1,720,961 research outputs found
Going Beyond Counting First Authors in Author Co-citation Analysis
The present study examines one of the fundamental aspects of author co-citation analysis (ACA) - the way co-citation
counts are defined. Co-citation counting provides the data on which all subsequent statistical analyses and mappings
are based, and we compare ACA results based on two different types of co-citation counting - the traditional type that
only counts the first one among a cited work's authors on the one hand and a non-traditional type that takes into
account the first 5 authors of a cited work on the other hand. Results indicate that the picture produced through this non-traditional author co-citation counting contains more coherent author groups and is therefore considerably clearer. However, this picture represents fewer specialties in the research field being studied than that produced through the traditional first-author co-citation counting when the same number of top-ranked authors is selected and analyzed. Reasons for these effects are discussed
Variations on the Author
“Variations on the Author” discusses two of Eduardo Coutinho’s recent films (Um Dia na Vida, from 2010, and Últimas Conversas, posthumously released in 2015) and their contribution to the general question of documentary authorship. The director’s filmography is characterized by a consistent yet self-effacing form of authorial self-inscription: Coutinho often features as an interviewer that rather than express opinions propels discourses; an interviewer that is good at listening. This mode of self-inscription characterizes him as an author who is not expressive but who is nonetheless markedly present on the screen. In Um Dia na Vida, however, Coutinho is completely absent form the image, while Últimas Conversas, on the contrary, includes a confessional prologue that moves the director from the margins to the center of his films. This article examines the ways in which these works stand out in the filmography of a director who offers new insights into the notion of cinematic authorship
Appropriate Similarity Measures for Author Cocitation Analysis
We provide a number of new insights into the methodological discussion about author cocitation analysis. We first argue that the use of the Pearson correlation for measuring the similarity between authors’ cocitation profiles is not very satisfactory. We then discuss what kind of similarity measures may be used as an alternative to the Pearson correlation. We consider three similarity measures in particular. One is the well-known cosine. The other two similarity measures have not been used before in the bibliometric literature. Finally, we show by means of an example that our findings have a high practical relevance.information science;Pearson correlation;cosine;similarity measure;author cocitation analysis
Dispelling the Myths Behind First-author Citation Counts
We conducted a full-scale evaluative citation analysis study of scholars in the XML research field to explore just how different from each other author rankings resulting from different citation counting methods actually are, and to demonstrate the capability of emerging data and tools on the Web in supporting more realistic citation counting methods. Our results contest some common arguments for the continued
use of first-author citation counts in the evaluation of scholars, such as high correlations between author rankings by first-author citation counts and other citation
counting methods, and high costs of using more realistic citation counting methods that are not well-supported by the ISI databases. It is argued that increasingly available digital full text research papers make it possible for citation analysis studies to go beyond what the ISI databases have directly supported and to employ more
sophisticated methods
Biochemical and biophysical characterization of the two Plasmodium falciparum cytidylyltransferases, key enzymes of the malaria phospholipid metabolism
Le paludisme est causé par l'infection et la destruction des érythrocytes par les parasites protozoaires appartenant au genre Plasmodium. Au cours de son développement dans l'érythrocyte,Plasmodium falciparum requiert la biosynthèse massive de membranes dont les principaux constituants lipidiques sont des phospholipides. La phosphatidylcholine (PC) et la phosphatidyléthanolamine (PE) représentent à elles deux environ 80 % des lipides membranaires et l'inhibition de leur biosynthèse est létale pour le parasite. La PC et la PE sont synthétisées par le parasite, principalement via les voies de novo dépendantes de la CDP-choline et de la CDP-éthanolamine (ou voies de Kennedy) en utilisant respectivement la