Wirusy (Polish Wikipedia)

Analysis of information sources in references of the Wikipedia article "Wirusy" in Polish language version.

refsWebsite
Global rank Polish rank
2nd place
6th place
4th place
7th place
234th place
204th place
5th place
2nd place
5,233rd place
7,735th place
195th place
256th place

doi.org

dx.doi.org

  • Mauricio G. Mateu, Assembly, Englineering and Applications of Virus-Based Protein Nanoparticles, [w:] Aitziber L. Cortajarena, Tijana Z. Grove (red.), Protein-based Engineered Nanostructures, Springer, 2016, s. 87, DOI10.1007/978-3-319-39196-0, ISBN 978-3-319-39194-6.
  • Matthieu Legendre i inni, Thirty-thousand-year-old distant relative of giant icosahedral DNA viruses with a pandoravirus morphology, „Proceedings of the National Academy of Sciences of the United States of America”, 111 (11), Stanford University’s HighWire Press, 2014, s. 4274–9, DOI10.1073/pnas.1320670111, ISSN 1091-6490, PMID24591590, PMCIDPMC3964051 (ang.).
  • Gustavo Fermin, Virion Structure, Genome Organization, and Taxonomy of Viruses, [w:] Paula Tennant, Gustavo Fermin, Jerome E. Foster (red.), Viruses. Molecular Biology, Host Interactions and Applications to Biotechnology, Academic Press, 2018, s. 46, DOI10.1016/B978-0-12-811257-1.00002-4, ISBN 978-0-12-811257-1.
  • Fei Zhou i inni, Clinical course and risk factors for mortality of adult inpatients with COVID-19 in Wuhan, China: a retrospective cohort study, „The Lancet”, 2020, DOI10.1016/S0140-6736(20)30566-3.
  • Eugene V. Koonin, Petro Starokadomskyy, Are viruses alive? The replicator paradigm sheds decisive light on an old but misguided question, „Studies In History and Philosophy of Biological and Biomedical Sciences” (59), 2016, s. 125–134, DOI10.1016/j.shpsc.2016.02.016.
  • L.P. Villarreal, Evolution of Viruses, „Elsevier Public Health Emergency Collection”, 2008, s. 174–184, DOI10.1016/B978-012374410-4.00706-8.
  • Ed Yong, Giant viruses open Pandora’s box, Nature, 2013, DOI10.1038/nature.2013.13410 [dostęp 2021-01-15].
  • Everett Clinton Smith, The not-so-infinite malleability of RNA viruses: Viral and cellular determinants of RNA virus mutation rates, „PloS Pathogens”, 13 (4), 2017, s. 1–6, DOI10.1371/journal.ppat.1006254.
  • J.N. Barr, R. Fearns, Genetic Instability of RNA Viruses, „Genome Stability”, 2016, s. 21–35, DOI10.1016/B978-0-12-803309-8.00002-1.
  • Jozef J Bujarski, Recombination of viruses, „Encyclopedia of Virology”, 1999, s. 1446–1453, DOI10.1006/rwvi.1999.0334.
  • Etienne Simon-Loriere, Edward C. Holmes, Why do RNA viruses recombine?, „Nature Reviews. Microbiology”, 9 (8), 2011, s. 617–626, DOI10.1038/nrmicro2614.
  • Kendall P. Myers, Christopher W. Olsen, Gregory C. Gray, Cases of Swine Influenza in Humans: A Review of the Literature, „Clinical Infectious Diseases”, 44 (8), 2007, s. 1084–1088, DOI10.1086/512813.
  • Clare L. Jolly, Quentin J. Sattentau, Attachment Factors, [w:] Stefan Pöhlmann, Graham Simmons (red.), Viral Entry into Host Cells, Springer, 2006, s. 1–3, DOI10.1007/978-1-4614-7651-1_1, ISBN 978-1-4614-7651-1.
  • Marie-Ève Dupuis i inni, CRISPR-Cas and restriction–modification systems are compatible and increase phage resistance, „Nature Communications”, 4, 2013, DOI10.1038/ncomms3087.
  • Kunj B. Pathak, Peter D. Nagy, Defective Interfering RNAs: Foes of Viruses and Friends of Virologists, „Viruses”, 1 (3), 2009, DOI10.3390/v1030895.
  • Christelle Desnues, Didier Raoult, Virophages question the existence of satellites, „Nature Reviews Microbiology”, 10 (234), 2012, DOI10.1038/nrmicro2676-c3.
  • Sara Imanpour i inni, Factors associated with antibiotic prescriptions for the viral origin diseases in office-based practices, 2006–2012, „JRSM Open”, 8 (8), 2017, DOI10.1177/2054270417717668.
  • Josiane E Garneau, Sylvain Moineau, Bacteriophages of lactic acid bacteria and their impact on milk fermentations, „Microbial Cell Factories”, 10, 2011, s. 1–10, DOI10.1186/1475-2859-10-S1-S20.
  • Mariángeles Briggiler Marcó i inni, Inactivation of Dairy Bacteriophages by Thermal and Chemical Treatments, „Viruses”, 11 (480), 2019, s. 1–28, DOI10.3390/v11050480.
  • Matthieu Legendre i inni, In-depth study of Mollivirus sibericum, a new 30,000-y-old giant virus infecting Acanthamoeba, „Proceedings of the National Academy of Sciences of the United States of America”, 2015, s. 1–9, DOI10.1073/pnas.1510795112.
  • Curtis A. Suttle, Marine viruses – major players in the global ecosystem, „Nature Reviews Microbiology”, 5, 2007, s. 801–812, DOI10.1038/nrmicro1750.
  • Ping Ouyang i inni, IL-10 encoded by viruses: a remarkable example of independent acquisition of a cellular gene by viruses and its subsequent evolution in the viral genome, „Journal of General Virology”, 95 (2), 2014, DOI10.1099/vir.0.058966-0.
  • Ronnie Henry, Etymologia: Poliomyelitis, „Emerging Infectious Diseases”, 25 (8), 2019, s. 1611, DOI10.3201/eid2508.ET2508.
  • Jeffery K. Taubenberger, David M. Morens, 1918 Influenza: the Mother of All Pandemics, „Emerging Infectious Diseases”, 12 (1), 2006, s. 15–22, DOI10.3201/eid1201.050979.
  • Erling Norrby, Nobel Prizes and the emerging virus concept, „Archives of Virology” (153), 2008, s. 1109–1123, DOI10.1007/s00705-008-0088-8.
  • Forest Rohwer, David Prangishvili, Debbie Lindell, Roles of viruses in the environment, „Environmental Microbiology”, 11 (11), 2009, s. 2771–2774, DOI10.1111/j.1462-2920.2009.02101.x.
  • Curtis A. Suttle, Viruses in the sea, „Nature”, 437, 2005, s. 356–361, DOI10.1038/nature04160.
  • Marilyn J. Roossinck, The good viruses: viral mutualistic symbioses, „Nature Reviews. Microbiology”, 9 (2), 2011, s. 99–108, DOI10.1038/nrmicro2491.
  • Edward B. Chuong, The placenta goes viral: Retroviruses control gene expression in pregnancy, „PLoS Biology”, 16 (10), 2018, DOI10.1371/journal.pbio.3000028.
  • Ricardo Ishak i inni, Infectious Agents As Markers of Human Migration toward the Amazon Region of Brazil, „Frontiers in Microbiology”, 8 (1663), 2017, s. 1–10, DOI10.3389/fmicb.2017.01663.

ictvonline.org

talk.ictvonline.org

nature.com

nih.gov

ncbi.nlm.nih.gov

who.int

worldcat.org