素时,是1.88和2.35;≥3个危险因素时,是3.11和4.34。结论成人CAP初级保健中的危险因素普遍较高。主要与危险因素相关的是艾滋病、COPD、哮喘、吸烟、口腔卫生问题。我们的风险叠加结果可以帮助临床医生确定肺炎风险较高的患者。Irene Rivero-Calle Miriam Cebey-López Jacobo Pardo-Seco José Yuste Esther Redondo Diego A Vargas Enrique Mascarós Jose Luis Díaz-Maroto Manuel Linares-Rufo Isabel Jimeno Angel Gil Jesus Molina Daniel Ocana Federico Martinón-Torres 崔晓霞(译) 2019英国医学杂志中文版2019,22,8:1
14Optimized voxel brain morphometry:association between brain volumes and the response to atypical antipsychotics显示文摘Molina V Martin C Ballesteros A 0,,06:1
15Identifying salivary antigens of Phlebotomus argentipes by a 2DE approach显示文摘Martin Martin I Molina R Jimenez M 2013Ac- ta Trop2013,126,3:1
16Turbo-taxonomy to assemble a megadiverse lichen genus:seventy new species of Cora(Basidiomycota:Agaricales:Hygrophoraceae),honouring David Leslie Hawksworth’s seventieth birthday显示文摘Following a large-scale phylogenetic study of the lichenized genus Cora(Basidiomycota:Agaricales:Hygrophoraceae),we formally describe 70 new species,honouring the seventieth birthday of David Leslie Hawksworth,one of the preeminent figures in mycology and lichenology in the past 50 years.Based on an updated phylogeny using the ITS fungal barcoding locus,we now recognize 189 taxa in a genus that until recently was considered to represent a single species;including this contribution,92 of these are formally recognized,including five taxa based on historical names or collections that have not been sequenced.Species of Cora can be recognized by a combination of morphological(size,colour,lobe configuration,surface hairs,hymenophore size and shape),anatomical(thallus thickness,cortex structure,photobiont type,hyphal papillae),and ecogeographical features(substrate,habitat,distribution),and a keytable allowing the identification of all accepted taxa is provided.The new species are:Cora accipiter Moncada,Madrin˜a´n&Lücking spec.nov.,C.applanata Moncada,Soto-Medina&Lücking spec.nov.,C.arachnodavidea Moncada,Dal Forno&Lücking spec.nov.,C.arborescens Dal Forno,Chaves&Lücking spec.nov.,C.arcabucana Moncada,C.Rodrı´guez&Lücking spec.nov.,C.aturucoa Lücking,Moncada&C.Vargas spec.nov.,C.auriculeslia Moncada,Ya´nez-Ayabaca&Lücking spec.nov.,C.barbifera Moncada,Patin˜o&Lücking spec.nov.,C.boleslia Lücking,E.Morales&Dal Forno spec.nov.,C.caliginosa Holgado,Rivas Plata&Perlmutter spec.nov.,C.campestris Dal Forno,Eliasaro&Spielmann spec.nov.,C.canari Nugra,Dal Forno&Lücking spec.nov.,C.caraana Lücking,Martins&Lucheta spec.nov.,C.casasolana Moncada,R.-E.Pe´rez&Lücking spec.nov.,C.caucensis Moncada,M.Gut.&Lücking spec.nov.,C.celestinoa Moncada,CabreraAmaya&Lücking spec.nov.,C.comaltepeca Moncada,R.-E.Pe´rez&Herrera-Camp.spec.nov.,C.corani Lücking,E.Morales&Dal Forno spec.nov.,C.corelleslia Moncada,A.Sua´rez-Corredor&Lücking spec.nov.,C.crispoleslia Moncada,J.Molina&Lücking spec.nov.,C.cuzcoensis Holgado,Rivas Plata&Perlmutter spec.nov.,C.dalehana Moncada,Madrin˜a´n&Lücking spec.nov.,C.davibogotana Lücking,Moncada&Coca spec.nov.,C.davicrinita Moncada,Madrin˜a´n&Lücking spec.nov.,C.davidia Moncada,L.Vargas&Lücking spec.nov.,C.dewisanti Moncada,A.Sua´rez-Corredor&Lücking spec.nov.,C.dulcis Moncada,R.-E.Pe´rez&Lücking spec.nov.,C.elephas Lücking,Moncada&L.Vargas spec.nov.,C.fuscodavidiana Lücking,Moncada&L.Vargas spec.nov.,C.garagoa Simijaca,Moncada&Lücking spec.nov.,C.gigantea Lücking,Moncada&Coca spec.nov.,C.gomeziana Dal Forno,Chaves&Lücking spec.nov.,C.guajalitensis Lücking,Robayo&Dal Forno spec.nov.,C.hafecesweorthensis Moncada,Lücking&R.Pela´ez spec.nov.,C.haledana Dal Forno,Chaves&Lücking spec.nov.,C.hawksworthiana Dal Forno,P.Nelson&Lücking spec.nov.,C.hochesuordensis Lücking,E.Morales&Dal Forno spec.nov.,C.hymenocarpa Lücking,Chaves&Lawrey spec.nov.,C.imi Lücking,Chaves&Lawrey spec.nov.,C.itabaiana Dal Forno,Aptroot&M.Ca´ceres spec.nov.,C.leslactuca nov.,C.maxima Wilk,Dal Forno&Lücking spec.nov.,C.minutula Lücking,Moncada&Ya´nez-Ayabaca spec.nov.,C.palaeotropica Weerakoon,Aptroot&Lücking spec.nov.,C.palustris Dal Forno,Chaves&Lücking spec.nov.,C.parabovei Dal Forno,Kukwa&Lücking spec.nov.,C.paraciferrii Lücking,Moncada&J.E.Hern.spec.nov.,C.paraminor Dal Forno,Chaves&Lücking spec.nov.,C.pastorum Moncada,Patin˜o&Lücking spec.nov.,C.pichinchensis Paredes,Jonitz&Dal Forno spec.nov.,C.pikynasa J.