choline et l'éthanolamine comme précurseurs. Ces travaux de thèse se focalisent sur les deux enzymes CTP:phosphocholine etCTP:phosphoéthanolamine cytidylyltransférase (PfCCT et PfECT, respectivement), catalysant les étapes limitantes des voies de Kennedy. Chez Plasmodium, les CCT et ECT possèdent deux domaines cytidylyltransférases (CT) portant l'activité catalytique, séparés par une longue région de liaison. Pour la CCT, cette duplication est retrouvée seulement chez trois organismes, tous faisant partie du phylumdes Apicomplexes : Babesia, Theileria et Plasmodium, alors que la présence de deux domaines CT estune caractéristique retrouvée chez toutes les ECT étudiées à ce jour. La première partie de ce travail de thèse concerne la caractérisation biochimique et l'inhibition la PfCCT Nous avons montré que les deux domaines CT de la PfCCT sont actifs à l'inverse de la PfECT pour laquelle seul le domaine CTN-terminal est catalytiquement actif. A la suite d'un criblage virtuel basé sur la structure de l'enzyme,nous avons identifié un composé princeps capable d'inhiber l'activité de la PfCCT in vitro, la synthèse de PC et la croissance parasitaire. Ce premier composé actif (haut µM) représente une base pour l'optimisation future de nouveaux composés plus efficaces. Dans la deuxième partie de cette thèse,nous avons déterminé le mécanisme catalytique, la spécificité de liaison des ligands et l'organisation structurale de la PfECT grâce à la combinaison d'approches biochimiques et biophysiques. L'ensemble des résultats présentés dans ce manuscrit apportent un éclairage important concernant le fonctionnement de ces deux cibles potentielles et constituent des étapes essentielles à l'élaboration d'une approche thérapeutique.Malaria is caused by the infection and destruction of red blood cells by protozoan parasitesbelonging to the genus Plasmodium. During its intra-erythrocytic development, Plasmodiumfalciparum requires massive biosynthesis of membranes which are mainly composed of phospholipids.Phosphatidylcholine (PC) and phosphatidylethanolamine (PE) together represent about 80% of thetotal membrane lipids and inhibition of their biosynthesis leads to parasite death. PC and PE aresynthesized by the parasite's machinery mainly through the de novo CDP-choline and CDPethanolamine(Kennedy) pathways using respectively choline and ethanolamine as precursors. Thisstudy focuses on the rate limiting steps of these pathways catalyzed by CTP:phosphocholine andCTP:phosphoethanolamine cytidylytransferases (PfCCT and PfECT, respectively). In Plasmodiumspecies, both CCT and ECT contain two catalytic cores (CT domains) separated by a long linker.Interestingly, for CCT this feature is found only in three organisms, all from the phylum ofApicomplexa: Babesia, Theileria and Plasmodium, whereas the presence of two CT domains is ageneral feature in all ECTs known so far. The first part of this work consists in the biochemicalcharacterization of PfCCT and the investigation of its druggability. We showed that both PfCCT CTdomains are active and display similar kinetic parameters while only the N-terminal CT domain wasactive in PfECT. Subsequent to an in silico structure-based screening of compounds libraries, weidentified a PfCCT inhibitor able to inhibit PC synthesis as well as P. falciparum growth in vitro in thehigh µM range. This compound represents a first step toward the optimization of future more potentcompounds. In the second part of this study, we investigated the catalytic mechanism of PfECT anddeciphered its interactions with its ligands using biochemical, biophysical and structural approaches.Collectively, these results bring new insights into the biochemical and structural properties of thesetwo keys enzymes of the phospholipid metabolism in P. falciparum and pave the way for their futuredevelopment as potential drug target
koamabayili/VECTRON-author-checklist: VECTRON author checklist
We have done our best to complete the author checklist relating to the use of animals in the hut study. Note that the objective for the hut study was to evaluate the IRS treatment applications for residual efficacy against Anopheles mosquitoes, including the local An. coluzzii mosquito population. Cows were only used to attract mosquitoes into the huts and no tests were carried out directly on the cows. The author checklist is intended for use with studies where experiments are carried out on animals, which is why we have had such difficulty in completing this for the hut study, as many of the questions do not relate to how the cows were used
Caractérisation biochimique et biophysique des deux cytidylyltransférases de Plasmodium falciparum, enzymes clés du métabolisme des phospholipides
