Geological controls on life on the Antarctic sea floor

The Antarctic continental margin has been shaped by geological history and modern processes which in turn influence the benthic communities. Integrating bathymetry, geomorphology, sediment samples and quantitative analysis of sea floorvideo and still images reveals some of these influences. The Anta...

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Main Authors: O'Brien, Philip E., Post, Alex, Smith, Jodie, Beaman, Robin
Format: Conference Object
Language:English
Published: 2012
Subjects:
Online Access:https://researchers.mq.edu.au/en/publications/9ccfd724-5a0a-4ec6-a208-356e28035993
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spelling ftmacquarieunicr:oai:https://researchers.mq.edu.au:publications/9ccfd724-5a0a-4ec6-a208-356e28035993 2023-05-15T13:54:02+02:00 Geological controls on life on the Antarctic sea floor O'Brien, Philip E. Post, Alex Smith, Jodie Beaman, Robin 2012 https://researchers.mq.edu.au/en/publications/9ccfd724-5a0a-4ec6-a208-356e28035993 eng eng info:eu-repo/semantics/restrictedAccess O'Brien , P E , Post , A , Smith , J & Beaman , R 2012 , ' Geological controls on life on the Antarctic sea floor ' , International Geological Congress (34th : 2012) , Brisbane , Australia , 5/08/12 - 10/08/12 pp. 4016 . /dk/atira/pure/mqoutputs/29 E3 - Conference Publication - published abstract or extract of paper conferenceObject 2012 ftmacquarieunicr 2021-12-26T12:37:11Z The Antarctic continental margin has been shaped by geological history and modern processes which in turn influence the benthic communities. Integrating bathymetry, geomorphology, sediment samples and quantitative analysis of sea floorvideo and still images reveals some of these influences. The Antarctic shelf comprises shallow banks separated by inner shelf deeps and cross-shelf valleys. These deeper regions are the primary sites for accumulation of phytodetritus-rich ooze, though many areas are floored by compact subglacial sediments or exposed rock. Bank processes are dominated by iceberg scouring. Quantitative classification of video transects allows multivariant analysis that relates small scale relief and estimates of grain size to biological communities. It shows a complex set of relationships with rocky substrates colonised by bryozoa, sponges and colonial tunicates, while coarse sediment are colonised by sponges and bryozoa. Deep, flat sediment surfaces are colonised by sponges and tunicates and bryozoa, sponges and soft corals colonise the rough sea floor produced by iceberg scours. Muddy sediments are inhabited by infauna, holothurians and shrimps. Most fine sediment is found in the shelf deeps but they also include areas of harder flat sediment probably formed as compact glacial till. The similarity of faunas on iceberg scoured sediment and harder substrates probably reflects compaction of the muddy sea floor sediment by icebergs. Where iceberg scoured sediment is sandy and less cohesive, such as the shallow sea floor around the Vestfold Hills, the scoured surface is flatter and the biota is dominated by infauna such as burrowing bivalves. Conference Object Antarc* Antarctic Iceberg* Macquarie University Research Portal Antarctic The Antarctic Vestfold Hills Vestfold
institution Open Polar
collection Macquarie University Research Portal
op_collection_id ftmacquarieunicr
language English
topic /dk/atira/pure/mqoutputs/29
E3 - Conference Publication - published abstract or extract of paper
spellingShingle /dk/atira/pure/mqoutputs/29
E3 - Conference Publication - published abstract or extract of paper
O'Brien, Philip E.
Post, Alex
Smith, Jodie
Beaman, Robin
Geological controls on life on the Antarctic sea floor
topic_facet /dk/atira/pure/mqoutputs/29
E3 - Conference Publication - published abstract or extract of paper
description The Antarctic continental margin has been shaped by geological history and modern processes which in turn influence the benthic communities. Integrating bathymetry, geomorphology, sediment samples and quantitative analysis of sea floorvideo and still images reveals some of these influences. The Antarctic shelf comprises shallow banks separated by inner shelf deeps and cross-shelf valleys. These deeper regions are the primary sites for accumulation of phytodetritus-rich ooze, though many areas are floored by compact subglacial sediments or exposed rock. Bank processes are dominated by iceberg scouring. Quantitative classification of video transects allows multivariant analysis that relates small scale relief and estimates of grain size to biological communities. It shows a complex set of relationships with rocky substrates colonised by bryozoa, sponges and colonial tunicates, while coarse sediment are colonised by sponges and bryozoa. Deep, flat sediment surfaces are colonised by sponges and tunicates and bryozoa, sponges and soft corals colonise the rough sea floor produced by iceberg scours. Muddy sediments are inhabited by infauna, holothurians and shrimps. Most fine sediment is found in the shelf deeps but they also include areas of harder flat sediment probably formed as compact glacial till. The similarity of faunas on iceberg scoured sediment and harder substrates probably reflects compaction of the muddy sea floor sediment by icebergs. Where iceberg scoured sediment is sandy and less cohesive, such as the shallow sea floor around the Vestfold Hills, the scoured surface is flatter and the biota is dominated by infauna such as burrowing bivalves.
format Conference Object
author O'Brien, Philip E.
Post, Alex
Smith, Jodie
Beaman, Robin
author_facet O'Brien, Philip E.
Post, Alex
Smith, Jodie
Beaman, Robin
author_sort O'Brien, Philip E.
title Geological controls on life on the Antarctic sea floor
title_short Geological controls on life on the Antarctic sea floor
title_full Geological controls on life on the Antarctic sea floor
title_fullStr Geological controls on life on the Antarctic sea floor
title_full_unstemmed Geological controls on life on the Antarctic sea floor
title_sort geological controls on life on the antarctic sea floor
publishDate 2012
url https://researchers.mq.edu.au/en/publications/9ccfd724-5a0a-4ec6-a208-356e28035993
geographic Antarctic
The Antarctic
Vestfold Hills
Vestfold
geographic_facet Antarctic
The Antarctic
Vestfold Hills
Vestfold
genre Antarc*
Antarctic
Iceberg*
genre_facet Antarc*
Antarctic
Iceberg*
op_source O'Brien , P E , Post , A , Smith , J & Beaman , R 2012 , ' Geological controls on life on the Antarctic sea floor ' , International Geological Congress (34th : 2012) , Brisbane , Australia , 5/08/12 - 10/08/12 pp. 4016 .
op_rights info:eu-repo/semantics/restrictedAccess
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