Walsturz (German Wikipedia)

Analysis of information sources in references of the Wikipedia article "Walsturz" in German language version.

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doi.org

  • S. K. Gottfredi, R. Wilpiszeski, R. Lee & V. J. Orphan (2008): Temporal evolution of methane cycling and phylogenetic diversity of archaea in sediments from a deep-sea whale-fall in Monterey Canyon, California. ISME journal 2008 Feb; Vol. 2 (2), S. 204–208 doi:10.1038/ismej.2007.103
  • Der Mensch bricht ein Naturgesetz der Meere. Die maritime Biomasse war über 23 Zehnerpotenzen fast gleich verteilt – bis Fischerei und Walfang das Gefüge durcheinanderbrachten vom 19. November 2021 Max-Planck-Gesellschaft, abgerufen am 25. März 2023; A. Haag: Whale fall. In: Nature, Heft 433, 2005, S. 566–567. doi:10.1038/433566a
  • F. Juniper, B. D. Jameson, S. K. Juniper et al.: Can whale-fall studies inform human forensics? In: Science & Justice. Band 61 (5), September 2021, S. 459–466. doi:10.1016/j.scijus.2021.06.001
  • Q. Li, Y. Liu, G. Li, Z. Wang et al.: Review of the Impact of Whale Fall on Biodiversity in Deep-Sea Ecosystems. In: Frontiers in Ecology and Evolution. Issue 10, 2022, 885572 doi:10.3389/fevo.2022.885572
  • N. D. Higgs, C. Little & A. G. Glover: Bones as biofuel: a review of whale bone composition with implications for deep-sea biology and palaeoanthropology. In: Royal Society, Band 278, Nr. 1702, Januar 2011 doi:10.1098/rspb.2010.1267
  • C. R. Smith, A. G. Glover, T. Treude, N. D. Higgs & D. J. Amon (2015): Whale-Fall Ecosystems: Recent Insights into Ecology, Paleoecology, and Evolution. In: Annual Review of Marine Science. Band 7, 2015, S. 571–596 doi:10.1146/annurev-marine-010213-135144
  • M. McGann & C. K Paull (2022): Affinity of the benthic foraminifer Cassidulinoides parkeriana (Brady) for whale-falls: evidence from off western Vancouver Island, British Columbia, Canada. Micropaleontology. Nov 2022, Vol. 68 Issue 6, p569-586. 18p. doi:10.47894/mpal.68.6.03
  • Crispin T. S. Little: Life at the Bottom: The Prolific Afterlife of Whales. In: Scientific American, Issue 302, Volume 2, 2010, S. 78–82, 84. doi:10.1038/scientificamerican0210-78
  • M. McGann, L. Lundsten: Influence of an Upper Bathyal Whale-fall on Benthic Foraminifera of Monterey Canyon, California (USA). In: Micropaleontology. Band 65, 2019, Nr. 5, S. 435–448. doi:10.47894/mpal.65.5.04
  • J. Aguzzi, E. Fanelli, T. Ciuffardi, A. Schirone, et al.: Faunal activity rhythms influencing early community succession of an implanted whale carcass offshore Sagami Bay, Japan. In: Scientific Reports. Band 1, Nr. 8, 2018, S. 11163 doi:10.1038/s41598-018-29431-5
  • Y. Fujiwara, M. Kawato, T. Yamamoto et al.: Three-year investigations into sperm whale-fall ecosystems in Japan. In: Marine Ecology. Band 28, Nr. 1, März 2007, S. 219–232 doi:10.1111/j.1439-0485.2007.00150.x
  • S. Danise, S.Dominici, A. G. Glover, T. G. Dahlgren: Molluscs from a shallow-water whale-fall and their affinities with adjacent benthic communities on the Swedish west coast. In: Marine Biology Research. Band 10, Ausgabe 1, Januar 2014, 17451000 doi:10.1080/17451000.2013.793811
  • E. Ste-Marie, Y. Y. Watanabe, J. M. Semmens et al.: A first look at the metabolic rate of Greenland sharks (Somniosus microcephalus) in the Canadian Arctic. In: Science Report 10, 19297 (2020) doi:10.1038/s41598-020-76371-0

hawaii.edu

soest.hawaii.edu

mapress.com

mpg.de

noaa.gov

oceanservice.noaa.gov

nzz.ch

senckenberg.de

museumfrankfurt.senckenberg.de

si.edu

ocean.si.edu

stern.de

theguardian.com

zeit.de