Bore (French Wikipedia)

Analysis of information sources in references of the Wikipedia article "Bore" in French language version.

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ap-hop-paris.fr (Global: low place; French: low place)

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archives-ouvertes.fr (Global: 1,143rd place; French: 191st place)

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borax.com (Global: low place; French: low place)

cabdirect.org (Global: low place; French: 6,864th place)

  • (en) Aashiq, M. D., Nautiyal, B. P. et Negi, M. (2017). Effect of zinc and boron application on fruit set, quality and yield of apple (Mallus× domestica Borkh.) cv. Red Delicious, Journal of Crop and Weed, 13(2), 217-221, résumé.

commons.wikimedia.org (Global: 484th place; French: 399th place)

doi.org (Global: 2nd place; French: 3rd place)

dx.doi.org

  • (en) Beatriz Cordero, Verónica Gómez, Ana E. Platero-Prats, Marc Revés, Jorge Echeverría, Eduard Cremades, Flavia Barragán et Santiago Alvarez, « Covalent radii revisited », Dalton Transactions, , p. 2832 - 2838 (DOI 10.1039/b801115j)
  • (en) Norman E. Holden, « The Impact of Depleted 6Li on the Standard Atomic Weight of Lithium », Chemistry International, Walter de Gruyter GmbH, vol. 32, no 1, (ISSN 1365-2192, DOI 10.1515/ci.2010.32.1.14, lire en ligne).
  • William D. McNally (1928), The distribution of boric acid in human organs in six deaths due to boric acid epoisoning M.D.; C. A. RUST, M.S. JAMA. 1928-02-04 ; vol. 90, no 5 p. 382-383, DOI 10.1001/jama.1928.02690320044013.
  • M. Korkmaz (2011), Boron: Environmental Exposure and Human Health, Encyclopedia of Environmental Health, p. 442–445, DOI 10.1016/B978-0-444-52272-6.00376-7 (résumé).
  • (en) R. B Clark, S. K Zeto, K. D Ritchey et V. C Baligar, « Boron accumulation by maize grown in acidic soil amended with coal combustion products », Fuel, vol. 78, no 2, , p. 179–185 (DOI 10.1016/S0016-2361(98)00133-1).
  • (en) TÜrker O.C. et Baran T. (2017). A combination method based on chitosan adsorption and duckweed (Lemna gibba L.) phytoremediation for boron (B) removal from drinking water, International Journal of Phytoremediation, janvier 28, 20(2):175-183, DOI 10.1080/15226514.2017.1350137 (résumé).
  • (en) A. Waggott (1969). An investigation of the potential problem of increasing boron concentrations in rivers and water courses, Water Research, vol. 3, no 10, octobre 1969, p. 749–765 DOI 10.1016/0043-1354(69)90039-6.
  • (en) Malgorzata Bebek, Krzysztof Mitko et Jerzy Kwapulinsk, « Determination of aluminum, barium, molybdenum, scandium, berylium, titanium, vanadium, fluoride and boron in highly salinated waters », Water Science and Technology, vol. 33, no 6, (ISSN 0273-1223, DOI 10.1016/0273-1223(96)00286-7).
  • (en) Lucy Butterwick, Nicolaas de Oude et Karen Raymond, « Safety assessment of boron in aquatic and terrestrial environments », Ecotoxicology and Environmental Safety, vol. 17, no 3, , p. 339–371 (ISSN 0147-6513, DOI 10.1016/0147-6513(89)90055-9).
