Academic literature on the topic 'Vecteurs de maladies'
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Journal articles on the topic "Vecteurs de maladies"
Soubelet, Hélène, and Jean-François Silvain. "Écosystèmes forestiers et maladies infectieuses : des liens complexes." Revue forestière française 72, no. 3 (June 30, 2020): 215–23. http://dx.doi.org/10.20870/revforfr.2020.5322.
Full textSimard, Frédéric. "La lutte contre les vecteurs : quel avenir ?" Biologie Aujourd'hui 212, no. 3-4 (2018): 137–45. http://dx.doi.org/10.1051/jbio/2019006.
Full textFailloux, Anna-Bella. "Les moustiques vecteurs d’arbovirus : une histoire sans fin." Biologie Aujourd'hui 212, no. 3-4 (2018): 89–99. http://dx.doi.org/10.1051/jbio/2018026.
Full textBERTAGNOLI, S., B. PIGNOLET, S. BIACCHESI, M. ELOIT, B. KLONJKOWSKI, J. RICHARDSON, and M. BREMONT. "Les vecteurs viraux : outils modernes de vaccination." INRAE Productions Animales 21, no. 1 (March 22, 2008): 127–36. http://dx.doi.org/10.20870/productions-animales.2008.21.1.3383.
Full textEhizibolo, D. O., E. C. Nwokike, Y. Wungak, and C. A. Meseko. "Detection of African horse sickness virus antibodies by ELISA in sera collected from unvaccinated horses in Kaduna Metropolis, Nigeria." Revue d’élevage et de médecine vétérinaire des pays tropicaux 67, no. 2 (January 1, 2015): 73. http://dx.doi.org/10.19182/remvt.10187.
Full textSchwartz, Maxime, and François Rodhain. "Les nouvelles maladies infectieuses : Comment y faire face ?" Questions de santé publique, no. 3 (November 2008): 1–4. http://dx.doi.org/10.1051/qsp/2008003.
Full textRENAULT, T., and H. LE BRIS. "Première partie : Outils de diagnostic et émergence des maladies infectieuses aquacoles." INRAE Productions Animales 20, no. 3 (September 7, 2007): 189. http://dx.doi.org/10.20870/productions-animales.2007.20.3.3451.
Full textBlandin, Alexia, and Soazig Le Lay. "Vésicules extracellulaires et maladies métaboliques." médecine/sciences 37, no. 12 (December 2021): 1125–32. http://dx.doi.org/10.1051/medsci/2021209.
Full textFasano, Caroline, Abel Hiol, Jean-Pierre Miolan, and Jean-Pierre Niel. "Les sphingolipides : vecteurs d’agents pathogènes et cause de maladies génétiques." médecine/sciences 22, no. 4 (April 2006): 411–15. http://dx.doi.org/10.1051/medsci/2006224411.
Full textLANCELOT, R., E. ZUNDEL, and C. DUCROT. "Spécificités de la santé animale en régions chaudes : le cas des maladies infectieuses majeures en Afrique." INRAE Productions Animales 24, no. 1 (March 4, 2011): 65–76. http://dx.doi.org/10.20870/productions-animales.2011.24.1.3237.
Full textDissertations / Theses on the topic "Vecteurs de maladies"
Gambart, Thomas Alliot Anne. "Les arthropodes vecteurs de maladies infectieuses chez l'Homme." [S.l.] : [s.n.], 2005. http://theses.univ-nantes.fr/thesemed/PHgambart.pdf.
Full textDelaye, Christelle. "Structuration génétique de populations de tiques (Ixodes ricinus) vecteurs de micropathogènes." Montpellier 2, 1998. http://www.theses.fr/1998MON20159.
Full textVinauger, Clément. "Apprentissage et mémoire chez les insectes vecteurs de maladies humaines." Thesis, Tours, 2011. http://www.theses.fr/2011TOUR4045/document.
