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Evaluation of Transmission Secure Methods in its Systems

References [1] Chowdhury, M. A., Sadek, A., Fundamentals of Intelligent Transportation Systems Planning , Artech House ITS Library, Boston, London 2003. [2] Duchaczek, A., Skorupka, D., Szleszyński, A., Optimization of the selection of means of transport in the logistics warehouse of building materials Wyd. WSOWL, Wroclaw 2012. [3] Fry, Ch., Nystrom, M., Monitoring and network security, Wyd. Helion, Gliwice 2010. [4] Górny, P., Elements of decision analysis , Wyd. AON, Warszawa 2004. [5] Karpiński, M., Information security

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rDNA ITS sequences of Uncinaria spp. from Tsushima leopard cat (Prionailurus bengalensis euptilura)

0020-7519(99)00148-4 [3] E Silva, L. M., Miranda, R. R., Santos, H. A., Rabelo, E. M. (2006): Differential diagnosis of dog hookworms based on PCR-RFLP from the ITS region of their rDNA. Vet. Parasitol., 140: 373–377. DOI: 10.1016/j.vetpar.2006.04.012 http://dx.doi.org/10.1016/j.vetpar.2006.04.012 [4] Gasser, R. B., Chilton, N. B., Hoste, H., Beveridge, I. (1993): Rapid sequencing of rDNA from single worms and eggs of parasitic helminths. Nucleic Acids Res., 21: 2525–2526 http://dx.doi.org/10.1093/nar/21

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Evaluation Criteria for Technical and Teleinformatic Solutions in its Services

Abstract

Transport telematics systems integrate IT with telecommunications in applications for different transport systems. Through their implementation, the use of transport infrastructure and means of transport increases, while increasing the level of safety of vehicles and facilities performing transport tasks. The implementation of modern Intelligent Transport Systems in road transport necessitates their evaluation (including reliability and operation) and the rational selection for planned criteria. The article presents the author’s work on criteria and sub-criteria that will be used to evaluate technical and teleinformatic solutions for ITS services.

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European tendencies and co-operation in the field of ITS systems - national achievements and challenges in Hungary

és feladatok). Európai tükör . 16(5), 59-66. [8] European Commission (2012). Commission Delegated Regulation 305/2013 of 26 November 2012 supplementing Directive 2010/40/EU of the European Parliament and of the Council with regard to the harmonised provision for an interoperable EU-wide eCall . Brussels, 26 November 2012 [9] European Commission (2013). Commission Delegated Regulation 885/2013/EU of 15 May 2013 supplementing ITS Directive 2010/40/EU of the European Parliament and of the Council with regard to the provision of information services for

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Ribosomal ITS2 structure in Caryophyllaeus laticeps and Caryophyllaeus brachycollis (Cestoda: Caryophyllidea), parasites of cyprinid fish

[1] Bazsalovicsová, E., Králová-Hromadová, I., Štefka, J., Scholz, T., Hanzelová, V., Vávrová, S., Szemes, T., Kirk, R. (2011): Population study of Atractolytocestus huronensis (Cestoda: Caryophyllidea), an invasive parasite of common carp introduced to Europe: mitochondrial cox1 haplotypes and intragenomic ribosomal ITS2 variants. Parasitol. Res., 109: 125–131. DOI: 10.1007/s00436-010-2235-x http://dx.doi.org/10.1007/s00436-010-2235-x [2] Bazsalovicsová, E., Králová-Hromadová, I., Štefka, J., Scholz, T. (2012

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The correct phylogenetic position of Lotus conimbricensis Brot. (Leguminosae, Loteae) based on nuclear ribosomal ITS sequences

References Allan, G. J., Porter, J. M., 2000: Tribal delimitation and phylogenetic relationships of Loteae and Coronilleae (Faboideae: Fabaceae) with special reference to Lotus : evidence from nuclear ribosomal ITS sequences. American Journal of Botany 87, 1871-1881. Allan, G. J., Francisco-Ortega, J., Santos-Guerra, A., Boerner, E., Zimmerf, E. A., 2004: Molecular phylogenetic evidence for the geographic origin and classification of Canary Island Lotus (Fabaceae: Loteae). Molecular Phylogenetics and

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Genetic characterization of Genista sericea Wulfen (Cytiseae – Fabaceae) as revealed by nuclear DNA content and its nrDNA region analysis

References AINOUCHE, A., BAYER, R. J., CUBAS, P., MISSET, M. T., 2003: Phylogenetic relationships within tribe Genisteae (Papilionoideae) with special reference to genus Ulex . In: KLITGAARD, B. B., BRUNEAU, A. (eds.), Advances in legume systematics, 10. Higher level systematics, 239-252. Royal Botanic Gardens, Kew. ÁLVAREZ, I.,WENDE, J. F., 2003: Ribosomal ITS sequences and plant phylogenetic inference, Molecular Phylogenetics and Evolution 29, 417-434. BADR, A.,MARTIN, W., JENSEN, U., 1994

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Weldability of Titanium and its Alloys - Progress in Joining

. et al.: Titanium and Titanium alloys in Chapter 9. Welding Handbook. 1999. Paton E. E., Williams J. C.: Effects of hydrogen on Titanium and its alloys. Hydrogen in Metals. in ASM409-431. Martin P. L. et al.: The effects of alloying on the microstructure and properties of Ti 3 Al and TiAl. Proc. 4 th Inter. Conf. on Titanium. Kyoto. Japan, 1990, pp. 1245-1254. Hall L., Hucing S. C.: Microstructure property relationships in Titanium aluminides and alloys. Ed. Y. W. Kim R. R. Boyer. The

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Analysis and Evaluation of the Influence of Selected its Services on Road Traffic Safety and Efficiency

Transportowe (ITS) [Intelligent Transport Systems]. Wydział Transportu PW. Stare Jabłonki 2007, pp.: 1-4, 9-11 [5] Gaca S., Suchorzewski W., Tracz M.: Inżynieria ruchu drogowego. Teoria i Praktyka [Road traffic engineering. Theory and Practice] . WKŁ. Warszawa 2008, 2014, pp.: 361-369, 434-437 [6] Intelligent Transport Systems for Sustainable Mobility. United Nations Economic Commission for Europe. Geneva 2012, http://web.archive.org/web/20151106070216/ http

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Molecular Detection of Bartonella Sp. in Wild Ruminants and Analysis of its Genetic Diversity on the Basis of 16S–23S Rrna Intergenic Spacer (ITS)

Abstract

The aim of this study was to describe the state of infection of roe deer (Capreolus capreolus) and red deer (Cervus elaphus) by Bartonella sp. in North-Western Poland through PCR detection of Bartonella 16S-23S rRNA ITS region in isolates of animal tissues, and also to describe the genetic diversity of detected Bartonella species based on molecular analysis of ITS. The multiple alignment analysis of ITS sequences was carried out, and homology matrices and phylogenetic trees were constructed. The DNA of Bartonella sp. was detected in tissues of 45.6% (36/79) C. capreolus and of 50% (15/30) C. elaphus. Products of two different sizes were detected: 317 bp, characteristic for B. schoenbuchensis, and 198 bp, characteristic for B. bovis. The obtained results suggest that roe and red deer are potential reservoirs of Bartonella sp. Most of the analysed ITS sequences was not specific for one host species. In constructed phylogenetic trees, sequences obtained from roe and red deer clustered together. These results suggest a lack of host specificity of most detected B. schoenbuchensis and B. bovis intraspecies strains

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