2013: Senckenberg Award: Difference between revisions

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=<font color=orange>Alexander von Humboldt-Gedächtnispreis 2013</font>=
=<font color=orange>Alexander von Humboldt-Gedächtnispreis 2013</font>=
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[Weitere [[All Mark Benecke Publications|Publikationen von MB]]]
[Articles [[All Mark Benecke Publications|Artikel from MB]]] [Articles [http://wiki2.benecke.com/index.php?title=Media#Interviews_.26_Articles <font color=lightgrey>about MB</font>]]<br>
 
''Please note: This is the original english text of the press release  ;) ''
 
<html><a href="http://wiki2.benecke.com/images/c/c0/SENCKENBERG_world_of_biodiversity_Preise_Ehrungen_Alexander_von_Humboldt_Gedaechtnispreis_2014.pdf" target="_blank"><img src="http://wiki2.benecke.com/images/d/d5/SENCKENBERG_world_of_biodiversity_Preise_Ehrungen_Alexander_von_Humboldt_Gedaechtnispreis_2014_preview.jpg" border="0" height="150" align="middle"><figcaption>Click for PDF!</figcaption></a></html>




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<font color=orange>'''Float, explode or sink: postmortem fate of lung-breathing marine vertebrates'''</font><br>
<font color=orange>'''Float, explode or sink: postmortem fate of lung-breathing marine vertebrates'''</font><br>
Volume 92, Issue 1, pp 67-81. 10.1007/s12549-011-0067-z<br><br>
Volume 92, Issue 1, pp 67-81. 10.1007/s12549-011-0067-z<br><br>
----
<center>[https://www.researchgate.net/publication/235972915_Float_explode_or_sink_Postmortem_fate_of_lung-breathing_marine_vertebrates <font color=lightgrey>&rarr; GET THE ARTICLE HERE &larr;</font>]</center>
----




Abstract<br>
Abstract<br>
What happens after the death of a marine tetrapod in seawater? Palaeontologists and neontologists have claimed that large lung-breathing marine tetrapods such as ichthyosaurs had a lower density than seawater, implying that their carcasses floated at the surface after death and sank subsequently after leakage of putrefaction gases (or ‘‘carcass explosions’’). Such explosions would thus account for the skeletal disarticulation observed frequently in the fossil record. We examined the taphonomy and sedimentary environment of numerous ichthyosaur skeletons and compared them to living marine tetrapods, principally cetaceans, and measured abdominal pressures in human carcasses. Our data and a review of the literature demonstrate that carcasses sink and do not explode (and spread skeletal elements). We argue that the normally slightly negatively buoyant carcasses of ichthyosaurs would have sunk to the sea floor and risen to the surface only when they remained in shallow water above a certain temperature and at a low scavenging rate. Once surfaced, prolonged floating may have occurred and a carcass have decomposed gradually. Our conclusions are of significance to the understanding of the inclusion of carcasses of lung-breathing vertebrates in marine nutrient recycling. The postmortem fate has essential implications for the interpretation of vertebrate fossil preservation (the existence of complete, disarticulated fossil skeletons is not explained by previous hypotheses), palaeobathymetry, the physiology of modern marine lung-breathing tetrapods and their conservation, and the recovery of human bodies from seawater.<br>


What happens after the death of a marine tetrapod in seawater? Palaeontologists and neontologists have claimed that large lung-breathing marine tetrapods such as ichthyosaurs had a lower density than seawater, implying that their carcasses floated at the surface after death and sank subsequently after leakage of putrefaction gases (or ‘‘carcass explosions’’). Such explosions would thus account for the skeletal disarticulation observed frequently in the fossil record. We examined the taphonomy and sedimentary environment of numerous ichthyosaur skeletons and compared them to living marine tetrapods, principally cetaceans, and measured abdominal pressures in human carcasses. Our data and a review of the literature demonstrate that carcasses sink and do not explode (and spread skeletal elements).<br>
We argue that the normally slightly negatively buoyant carcasses of ichthyosaurs would have sunk to the sea floor and risen to the surface only when they remained in shallow water above a certain temperature and at a low scavenging rate. Once surfaced, prolonged floating may have occurred and a carcass have decomposed gradually. Our conclusions are of significance to the understanding of the inclusion of carcasses of lung-breathing vertebrates in marine nutrient recycling. The postmortem fate has essential implications for the interpretation of vertebrate fossil preservation (the existence of complete, disarticulated fossil skeletons is not explained by previous hypotheses), palaeobathymetry, the physiology of modern marine lung-breathing tetrapods and their conservation, and the recovery of human bodies from seawater.<br>
Articles published in this journal can be honoured with the Alexander von Humboldt- Gedächtnispreis (6.000 Euros).<br>


Articles published in this journal can be honoured with the Alexander von Humboldt- Gedächtnispreis (6,000 Euros).<br>