-M.Torres,Moncada&Lücking spec.nov.,C.pseudobovei Wilk,Dal Forno&Lücking spec.nov.,C.pseudocorani Lücking,E.Morales&Dal Forno spec.nov.,C.putumayensis L.J.Arias,Moncada&Lücking spec.nov.,C.quillacinga Moncada,F.Ortega&Lücking spec.nov.,C.rothesiorum Moncada,Madrin˜a´n&Lücking spec.nov.,C.rubrosanguinea Nugra,Moncada&Lücking spec.nov.,C.santacruzensis Dal Forno,Bungartz&Ya´nezAyabaca,spec.nov.,C.schizophylloides Moncada,C.Rodrı´guez&Lücking spec.nov.,C.smaragdina Lücking,Rivas Plata&Chaves spec.nov.,C.soredavidia Dal Forno,Marcelli&Lücking spec.nov.,C.subdavicrinita Moncada,J.Molina&Lücking spec.nov.,C.suturifera Nugra,Besal&Lücking spec.nov.,C.terrestris Dal Forno,Chaves&Lücking spec.nov.,C.terricoleslia Wilk,Dal Forno&Lücking spec.nov.,C.udebeceana Moncada,R.Pela´ez&Lücking,Moncada&R.Pela´ez spec.Lücking spec.nov.,C.urceolata Moncada,Coca&Lücking spec.nov.,C.verjonensis Lücking,Moncada&Dal Forno spec.nov.,C.viliewoa Lücking,Chaves&Soto-Medina spec.nov.,and C.yukiboa Mercado-Dı´az,Moncada&Lücking spec.nov.Furthermore,the taxonomic status of the recently described or recognized species C.arachnoidea,C.aspera,C.ciferrii,and C.reticulifera,is revised.Robert Lücking Manuela Dal Forno Bibiana Moncada Luis Fernando Coca Leidy Yasmín Vargas-Mendoza André Aptroot Laura Juliana Arias Betty Besal Frank Bungartz Diego Mauricio Cabrera-Amaya Marcela E.S.Cáceres José Luis Chaves Sionara Eliasaro Martha Cecilia Gutiérrez Jesús E.Hernández Marin María de los Ángeles Herrera-Campos María E.Holgado-Rojas Harald Jonitz Martin Kukwa Fabiane Lucheta Santiago Madriñán Marcelo Pinto Marcelli Suzana Maria de Azevedo Martins Joel A.Mercado-Díaz Jorge Alberto Molina Eduardo A.Morales Peter R.Nelson Freddy Nugra Francisco Ortega Telma Paredes Ayda Lucía Patiño Rouchi Nadine Peláez-Pulido Rosa Emilia Pérez Pérez Gary B.Perlmutter Eimy Rivas-Plata Javier Robayo Camilo Rodríguez Diego Fernando Simijaca Edier Soto-Medina Adriano Afonso Spielmann Alejandra Suárez-Corredor Jean-Marc Torres Carlos Alberto Vargas Alba Yánez-Ayabaca Gothamie Weerakoon Karina Wilk Marcela Celis Pacheco Mauricio Diazgranados Grischa Brokamp Thomas Borsch Patrick M.Gillevet Masoumeh Sikaroodi James D.Lawrey 2017Fungal Diversity2017,,3:0
17POWER1和2试验中对曾治疗HIV-1感染患者给予地瑞那韦-利托那韦治疗48周时的疗效与安全性:2项随机试验资料的合并亚组分析显示文摘背景连续、随机、多国性POWER1和2ⅡB期研究旨在评价地瑞那韦(darunavir)联合应用小剂量利托那韦(ritonavir)对曾治疗HIV-1感染患者的疗效与安全性。本文作者进行了一项合并的亚组分析,对接受推荐剂量地瑞那韦-利托那韦的患者与接受其他蛋白酶抑制剂(PI)的患者进行比较,以提供治疗48周时有关疗效与安全性的最新信息。 方法在24周的剂量探索期和主要疗效分析后,被随机分入地瑞那韦-利托那韦组的患者继续服药600/100mg2次/d.而对照PI组的患者继续按指定治疗方案进入较长期的开放标记期;所有患者继续接受最佳背景治疗。对在分析时已达到第48周或提前停药的患者进行了评估;地瑞那韦~利托那韦组只纳入了从基线开始就服用600/100mg2次/d的患者。采用意向性治疗分析。POWER2研究(TMC114-C202)在ClinicalTrials.gov注册(NCT00071097)。结果48周时,110例地瑞那韦-利托那韦组患者中有67例(61%)病毒载量较基线下降≥1 log10拷贝/ml,而120例对照PI组患者中仅有18例(15%)(主要终点;反应率差值46%,95%CI35%~57%,P〈0,0001)。根据logisticS/归模型,该模型将分层因素(基线时原发PI突变数、恩夫韦地的使用、基线病毒载量)和研究作为协变量,反应率差值为50%(OR 11.72,95%CI 5.75~23.89)。在地瑞那韦-利托那韦组,如果校正治疗暴露,则不良事件率大都低于或近似于对照组。没有发现意外的安全事件。 结论采用地瑞那韦-利托那韦600/100mg 2次/d加最佳背景治疗的疗效反应大于对照PI。且疗效至少持续48周,尤其在曾治疗HIV患者中具有良好的安全性和耐受性。这一方案扩展了此类患者的治疗选择。Bonaventura Claret Nicholas Bellos Jean-Michel Molina David Cooper Jean-Christophe Goffard Adriano Lazzarin Andrej Wohrmann Christine Katlama Timothy Wilkin Richard Haubrich Calvin Cohen Charles Farthing Dushyantha Jayaweera Martin Markowitz Peter Ruane Sabrina Spinosa-Guzman Eric Lefebvre 王介明(译) 李宏建(译) 2008世界临床医学2008,2,2:0