  • (en) Mehtap Kutlu, Gözde Aydoğan et Emel Mumcu, « Mutagenicity analysis of water samples from Seydisuyu (Kırka, Turkey) stream under the influence of boron production complex », Food and Chemical Toxicology, vol. 45, no 10, , p. 2064–2068 (ISSN 0278-6915, DOI 10.1016/j.fct.2007.05.008).
  • (en) Meltem Çöl et Cavit Çöl, « Environmental boron contamination in waters of Hisarcik area in the Kutahya Province of Turkey », Food and Chemical Toxicology, vol. 41, no 10, , p. 1417–1420 (DOI 10.1016/S0278-6915(03)00160-1).
  • (en) Lucia Schoderboeck, Simone Mühlegger, Annemarie Losert et Christian Gausterer, « Effects assessment: Boron compounds in the aquatic environment », Chemosphere, vol. 82, no 3, , p. 483–487 (ISSN 0045-6535, DOI 10.1016/j.chemosphere.2010.10.031, lire en ligne, consulté le ).
  • (en) Nikolay Strigul, Liana Vaccari, Catherine Galdun et Mahmoud Wazne, « Acute toxicity of boron, titanium dioxide, and aluminum nanoparticles to Daphnia magna and Vibrio fischeri », Desalination, vol. 248, nos 1-3, , p. 771–782 (DOI 10.1016/j.desal.2009.01.013, lire en ligne, consulté le ).
  • (en) Lucia Schoderboeck, Simone Mühlegger, Annemarie Losert et Christian Gausterer, « Effects assessment: Boron compounds in the aquatic environment », Chemosphere, vol. 82, no 3, , p. 483–487 (DOI 10.1016/j.chemosphere.2010.10.031, lire en ligne, consulté le ) :
    « These evaluations indicate that boron compounds could be hazardous to aquatic organisms at concentrations close to the natural environmental background in some European regions. »
  • (en) Ahmed A. Elseewi, I. R. Straughan et A. L. Page, « Sequential cropping of fly ash-amended soils: Effects on soil chemical properties and yield and elemental composition of plants », Science of The Total Environment, vol. 15, no 3, , p. 247–259 (DOI 10.1016/0048-9697(80)90053-4).
  • (en) R. B Clark, S. K Zeto, K. D Ritchey et V. C Baligar, « Boron accumulation by maize grown in acidic soil amended with coal combustion products », Fuel, vol. 78, no 2, , p. 179–185 (DOI 10.1016/S0016-2361(98)00133-1).
  • (en) J. F. Hollis, R. Keren et M. Gal, « Boron Release and Sorption by Fly Ash as Affected by pH and Particle Size », Journal of Environmental Quality, vol. 17, no 2, , p. 181–184 (ISSN 0047-2425 et 1537-2537, DOI 10.2134/jeq1988.00472425001700020002x).
  • (en) Institute of Medicine; Food and Nutrition Board; Panel on Micronutrients; Subcommittees on Upper Reference Levels of Nutrients and of Interpretation and Use of Dietary Reference Intakes; Standing Committee on the Scientific Evaluation of Dietary Reference Intakes, Dietary Reference Intakes for Vitamin A, Vitamin K, Arsenic, Boron, Chromium, Copper, Iodine, Iron, Manganese, Molybdenum, Nickel, Silicon, Vanadium, and Zinc, , 800 p. (ISBN 9780309072793, DOI 10.17226/10026, lire en ligne), p. 512.