Full textLearning and memory contribute to animals' fitness by allowing them adapting to variable environments. Thses two processes make them able to extract and use information from their environment in order to reduce the uncertainty associated with unpredictible environments. Among insects, fruit flies and honeybees are considered as classical models for the study of learning and memory. The amount of work that has been done on these models provide a considerable amount of information regarding the genetic, neurobiological and molecular basis of these processes and revealed the complexity of insects' cognitive abilities. All this knowledge acquired in model species, contrasts surprisingly with the lack of knowledge available regarding insect species that are involved in animal and human diseases transmission. Yet, it has been aknowledge that the detailed study of vectors cognitive abilities would allow the understanding of their adaptation to haematophagy, of their vectorial importance and provide new tools for diseases control. Up to date, studies focusing on disaese vectors, mainly in mosquitoes, were conducted in natural or not completely controled contexts and thus no clear demonstration of learning and memory is availaible.The main goal of this work was to provide a controled experimental context allowing the strudy of learning abilities in the haematophagous bug \textit{Rhodnius prolixus}. Our results show that these insectes are able to learn to associate the delivery of a same neutral odour either with the possibility to obtain a reward (blood-meal, appetitive conditioning) or with the possibility to receive a punishment (mechanical shock, aversive conditioning). We also showed that learning ans memory are involved in host selection processes. In a second part, we adapted to our biological model the paradigm of proboscis extension response conditioning, which allowed us to analyse and characterize its learning abilities. The maximal retention duration as well as the modulation of learning abilities by circadian clocks were evinced. Taken as a whole, this work provides the first experimental demonstration of learning abilities in Chagas disease vectors and provides experimental and methodological tools; These latters should allow improving the understanding of the mechanisms that are underlying cearning abilities of haematophagous insects in general. Results are also discussed in the context of host selection and parasite transmission
Pottier, Amandine Jacquiet Philippe. "Influence des modifications des facteurs environnementaux, socio-économiques et culturels sur l'épidémiologie des maladies vectorielles." [S.l.] : [s.n.], 2008. http://oatao.univ-toulouse.fr/3064/1/Jan_3064.pdf.
Full textLacroix, Renaud. "Etude de terrain d'Aedes albopictus vecteur du Chikungunya sur l'Ile de la Réunion." Versailles-St Quentin en Yvelines, 2009. http://www.theses.fr/2009VERS0053.
Full textThe recent epidemics of Chikungunya confirmed the potential of Ae. Albopictus as a vector. For implementation of Sterile Insect Technique (SIT), Mark-Release-Recapture (MLR) experiments were conducted in La Réunion Island. A mouse baited BG-Sentinel trap shown to be efficient at trapping both males and females. Results indicates that Ae. Albopictus has a limited dispersal range, higher activity during wet season, similar survival for both sexes but higher during wet season, mates before bloodmeal during dry season and preferred heavily shaded vegetated areas. We conclude that SIT should settle close release points, a low frequency of releases, adapt to season number released and places of releases. There is still a lot of work to be done before application of SIT, experiments with sterile males will be necessary for optimisation of vector population control
Martin, Estelle. "Les conséquences de l’infection par le virus chikungunya sur les vecteurs du genre Aedes." Paris 6, 2010. http://www.theses.fr/2010PA066306.
Full textSabatier-Malaterre, Florence. "Les microparticules endothéliales : nouveaux vecteurs d'activités procoagulantes en pathologie vasculaire." Aix-Marseille 2, 2003. http://www.theses.fr/2003AIX22950.
Full textDuque, Sandra. "Thérapie génique des maladies du motoneurone à l'aide de vecteurs dérivés des AAV." Paris 7, 2009. http://www.theses.fr/2009PA077101.
Full textMotor neuron diseases (MND) such as amyotrophic lateral sclerosis (ALS), are incurable degenerative disorders characterised by the selective loss of motor neurons (MNs) localised in the motor cortex, the brainstem and/or the spinal cord. To date, there is no treatment for these disorders because of the blood brain barrier (BBB) which hindered the crossing of the therapeutic molecules from the circulation flow to the central nervous System (CNS) parenchyma. New therapeutic strategies, based on gene transfer using viral vectors have thus been developed. This study aimed to evaluate new strategies for increasing the efficiency of MNs transduction using AAV vectors. The fîrst approach bypasses the problem of the BBB by injecting the viral vectors directly into brain areas at the origin of the descending spinal pathways. The injection of AAV vectors expressing therapeutic transgenes into these specific brain structures could indeed lead to the production and traffîcking of therapeutic proteins through descending pathways to the spinal cord by anterograde axonal transport mechanisms. The subsequent secretion of these proteins could thus influence the survival and the activity of the spinal cord MNs. The second approach is based on the systemic administration of a new serotype and genome AAV vectors, the self-complementary AAV9 vector. We identifîed the remarkable ability of AAV9 vectors to transduce cells of the CNS, including MNs, after a single intravenous injection in adult mice. This gene transfer strategy represents an efficient and non-invasive procedure to reach the CNS. This result raises thus great hopes for the treatment of MN disease and other neurological disorders
Ribault, Sébastien. "Thérapie génique des maladies cardiovasculaires Ciblage transcriptionnel des vecteurs de transfert de gènes." Université Louis Pasteur (Strasbourg) (1971-2008), 2001. http://www.theses.fr/2001STR13206.
Full textPoinsignon, Anne. "Étude de la relation homme-vecteur : de l'identification à la validation de protéines salivaires comme marqueur immunologique d'exposition aux piqûres d'Anopheles spp. et Glossina spp." Montpellier 1, 2008. http://www.theses.fr/2008MON1T034.