Malaria is caused by the infection and destruction of red blood cells by protozoan parasitesbelonging to the genus Plasmodium. During its intra-erythrocytic development, Plasmodiumfalciparum requires massive biosynthesis of membranes which are mainly composed of phospholipids.Phosphatidylcholine (PC) and phosphatidylethanolamine (PE) together represent about 80% of thetotal membrane lipids and inhibition of their biosynthesis leads to parasite death. PC and PE aresynthesized by the parasite's machinery mainly through the de novo CDP-choline and CDPethanolamine(Kennedy) pathways using respectively choline and ethanolamine as precursors. Thisstudy focuses on the rate limiting steps of these pathways catalyzed by CTP:phosphocholine andCTP:phosphoethanolamine cytidylytransferases (PfCCT and PfECT, respectively). In Plasmodiumspecies, both CCT and ECT contain two catalytic cores (CT domains) separated by a long linker.Interestingly, for CCT this feature is found only in three organisms, all from the phylum ofApicomplexa: Babesia, Theileria and Plasmodium, whereas the presence of two CT domains is ageneral feature in all ECTs known so far. The first part of this work consists in the biochemicalcharacterization of PfCCT and the investigation of its druggability. We showed that both PfCCT CTdomains are active and display similar kinetic parameters while only the N-terminal CT domain wasactive in PfECT. Subsequent to an in silico structure-based screening of compounds libraries, weidentified a PfCCT inhibitor able to inhibit PC synthesis as well as P. falciparum growth in vitro in thehigh µM range. This compound represents a first step toward the optimization of future more potentcompounds. In the second part of this study, we investigated the catalytic mechanism of PfECT anddeciphered its interactions with its ligands using biochemical, biophysical and structural approaches.Collectively, these results bring new insights into the biochemical and structural properties of thesetwo keys enzymes of the phospholipid metabolism in P. falciparum and pave the way for their futuredevelopment as potential drug target.Le paludisme est causé par l'infection et la destruction des érythrocytes par les parasites protozoaires appartenant au genre Plasmodium. Au cours de son développement dans l'érythrocyte,Plasmodium falciparum requiert la biosynthèse massive de membranes dont les principaux constituants lipidiques sont des phospholipides. La phosphatidylcholine (PC) et la phosphatidyléthanolamine (PE) représentent à elles deux environ 80 % des lipides membranaires et l'inhibition de leur biosynthèse est létale pour le parasite. La PC et la PE sont synthétisées par le parasite, principalement via les voies de novo dépendantes de la CDP-choline et de la CDP-éthanolamine (ou voies de Kennedy) en utilisant respectivement la choline et l'éthanolamine comme précurseurs. Ces travaux de thèse se focalisent sur les deux enzymes CTP:phosphocholine etCTP:phosphoéthanolamine cytidylyltransférase (PfCCT et PfECT, respectivement), catalysant les étapes limitantes des voies de Kennedy. Chez Plasmodium, les CCT et ECT possèdent deux domaines cytidylyltransférases (CT) portant l'activité catalytique, séparés par une longue région de liaison. Pour la CCT, cette duplication est retrouvée seulement chez trois organismes, tous faisant partie du phylumdes Apicomplexes : Babesia, Theileria et Plasmodium, alors que la présence de deux domaines CT estune caractéristique retrouvée chez toutes les ECT étudiées à ce jour. La première partie de ce travail de thèse concerne la caractérisation biochimique et l'inhibition la PfCCT Nous avons montré que les deux domaines CT de la PfCCT sont actifs à l'inverse de la PfECT pour laquelle seul le domaine CTN-terminal est catalytiquement actif. A la suite d'un criblage virtuel basé sur la structure de l'enzyme,nous avons identifié un composé princeps capable d'inhiber l'activité de la PfCCT in vitro, la synthèse de PC et la croissance parasitaire. Ce premier composé actif (haut µM) représente une base pour l'optimisation future de nouveaux composés plus efficaces. Dans la deuxième partie de cette thèse,nous avons déterminé le mécanisme catalytique, la spécificité de liaison des ligands et l'organisation structurale de la PfECT grâce à la combinaison d'approches biochimiques et biophysiques. L'ensemble des résultats présentés dans ce manuscrit apportent un éclairage important concernant le fonctionnement de ces deux cibles potentielles et constituent des étapes essentielles à l'élaboration d'une approche thérapeutique
Author-wise bibliometric analysis based on entropy.
Author-wise bibliometric analysis based on entropy.</p
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