elsevier.com (Global: 365th place; French: 210th place)

linkinghub.elsevier.com

  • (en) Nikolay Strigul, Liana Vaccari, Catherine Galdun et Mahmoud Wazne, « Acute toxicity of boron, titanium dioxide, and aluminum nanoparticles to Daphnia magna and Vibrio fischeri », Desalination, vol. 248, nos 1-3, , p. 771–782 (DOI 10.1016/j.desal.2009.01.013, lire en ligne, consulté le ).

europa.eu (Global: 62nd place; French: 68th place)

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eur-lex.europa.eu

finances.gouv.fr (Global: low place; French: 945th place)

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futura-sciences.com (Global: 4,242nd place; French: 274th place)

hc-sc.gc.ca (Global: low place; French: 4,213th place)

ilo.org (Global: 2,182nd place; French: 425th place)

ineris.fr (Global: low place; French: 2,114th place)

issn.org (Global: 33rd place; French: 4th place)

portal.issn.org

  • (en) Norman E. Holden, « The Impact of Depleted 6Li on the Standard Atomic Weight of Lithium », Chemistry International, Walter de Gruyter GmbH, vol. 32, no 1, (ISSN 1365-2192, DOI 10.1515/ci.2010.32.1.14, lire en ligne).
  • (en) Malgorzata Bebek, Krzysztof Mitko et Jerzy Kwapulinsk, « Determination of aluminum, barium, molybdenum, scandium, berylium, titanium, vanadium, fluoride and boron in highly salinated waters », Water Science and Technology, vol. 33, no 6, (ISSN 0273-1223, DOI 10.1016/0273-1223(96)00286-7).
  • (en) Lucy Butterwick, Nicolaas de Oude et Karen Raymond, « Safety assessment of boron in aquatic and terrestrial environments », Ecotoxicology and Environmental Safety, vol. 17, no 3, , p. 339–371 (ISSN 0147-6513, DOI 10.1016/0147-6513(89)90055-9).
  • (en) Mehtap Kutlu, Gözde Aydoğan et Emel Mumcu, « Mutagenicity analysis of water samples from Seydisuyu (Kırka, Turkey) stream under the influence of boron production complex », Food and Chemical Toxicology, vol. 45, no 10, , p. 2064–2068 (ISSN 0278-6915, DOI 10.1016/j.fct.2007.05.008).
  • (en) Lucia Schoderboeck, Simone Mühlegger, Annemarie Losert et Christian Gausterer, « Effects assessment: Boron compounds in the aquatic environment », Chemosphere, vol. 82, no 3, , p. 483–487 (ISSN 0045-6535, DOI 10.1016/j.chemosphere.2010.10.031, lire en ligne, consulté le ).
  • (en) J. F. Hollis, R. Keren et M. Gal, « Boron Release and Sorption by Fly Ash as Affected by pH and Particle Size », Journal of Environmental Quality, vol. 17, no 2, , p. 181–184 (ISSN 0047-2425 et 1537-2537, DOI 10.2134/jeq1988.00472425001700020002x).

iupac.org (Global: 1,291st place; French: 1,144th place)

old.iupac.org

nih.gov (Global: 5th place; French: 11th place)

ncbi.nlm.nih.gov