Full textBooks on the topic "Vecteurs de maladies"
Gélinas, Pierre. Répertoire des microorganismes pathogènes transmis par les aliments. St. Hyacinthe, Qué: Edisem, 1995.
Find full textWood, D. M. Biting flies attacking man and livestock in Canada. Ottawa: Communications Branch, Agriculture Canada, 1985.
Find full textChan, C. K. Aphid-transmitted viruses and their vectors of the world. Vancouver: Research Branch, Agriculture Canada, 1991.
Find full textP, Lane Richard, and Crosskey Roger Ward, eds. Medical insects and arachnids. London: Chapman & Hall, 1993.
Find full textLower Canada. Court of Special Sessions of the Peace (District of Québec), ed. Ordre des magistrats de la cité et district de Quebec: Fait dans une session spéciale de la paix tenue dans la cité de Quebec, le 5e jour d'aout, 1814. [Québec?: s.n., 1986.
Find full textComité national d'évaluation de la recherche (France). Recherche sur l'animal et santé de l'homme. Paris: Documentation française, 2003.
Find full textInstitute), Workshop on Research and Training Needs in the Field of Integrated Vector-Borne Disease Control in Riceland Agroecosystems of Developing Countries (1987 International Rice Research. Vector-borne disease control in humans through rice agroecosystem management: Proceedings of the Workshop on Research and Training Needs in the Field of Integrated Vector-Borne Disease Control in Riceland Agroecosystems of Developing Countries, 9-14 March 1987. [Manila]: International Rice Research Institute in collaboration with the WHO/FAO/UNEP Panel of Experts on Environmental Management for Vector Control, 1988.
Find full textBarbour, Elie K. Zoonoses and the contribution of disease-free pets to human health: A guide for pet owners. West Orange, NJ: Thajema Publishers, 2004.
Find full text1940-, Keyes John W., Brown Manuel L, Miller Tom R, and Siegel Barry A. 1944-, eds. Nuclear radiology (fifth series) test and syllabus. Reston, Va: American College of Radiology, 1998.
Find full textBook chapters on the topic "Vecteurs de maladies"
"Former des veilleurs sanitaires." In Science et développement durable, 193. Marseille: IRD Éditions, 2019. http://dx.doi.org/10.4000/1226x.
Full text"Moustiques, virus et mondialisation." In Science et développement durable, 190–91. Marseille: IRD Éditions, 2019. http://dx.doi.org/10.4000/1226l.
Full textDuplantier, Jean-Marc, and Didier Fontenille. "SOUS-CHAPITRE 9.5 Vers une meilleure connaissance des vecteurs et de leur contrôle." In La maîtrise des maladies infectieuses, 299–314. EDP Sciences, 2020. http://dx.doi.org/10.1051/978-2-7598-0154-1-021.
Full textDuplantier, Jean-Marc, and Didier Fontenille. "SOUS-CHAPITRE 9.5 Vers une meilleure connaissance des vecteurs et de leur contrôle." In La maîtrise des maladies infectieuses, 299–314. EDP Sciences, 2020. http://dx.doi.org/10.1051/978-2-7598-0154-1.c021.
Full textMouchet, J., Ousmane Faye, and Pascal Handschumacher. "Les vecteurs de maladies dans les mangroves des Rivières du Sud." In Dynamique et usages de la mangrove dans les pays des rivières du Sud, du Sénégal à la Sierra Leone, 117–23. IRD Éditions, 1991. http://dx.doi.org/10.4000/books.irdeditions.3810.
Full text"Extinction des feux pour la mouche tsé-tsé ?" In Science et développement durable, 90–91. Marseille: IRD Éditions, 2019. http://dx.doi.org/10.4000/1228b.
Full text"Vers des usines à moustiques." In Science et développement durable, 93. Marseille: IRD Éditions, 2019. http://dx.doi.org/10.4000/1228l.
Full textPÉCHOUX, F., V. JUANES-TARANCO, C. CONSTANTINI, J. BOMPARD, and K. COCQUEMPOT. "Les évacuations aériennes stratégiques para-médicalisées." In Médecine et Armées Vol. 46 No.4, 339–42. Editions des archives contemporaines, 2018. http://dx.doi.org/10.17184/eac.7323.
Full textReports on the topic "Vecteurs de maladies"
Gómez, Andres, and Elizabeth Nichols. Conservation de la Biodiversité et Santé Humaine. American Museum of Natural History, 2008. http://dx.doi.org/10.5531/cbc.ncep.0163.
Full textMertenat, Adeline, and Christian Zurbrügg. Planifier le Zéro Déchet à l'école - une boîte à outils. Swiss Federal Institute of Aquatic Science and Technology, Eawag, August 2024. http://dx.doi.org/10.55408/eawag:33148.
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