18An execution control method for the Aerostack aerial robotics framework显示文摘Execution control is a critical task of robot architectures which has a deep impact on the quality of the final system. In this study, we describe a general method for execution control, which is a part of the Aerostack software framework for aerial robotics, and present technical challenges for execution control and design decisions to develop the method. The proposed method has an original design combining a distributed approach for execution control of behaviors(such as situation checking and performance monitoring) and centralizes coordination to ensure consistency of the concurrent execution. We conduct experiments to evaluate the method. The experimental results show that the method is general and usable with acceptable development efforts to efficiently work on different types of aerial missions. The method is supported by standards based on a robot operating system(ROS) contributing to its general use, and an open-source project is integrated in the Aerostack framework. Therefore, its technical details are fully accessible to developers and freely available to be used in the development of new aerial robotic systems.Martin MOLINA Alberto CAMPORREDONDO Hriday BAVLE AlejANDro RODRIGUEZ-RAMOS Pascual CAMPOY 2019Frontiers of Information Technology & Electronic Engineering2019,20,1:0
19TML:a language to specify aerial robotic missions for the framework Aerostack显示文摘Purpose–The purpose of this paper is to describe the specification language TML for adaptive mission plans that the authors designed and implemented for the open-source framework Aerostack for aerial robotics.Design/methodology/approach–The TML language combines a task-based hierarchical approach together with a more flexible representation,rule-based reactive planning,to facilitate adaptability.This approach includes additional notions that abstract programming details.The authors built an interpreter integrated in the software framework Aerostack.The interpreter was validated with flight experiments for multi-robot missions in dynamic environments.Findings–The experiments proved that the TML language is easy to use and expressive enough to formulate adaptive missions in dynamic environments.The experiments also showed that the TML interpreter is efficient to execute multi-robot aerial missions and reusable for different platforms.The TML interpreter is able to verify the mission plan before its execution,which increases robustness and safety,avoiding the execution of certain plans that are not feasible.Originality/value–One of the main contributions of this work is the availability of a reliable solution to specify aerial mission plans,integrated in an active open-source project with periodic releases.To the best knowledge of the authors,there are not solutions similar to this in other active open-source projects.As additional contributions,TML uses an original combination of representations for adaptive mission plans(i.e.task trees with original abstract notions and rule-based reactive planning)together with the demonstration of its adequacy for aerial robotics.Martin Molina Ramon A.Suarez-Fernandez Carlos Sampedro Jose Luis Sanchez-Lopez Pascual Campoy 2017International Journal of Intelligent Computing and Cybernetics2017,10,4:0
20Application of Arbuscular Mycorrhizae Glomus iranicum var. tenuihypharum var. nova in Intensive Agriculture: A Study Case显示文摘Felix Femandez Martin Jesus Juarez Molina Emilio Nicolas Nicolas Juan Jose Alarcan Martin Kirchmair Francisco Jose Garcia Antonio Jose Bemabe Garcia Camille Bemal 2017Journal of Agricultural Science and Technology(B)2017,7,4:0
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