  • Locatelli C., Minoia C., Tonini M. et Manzo L.G. (1987), Human toxicology of boron with special reference to boric acid poisoning, Ital. Med. Lav., mai-juillet 1987, 9(3-4):141-6 (https://www.ncbi.nlm.nih.gov/pubmed/3334378 résumé]).
  • Marchiondo AA, Riner JL, Sonenshine DE, Rowe KF, Slusser JH. (1990), Ovicidal and larvicidal modes of action of fenoxycarb against the cat flea (Siphonaptera: Pulicidae) ; J. Med. Entomol., septembre 1990 ; 27(5):913-21 (résumé).
  • Hinkle NC, Koehler PG, Patterson RS (1995), Larvicidal effects of boric acid and disodium octaborate tetrahydrate to cat fleas (Siphonaptera: Pulicidae), J. Med. Entomol., juillet 1995, 32(4):424-7 (résumé).
  • Moseman, R.F. (1994), Chemical disposition of boron in animals and humans ; Environmental Health Perspectives 102, 113-117 (voire page 4/5 du PDF)
  • Wester RC, Hartway T, Maibach HI, Schell MJ, Northington DJ, Culver BD, Strong PL. (1998), In vitro percutaneous absorption of boron as boric acid, borax, and disodium octaborate tetrahydrate in human skin: a summary ; Biol. Trace Elem. Res., hiver 1998 ; 66(1-3):111-20 (résumé).
  • Sabuncuoglu BT, Kocaturk PA, Yaman O, Kavas GO, Tekelioglu M. (2006), Effects of subacute boric acid administration on rat kidney tissue ; Clin. Toxicol. (Phila), 2006 ; 44(3):249-53 (résumé).
  • Aniol-Strzyzewska K. (1976), Accidental lethal poisoning of a newborn infant with boric acid, Pediatr. Pol., décembre 1976 51(12):1475-7 (lien (polonais)).
  • Hamilton RA, Wolf BC. (2007), Accidental boric acid poisoning following the ingestion of household pesticide, J. Forensic Sci., mai 2007, 52(3):706-8 (résumé).
  • Kiesche-Nesselrodt A, Hooser SB. (1990), Toxicology of selected pesticides, drugs, and chemicals. Boric acid ; Vet. Clin. North Am. Small Anim. Pract., mars 1990, 20(2):369-73 (résumé).
  • O'Sullivan K, Taylor M. (1983), Chronic boric acid poisoning in infants, Arch. Dis. Child ; septembre 1983 ; 58(9):737-9 (résumé).
  • Murray F.J. (1998), A comparative review of the pharmacokinetics of boric acid in rodents and humans, Biol. Trace Elem. Res., hiver 1998 ; 66(1-3):331-41 (résumé).
  • Vaziri ND, Oveisi F, Culver BD, Pahl MV, Andersen ME, Strong PL, Murray FJ (2001), The effect of pregnancy on renal clearance of boron in rats given boric acid orally ; Toxicol. Sci., avril 60(2):257-63 (résumé).
  • Jansen J.A., Andersen J. et Schou J.S. (1984), Boric acid single dose pharmacokinetics after intravenous administration to man, Arch. Toxicol., mars 1984 ; 55(1):64-7, résumé.
  • (en) TÜrker O.C. et Baran T. (2017). A combination method based on chitosan adsorption and duckweed (Lemna gibba L.) phytoremediation for boron (B) removal from drinking water, International Journal of Phytoremediation, janvier 28, 20(2):175-183, DOI 10.1080/15226514.2017.1350137 (résumé).

