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21篇 您的检索式:作者名="Liria"
    题名 作者 年代 出处 被引量
1Process strategies to improve heterologous protein production in Esherichia coli under lactose or IPTG induction 显示文摘Kilikian B V Suarez I D Liria C W 2000Process Biochemistry2000,35,:1
2Ef- fectiveness of Continuity - of - Care Programs to reduce time in hospital in persons with schizophrenia 显示文摘Alonso Sudrez M Bravo - Ortiz MF Fernandez - Liria A 2011Epidemiology and Psy- chiatric Sciences2011,20,1:1
3Ecological Characterization of the aquatic habitats of mosquitoes (Diptera: Culicidae) in Enzootic Foci of Venezuelan Equine Encephalitis Virus in Western Venezuela 显示文摘ALFONZO D GRILLET M E LIRIA J 2005Journal of Medical Entomology2005,42,3:1
4Clinical data andfactors associated with poor outcome in pneumococcal meningi-tis显示文摘Casado-Flores J Aristegui J de Liria CR 2005Eur J Pediatr2005,165,5:1
5Pre- dicting suitable habitat for the European lobster (Homar- us gammarus), on the Basque continental shelf( Bay of Biscay) , using Ecological-Niche Factor Analysis 显示文摘Galparsoro I Borja A Baht J Liria P Chust G 2009Ecological Modelling2009,220,4:1
6Clinical data and factors associated with poor~ outcome in peneumococcal meningitis显示文摘Casado-Flores J Aristegui J de Liria C R 2006Eur J Pediatr2006,165,5:1
7Clinical data and factors associated with poor outcome in pneumococcal meningitis 显示文摘Casado-Flores J Aristegni J de Liria CR 2006Eur J Pediatr2006,165,5:1
8Clinical data and factors associated with poor outcome in pneumococcal meningitis显示文摘Casado-Flores J Aristegui J de Liria CR 2006Eur J Pediatr2006,165,5:1
9Clinical data and factors associated with poor outcome in pneumococcal meningitis显示文摘Casado- Flores J Aristegui J de Liria CR 2005Eur J Pediatr2005,165,5:1
10Implementing stepwise solvent elution in sequential injection chromatography for fluorimetric determination of intracellular free amino acids in the microalgae tetraselmis gracilis显示文摘RIGOBELLO-MASINI M PENTEADO J C P LIRIA C W 2008Analytica Chimica Acta2008,628,2:1
11Clinical data and factors associated with poor outcome in pneumococcal meningitis显示文摘Casado-Flores J Aristegui J De Liria CR 2005Eur J Pediatr2005,165,5:1
12Three-year multicenter surveillance of community-acquired Listeria monocytogenes meningitis in adults显示文摘Amaya-Villar R García-Cabrera E Sulleiro-Igual E Fernández-Viladrich P Fontanals-Aymerich D Catalán-Alonso P Rodrigo-Gonzalo de Liria C Coloma-Conde A Grill-Díaz F Guerrero-Espejo A Pachón J Prats-Pastor G 2010BMC Infect Dis2010,10,:1
13Effect of yeast extract on Escherichia coli growth and acetic acid production显示文摘Suárez D C Liria C W Kilikian B V 1998World Journal of Microbiology & biotechnology1998,14,:1
14Kinetic and equilibrium studies for the adsorption of acid nucleic bases onto K10 montmorillonite显示文摘Luciana Sciascia Maria Liria Turco Liveri Marcello Merli 2011Applied Clay Science2011,,4:1
15A Marine Spatial Planning Approach to Select Suitable Areas for Installing Wave Energy Converters (WECs), on the Basque Continental Shelf (Bay of Biscay)显示文摘Ibon Galparsoro Pedro Liria Irati Legorburu Juan Bald Guillem Chust Pablo Ruiz-Minguela Germán Pérez Javier Marqués Yago Torre-Enciso Manuel González ángel Borja 2012Coastal Management2012,,1:1
16Clinical data and fac- tors associated with poor outcome in pneumococcal meningitis显示文摘Casado - Flores J Aristegui J de Liria CR 2006Eur J Pediatr2006,165,5:1
17RoLe of the reactor geometry in the onset of transient chaos in an unstirred Belousov- Zhabotinsky system 显示文摘LIRIA M LIVERI T LOMBARDO R 2003PhysChem A2003,107,:1
18Clinical data andfactors associated with poor outcome in pneumococcal meningitis 显示文摘Casado-Flores J Aristegui J de Liria CR 2006EurJ Pediatr2006,165,5:1
19Shell geometric morphometrics in Biomphalaria glabrata (Mollusca: Planorbidae) uninfected and infected with Schistosoma mansoni显示文摘Freshwater planorbid mollusks belonging to the genus Biomphalaria act as intermediate hosts for Schistosoma mansoni,the etiological agent of human intestinal schistosomiasis,in the Neotropical Region.Identification of Biomphalaria spp.are carried out based on morphological characters,and the Schistosoma infection are determined by the presence of cercariae(verified through microscope preparation and mounting).Recently,the geometric morphometrics has proven to be a useful tool for determining shape differences in disease vectors arthropods.Due to this,we used geometric morphometrics to determine Biomphalaria glabrata shell differences(shape and size) between uninfected and infected specimens.We digitalized 12 anatomical points over the shell left side(from umbilicus to the last whorl) by combining type I and II landmarks and sliding semilandmarks;the coordinates were aligned by generalized Procrustes analysis.Principal component analyses were implemented for examining main variation axes,and discriminant analysis for testing group membership significance.We found significant separation between infected and uninfected shell conformation.All specimens were 100% correctly classified.The main differences occur in the peristome.The Kruskal-Wallis test finds significant differences in shell isometric size among infected and uninfected specimens.These findings correspond to other studies of traditional morphometrics,that infected snails showed the reduction in shell size in contrast to those uninfected specimens.Cesar Parra Jonathan Liria 2017Zoological Systematics2017,42,1:0
20Head geometric morphometrics of two Chagas disease vectors from Venezuela显示文摘Triatominae species are considered the main vectors of Chagas disease or American Trypanosomiasis.In Venezuela,the principal vectors are Rhodnius prolixus(St?l,1959) and Triatoma maculata(Erichson,1848),which are belonged to the tribe Rhodniini and Triatomini,respectively.The head conformation and size development of these species can reflect ontogenetic changes which contribute with the vectors biology studies,as well to support of instars determination.The goal of the paper is to the application of geometric morphometric techniques for describing head conformation and size of instars of these species.We photographed 140 heads in R.prolixus:First instar(I:16),second instar(II:17),third instar(III:18),fourth instar(IV:21),fifth instar(V:21),adult female(F:26) and adult males(M:21);in T.maculata heads of 136 specimens were photographed,I:20,II:17,III:26,IV:15,V:19,F:20 and M:19.Landmark coordinate(x,y) configurations were registered and aligned by Generalized Procrustes Analysis.Covariance Analyses were implemented with proportions of re-classified groups and MANOVA.Statistical analyses of variance found not significant differences in head isometric size(Kruskal–Wallis) among IV and V instars in both species.The a posteriori re-classification was almost perfect in R.prolixus(82%) and T.maculata(86%);the main head differences occurs in antenniferous tubercles,postocular and preocular.Our study using quantitative tools for describing the shape differences contributes to explain the morphology variability and development of Chagas disease vectors.Ana Maria Oropeza Carlos Arturo Perri Fernanndez Jonathan Liria Ana Soto-Vivas 2017Zoological Systematics2017,42,1:0
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