One of the former Honorary Presidents of the Senckenberg Gesellschaft für Naturforschung, the late Dr. Hanns Christian Schroeder-Hohenwarth, donated the "Alexander von Humboldt-Gedächtnispreis" for the best article in one of the Senckenberg journals.<br>
One of the former Honorary Presidents of the Senckenberg Gesellschaft für Naturforschung, the late Dr. Hanns Christian Schroeder-Hohenwarth, donated the "Alexander von Humboldt-Gedächtnispreis" for the best article in one of the Senckenberg journals.<br>
Each year, one or two outstanding articles will be chosen by the editorial board of each Senckenberg journal. The Senckenberg advisory board then selects up to four articles which will be forwarded to an independent, international scientific board. This board evaluates the submitted articles and will finally select one article for the price.<br>
Each year, one or two outstanding articles will be chosen by the editorial board of each Senckenberg journal. The Senckenberg advisory board then selects up to four articles which will be forwarded to an independent, international scientific board. This board evaluates the submitted articles and will finally select one article for the price.<br>




==<font color=orange>Suggested Papers</font>==
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</i><br>
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Latest revision as of 14:13, 4 March 2020

Senckenberg Frankfurt Logo.jpg

Alexander von Humboldt-Gedächtnispreis 2013

Float, explode or sink: postmortem fate of lung-breathing marine vertebrates

[Articles Artikel from MB] [Articles about MB]

Please note: This is the original english text of the press release  ;)

Click for PDF!


Authors of outstanding article receive Senckenberg Award!

We are pleased to announce, that the Alexander von Humboldt-Gedächtnispreis 2013 was awarded to authors of the following article, published in the special issue of Palaeobiodiversity and Palaeoenvironments entitled Taphonomic processes in terrestrial and marine environments (Wuttke M, Reisdorf AG (eds)):

Achim G. Reisdorf, Roman Bux, Daniel Wyler, Mark Benecke, Christian Klug, Michael W. Maisch, Peter Fornaro, Andreas Wetzel (2012):
Float, explode or sink: postmortem fate of lung-breathing marine vertebrates
Volume 92, Issue 1, pp 67-81. 10.1007/s12549-011-0067-z



→ GET THE ARTICLE HERE ←


Abstract

What happens after the death of a marine tetrapod in seawater? Palaeontologists and neontologists have claimed that large lung-breathing marine tetrapods such as ichthyosaurs had a lower density than seawater, implying that their carcasses floated at the surface after death and sank subsequently after leakage of putrefaction gases (or ‘‘carcass explosions’’). Such explosions would thus account for the skeletal disarticulation observed frequently in the fossil record. We examined the taphonomy and sedimentary environment of numerous ichthyosaur skeletons and compared them to living marine tetrapods, principally cetaceans, and measured abdominal pressures in human carcasses. Our data and a review of the literature demonstrate that carcasses sink and do not explode (and spread skeletal elements).


We argue that the normally slightly negatively buoyant carcasses of ichthyosaurs would have sunk to the sea floor and risen to the surface only when they remained in shallow water above a certain temperature and at a low scavenging rate. Once surfaced, prolonged floating may have occurred and a carcass have decomposed gradually. Our conclusions are of significance to the understanding of the inclusion of carcasses of lung-breathing vertebrates in marine nutrient recycling. The postmortem fate has essential implications for the interpretation of vertebrate fossil preservation (the existence of complete, disarticulated fossil skeletons is not explained by previous hypotheses), palaeobathymetry, the physiology of modern marine lung-breathing tetrapods and their conservation, and the recovery of human bodies from seawater.


Articles published in this journal can be honoured with the Alexander von Humboldt- Gedächtnispreis (6.000 Euros).


One of the former Honorary Presidents of the Senckenberg Gesellschaft für Naturforschung, the late Dr. Hanns Christian Schroeder-Hohenwarth, donated the "Alexander von Humboldt-Gedächtnispreis" for the best article in one of the Senckenberg journals.


Each year, one or two outstanding articles will be chosen by the editorial board of each Senckenberg journal. The Senckenberg advisory board then selects up to four articles which will be forwarded to an independent, international scientific board. This board evaluates the submitted articles and will finally select one article for the price.


Suggested Papers




Dr. rer. medic. Mark Benecke · Diplombiologe (verliehen in Deutschland) · Öffentlich bestellter und vereidigter Sachverständiger für kriminaltechnische Sicherung, Untersuchung u. Auswertung von biologischen Spuren (IHK Köln) · Landsberg-Str. 16, 50678 Köln, Deutschland, E-Mail: forensic@benecke.com · www.benecke.com · Umsatzsteueridentifikationsnummer: ID: DE212749258 · Aufsichtsbehörde: Industrie- und Handelskammer zu Köln, Unter Sachsenhausen 10-26, 50667 Köln, Deutschland · Fallbearbeitung und Termine nur auf echtem Papier. Absprachen per E-mail sind nur vorläufige Gedanken und nicht bindend. 🗺 Dr. Mark Benecke, M. Sc., Ph.D. · Certified & Sworn In Forensic Biologist · International Forensic Research & Consulting · Postfach 250411 · 50520 Cologne · Germany · Text SMS in criminalistic emergencies (never call me): +49.171.177.1273 · Anonymous calls & suppressed numbers will never be answered. · Dies ist eine Notfall-Nummer für SMS in aktuellen, kriminalistischen Notfällen). · Rufen Sie niemals an. · If it is not an actual emergency, send an e-mail. · If it is an actual emergency, send a text message (SMS) · Never call. · Facebook Fan Site · Benecke Homepage · Instagram Fan Page · Datenschutz-Erklärung · Impressum · Archive Page · Kein Kontakt über soziale Netzwerke. · Never contact me via social networks since I never read messages & comments there.