toxnet.nlm.nih.gov

plantstress.com (Global: low place; French: low place)

researchgate.net (Global: 96th place; French: 148th place)

  • (en) Lucia Schoderboeck, Simone Mühlegger, Annemarie Losert et Christian Gausterer, « Effects assessment: Boron compounds in the aquatic environment », Chemosphere, vol. 82, no 3, , p. 483–487 (ISSN 0045-6535, DOI 10.1016/j.chemosphere.2010.10.031, lire en ligne, consulté le ).
  • (en) Lucia Schoderboeck, Simone Mühlegger, Annemarie Losert et Christian Gausterer, « Effects assessment: Boron compounds in the aquatic environment », Chemosphere, vol. 82, no 3, , p. 483–487 (DOI 10.1016/j.chemosphere.2010.10.031, lire en ligne, consulté le ) :
    « These evaluations indicate that boron compounds could be hazardous to aquatic organisms at concentrations close to the natural environmental background in some European regions. »

sciencedirect.com (Global: 137th place; French: 99th place)

  • M. Benderdour, T. Bui-Van, A. Dicko, F. Belleville (1998), In Vivo and In Vitro Effects of Boron and Boronated Compounds, Journal of Trace Elements in Medicine and Biology, vol. 12, no 1, mars 1998, p. 2–7 (résumé).
  • Huseyin Tombuloglu, Nihan Semizoglu, Serdal Sakcali, Guzin Kekec (2012), Boron induced expression of some stress-related genes in tomato ; Chemosphere, vol. 86, no 5, février 2012, p. 433-438 (résumé).
  • A.M. Ibekwe, J.A. Poss, S.R. Grattan, C.M. Grieve, D. Suarez (2010), Bacterial diversity in cucumber (Cucumis sativus) rhizosphere in response to salinity, soil pH, and boron ; Soil Biology and Biochemistry, vol. 42, no 4, avril 2010, p. 567–575 (résumé).
  • Erchao Li, Zequan Xiong, Liqiao Chen, Ceng Zeng, Kang Li (2008), Acute toxicity of boron to juvenile white shrimp, Litopenaeus vannamei, at two salinities Aquaculture ; vol. 278, no 1–4, 10 juin 2008, p. 175-178 résumé.
  • D. Taylor, B.G. Maddock, G. Mance (1985), The acute toxicity of nine ‘grey list’ metals (arsenic, boron, chromium, copper, lead, nickel, tin, vanadium and zinc) to two marine fish species: Dab (Limanda limanda) and grey mullet (Chelon labrosus) ; Aquatic Toxicology, vol. 7, no 3, novembre 1985, p. 135-144 (résumé).
  • M. Korkmaz (2011), Boron: Environmental Exposure and Human Health, Encyclopedia of Environmental Health, p. 442–445, DOI 10.1016/B978-0-444-52272-6.00376-7 (résumé).
  • Angela Queste, Martin Lacombe, Wolfgang Hellmeier, Frank Hillermann, Bianca Bortulussi, Markus Kaup, Klaus Ott, Werner Mathys (2001), High concentrations of fluoride and boron in drinking water wells in the Muenster region - Results of a preliminary investigation; International Journal of Hygiene and Environmental Health, vol. 203, no 3, p. 221–224 (résumé).
  • Colin Neal, Richard J. Williams, Michael J. Bowes, Michael C. Harrass, Margaret Neal, Philip Rowland, Heather Wickham, Sarah Thacker, Sarah Harman, Colin Vincent, Helen, P. Jarvie (2010), Decreasing boron concentrations in UK rivers: Insights into reductions in detergent formulations since the 1990s and within-catchment storage issues ; Science of The Total Environment, vol. 408, no 6, 15 février 2010, p. 1374–1385 (résumé).
  • G.M. Rusch, G.M. Hoffman, R.F. McConnell et W.E. Rinehart (1986), Inhalation toxicity studies with boron trifluoride, Toxicology and Applied Pharmacology, vol. 83, No 1, 1986-03-30, p. 69-78 (résumé).
  • Bekir Sitki Sayli, Ersöz Tüccar, Atilla Halil Elhan (1998), An Assessment of Fertility in Boron-exposed Turkish Subpopulations ; Reproductive Toxicology Vol12, no 3, mai-juin 1998, p. 297–304 (résumé).
  • Wendie A. Robbins, Lin Xun, Juan Jia, Nola Kennedy, David A. Elashoff, Liu Ping (2010), Chronic boron exposure and human semen parameters ; Reproductive Toxicology ; vol. 29, no 2, avril 2010, p. 184–190 (résumé).
  • Ryuichi Hasegawa, Mutsuko Hirata-Koizumi, Michael L. Dourson, Ann Parker, Atsushi Ono, Akihiko Hirose (2013) « Safety assessment of boron by application of new uncertainty factors and their subdivision », Regulatory Toxicology and Pharmacology, vol. 65, no 1, février 2013, p. 108-114 (résumé).
  • I.P. Lee, R.J. Sherins, R.L. Dixon (1978), Evidence for induction of germinal aplasia in male rats by environmental exposure to boron ; Toxicology and Applied Pharmacology, Vol. 45, no 2, aout 1978, p. 577-590 ().
