27 results on '"Derbali, M."'
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2. Infection of sand flies collected from different bio-geographical areas of Tunisia with phleboviruses
3. Laboratory and field evaluation of rodent bait treated with fipronil for feed through and systemic control of Phlebotomus papatasi
4. Implications of Spike-glycoprotein processing at S1/S2 by Furin, at S2’ by Furin and/or TMPRSS2 and shedding of ACE2: cell-to-cell fusion, cell entry and infectivity of SARS-CoV-2
5. Évaluation au laboratoire et sur le terrain de l’imidaclopride sous forme d’appâts pour les rongeurs afin de contrôler les populations de Phlebotomus papatasi Scopoli, 1786 (Dipetra: Psychodidae)
6. Leishmania major Yakimoff et Schokhor, 1914 (Kinetoplastida : Trypanosomatidae) chez Meriones shawi Duvernoy, 1842 (Rodentia : Gerbillidae) : persistance de l’infection du mérion et de son infectivité pour le phlébotome vecteur Phlebotomus (Phlebotomus) papatasi Scopoli, 1786 (Diptera : Psychodidae)
7. Characterization of closed space vapor transport GaP epitaxial layers
8. West Nile virus in Tunisia, 2014: First isolation from mosquitoes
9. Punique virus, a novel phlebovirus, related to sandfly fever Naples virus, isolated from sandflies collected in Tunisia
10. Differences in the Salivary Effects of Wild-Caught Versus Colonized Phlebotomus papatasi (Diptera: Psychodidae) on the Development of Zoonotic Cutaneous Leishmaniasis in BALB/c Mice
11. Spatial Correlation BetweenPhlebotomus papatasiScopoli (Diptera: Psychodidae) and Incidence of Zoonotic Cutaneous Leishmaniasis in Tunisia
12. Phenology of Phlebotomus papatasi (Diptera: Psychodidae) Relative to the Seasonal Prevalence of Zoonotic Cutaneous Leishmaniasis in Central Tunisia
13. Buckling of the multi-vaulted "Aster" shell under axial compression alone or combined with an external pressure
14. A comparative study of heterostructures InP/GaAs (001) and InP/GaAs (111) grown by metalorganic chemical vapor deposition
15. RELATIONSHIP BETWEEN THE GEOGRAPHICAL DISTRIBUTION OF SANDFLIES AND THE CIRCULATION OF PHLEBOVIRUSES IN TUNISIA.
16. Spatial Correlation Between Phlebotomus papatasi Scopoli (Diptera: Psychodidae) and Incidence of Zoonotic Cutaneous Leishmaniasis in Tunisia
17. An efficient algorithm for energy harvesting in IIoT based on machine learning and swarm intelligence.
18. Risk Assessment of the Role of the Ecotones in the Transmission of Zoonotic Cutaneous Leishmaniasis in Central Tunisia.
19. The Impact of Illegal Waste Sites on the Transmission of Zoonotic Cutaneous Leishmaniasis in Central Tunisia.
20. Viscoelastic and dielectric properties of 5CB nematic liquid crystal doped by magnetic and nonmagnetic nanoparticles.
21. Towards Smart Gaming Olfactory Displays.
22. Pyrethroid insecticide lambda-cyhalothrin and its metabolites induce liver injury through the activation of oxidative stress and proinflammatory gene expression in rats following acute and subchronic exposure.
23. Changes of Sand Fly Populations and Leishmania infantum Infection Rates in an Irrigated Village Located in Arid Central Tunisia.
24. Irrigation in the arid regions of Tunisia impacts the abundance and apparent density of sand fly vectors of Leishmania infantum.
25. Colonization of Phlebotomus papatasi changes the effect of pre-immunization with saliva from lack of protection towards protection against experimental challenge with Leishmania major and saliva.
26. Lack of protection of pre-immunization with saliva of long-term colonized Phlebotomus papatasi against experimental challenge with Leishmania major and saliva of wild-caught P. papatasi.
27. Zooprophylaxis: impact of breeding rabbits around houses on reducing the indoor abundance of Phlebotomus papatasi.
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