  • Warren W. Ku, Robert E. Chapin, Robert F. Moseman, Robert E. Brink, Katherine D. Pierce, Kelly Y. Adams (1991), Tissue disposition of boron in male Fischer rats ; Toxicology and Applied Pharmacology ; vol. 111, no 1, octobre 1991, p. 145–151 (résumé).
  • Catherine J. Price, Philip L. Strong, F.Jay Murray, Margaret M. Goldberg (1997), Blood boron concentrations in pregnant rats fed boric acid throughout gestation ; Reproductive Toxicology, vol. 11, no 6, p. 833–842 ; (Résumé).
  • Anthony R. Scialli, Jens Peter Bonde, Irene Brüske-Hohlfeld, B. Dwight Culver, Yanhong Li, Frank M. Sullivan (2010), An overview of male reproductive studies of boron with an emphasis on studies of highly exposed Chinese workers ; Reproductive Toxicology, vol. 29, no 1, janvier 2010, p. 10-24 (résumé).
  • Kan Usuda, Koichi Kono, Tomotaro Dote, Kaori Miyata, Hiroyuki Nishiura, Masashi Shimahara, Katsuichi Sugimoto (1998), Study on urine boron reference values of Japanese men: Use of confidence intervals as an indicator of exposure to boron compounds ; Science of The Total Environment, vol. 220, no 1, 1998-09-04, p. 45-53 (résumé).
  • Florencia Harari, Ana María Ronco, Gabriela Concha, Miguel Llanos, Margaretha Grandér, Francisca Castro, Brita Palm, Barbro Nermell, Marie Vahter (2012), Early-life exposure to lithium and boron from drinking water ; Reproductive Toxicology, vol. 34, no 4, décembre 2012, p. 552-560 (résumé).
  • Gianni Ciofani, Serena Danti, Delfo D’Alessandro, Stefania Moscato, Arianna Menciassi (2010), Assessing cytotoxicity of boron nitride nanotubes: Interference with the MTT assay ; Biochemical and Biophysical Research Communications, Vol. 394, no 2, 2 avril 2010, p. 405-411 (résumé).
  • Serena Del Turco, Gianni Ciofani, Valentina Cappello, Mauro Gemmi, Tiziana Cervelli, Chiara Saponaro, Simone Nitti, Barbara Mazzolai, Giuseppina Basta et Virgilio Mattoli (2013), Cytocompatibility evaluation of glycol-chitosan coated boron nitride nanotubes in human endothelial cells, Colloids and Surfaces B: Biointerfaces, vol. 111, 1er novembre 2013, p. 142-149 (résumé).
  • Gianni Ciofani, Serena Del Turco, Giada Graziana Genchi, Delfo D’Alessandro, Giuseppina Basta et Virgilio Mattoli (2012), Transferrin-conjugated boron nitride nanotubes: Protein grafting, characterization, and interaction with human endothelial cells ; International Journal of Pharmaceutics, vol. 436, No 1–2, 2012-10-15, p. 444-453 (résumé).
  • N. Hilal, G.J. Kim, C. Somerfield (2011), Boron removal from saline water: A comprehensive review ; Desalination, vol. 273, no 1, 2011-06-01, p. 23-35 (résumé).
  • Kha L. Tu, Long D. Nghiem, Allan R. Chivas (2010), Boron removal by reverse osmosis membranes in seawater desalination applications ; Separation and Purification Technology, vol. 75, no 2, 2010-10-13, p. 87-101 (résumé).
  • M. Bryjak, J. Wolska et N. Kabay (2008), Removal of boron from seawater by adsorption–membrane hybrid process: implementation and challenges ; Desalination, vol. 223, no 1–3, 2008-03-01, p. 57-62 (résumé).

sigmaaldrich.com (Global: 774th place; French: 825th place)

springer.com (Global: 182nd place; French: 214th place)

link.springer.com

  • (en) Princz J, Becker L, Scheffczyk A, Stephenson G, Scroggins, R, Moser T et Römbke J (2017). Ecotoxicity of boric acid in standard laboratory tests with plants and soil organisms, Ecotoxicology, 26(4), 471-481, résumé.

statista.com (Global: 1,214th place; French: 1,287th place)

fr.statista.com

usda.gov (Global: 512th place; French: 1,160th place)

fnic.nal.usda.gov

  • (en) Institute of Medicine; Food and Nutrition Board; Panel on Micronutrients; Subcommittees on Upper Reference Levels of Nutrients and of Interpretation and Use of Dietary Reference Intakes; Standing Committee on the Scientific Evaluation of Dietary Reference Intakes, Dietary Reference Intakes for Vitamin A, Vitamin K, Arsenic, Boron, Chromium, Copper, Iodine, Iron, Manganese, Molybdenum, Nickel, Silicon, Vanadium, and Zinc, , 800 p. (ISBN 9780309072793, DOI 10.17226/10026, lire en ligne), p. 512.

who.int (Global: 213th place; French: 282nd place)