Marine ecological field methods: a guide for marine biologists and fisheries scientists
Gespeichert in:
Weitere Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Hoboken, NJ
Wiley Blackwell
2018
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis Klappentext |
Beschreibung: | Includes bibliographical references and index |
Beschreibung: | xv, 218 Seiten |
ISBN: | 9781119184300 |
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245 | 1 | 0 | |a Marine ecological field methods |b a guide for marine biologists and fisheries scientists |c edited by Anne Gro Vea Salvanes, Department of Biology, University of Bergen, Bergen, Norway, Jennifer Devine, Institute of Marine Research (IMR), Bergen, Norway, Knut Helge Jensen, Department of Biology, University of Bergen, Bergen, Norway, Jon Thomassen Hestetun, Department of Biology, University of Bergen, Bergen, Norway, Kjersti Sjøtun, Department of Biology, University of Bergen, Bergen, Norway, Henrik Glenner, Department of Biology, University of Bergen, Bergen, Norway |
264 | 1 | |a Hoboken, NJ |b Wiley Blackwell |c 2018 | |
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Datensatz im Suchindex
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adam_text | Contents
List of Contributors xi
Foreword xiii
Acknowledgements xv
1 The Marine Environment 1
Jon Thomassen Hestetun*, Kjersti Sjotun*, Dag L Aksnes, Lars Asplin, Jennifer
DevineTone Falkenhaug, Henrik Gienner, Knut Helge Jensen and Anne Gro Vea
Salvanes
* Lead authors; co-authors in alphabetical order
1.1 Marine Habitats 4
1.1.1 The Pelagic and Benthic Realms 4
1.2 The Coastal and Fjord Biotopes 5
1.2.1 The Littoral and Sublittoral Habitats 6
1.2.2 The Continental Shelf and Slope 8
1.2.3 The Deep Ocean 9
1.3 Physical Characteristics of the Pelagic System 10
1.3.1 The Light Environment 15
1.3.1.1 Inherent Optical Properties: Scattering and Absorption
Coefficients 15
1.3.1.2 Visibility, Sighting Distance, and the Beam Attenuation
Coefficient 16
1.3.1.3 Light Penetration and the Attenuation Coefficient of Diffuse Light 16
1.3.1.4 Photosynthetically Active Radiation (PAR) 17
1.4 Temperate Marine Communities - Environment and Organisms 18
1.4.1 Littoral Organisms 18
1.4.1.1 Species, Zonation, and Communities 18
1.4.2 Sublittoral Organisms 20
1.4.3 Demersal and Benthic Organisms 21
1.4.3.1 Bottom-associated Organisms 21
1.4.3.2 Continental Shelf and Slope Benthos 22
1.4.3.3 Benthic Fish of the Continental Shelf and Slope 23
1.4.3.4 Deep Bottom Fish of Fjords and the Norwegian Deeps 24
1.4.4 Pelagic Organisms 24
1.4.4.1 Plankton and Micronekton 24
1.4.4.2 Pelagic Fish 28
vi | Contents
1.4.43 Mesopelagic Organisms 29
1.4.4.4 Deep-pelagic Fish 30
References 30
2
2.1
2.1.1
2.1.2
2.2
2.2.1
2.3
2.3.1
2.3.1.1
2.3.1.2
2.3.1.3
2.4
2.4.1
2.4.1.1
2.4.1.2
2.4.1.3
2.4.1.4
2.4.1.5
2.4.1.6
2.4.1.7
2.4.1.8
2.4.1.9
2.4.1.10
2.4.2
2.4.2.1
2.4.2.2
2.4.2.3
2.4.2.4
2.4.2.5
2.4.2.6
2.4.2.7
2.5
2.5.1
2.5.1.1
2.5.1.2
2.5.1.3
2.5.1.4
Planning Marine Field Studies 33
Jennifer Devine*, Keno Ferter, Henrik Glenner, Jon Thomassen Hestetun, Knut
Helge Jensen, Leif Nottestad, Michael Pennington, David John Rees, Anne Gro
Vea Salvanes, Kjersti Sjotun and Arved Staby
* Lead author; co-authors in alphabetical order
Survey and Sampling Design 33
Survey Design 35
Sampling at a Station 36
Littoral Survey Design 38
Sampling Methods 40
Benthos Survey Design 40
Mapping the Biodiversity of Sognefjord - An Example of a
Multi-sampling Approach 42
The Objectives of the Project 43
Sampling Strategy and Sampling Design 43
Methods and Sampling Activities 44
Oceanic Survey Design 44
Pelagic Trawl Survey for Abundance Estimation of Mackerel 45
Background 45
Primary Objectives 45
Survey Design 46
Equipment 47
Sampling 47
Assumptions 47
Computations 47
Results 48
Potential Uncertainties and Bias 48
What are the Data Used for? 48
Bottom Trawl Surveys to Monitor Demersal Fish 49
Background 49
Primary Objectives 49
Survey Design 50
Equipment 51
Assumptions 52
Computations 53
What are the Data Used for? 53
Ecological Process Studies 54
Studying Diel Vertical Migration (DVM) of Mesopelagic Organisms
Using Acoustics 54
Background 54
Primary Objectives 55
Survey Design 56
Equipment 56
Contents
2.5.1.5
2.5.1.6
2.5.1.7
2.5.1.8
2.5.1.9
2.5.1.10
2.5.2
2.5.2.1
2.5.2.2
2.5.2.3
2.5.2.4
2.5.2.5
2.5.2.6
2.5.2.7
2.5.2.8
3
3.1
3.1.1
3.1.1.1
3.1.1.2
3.1.1.3
3.1.1.4
3.1.1.5
3.1.2
3.1.2.1
3.1.2.2
3.1.2.3
3.1.2.4
3.1.2.5
3.1.2.6
3.1.2.7
3.1.3
3.1.3.1
3.1.3.2
3.1.3.3
3.1.3.4
3.1.4
3.1.4.1
3.1.4.2
Sampling 57
Assumptions 58
Computations 59
Results 61
Potential Uncertainties and Bias 61
What are the Data Used for? 63
Studying Barotrauma Impacts in Physoclistous Fish Species 63
Background 63
Primary Objectives 64
Survey Design 64
Equipment 66
Assumptions 66
Computations 66
Results 66
What are the Data Used for? 67
References 69
Further Reading 73
Sampling Gears and Equipment 75
Anne Gro Vea Salvanes*, Henrik Gienner*, Dog L Aksnes, LarsAspTtn, Martin
Dahl, Jennifer Devine, Arill Engas, Svein Rune Ergo, Tone Falkenhaug, Keno
Ferter, Jon Thomassen Hestetun, Knut Hefge Jensen, Egil Ona, Shale Rosen
and Kjersti Sjotun
* Lead authors; co-authors in alphabetical order
Sampling Organisms 75
Direct Observations 75
Littoral Zone Methods 75
ROV Sampling 78
Video/image-based Methods 79
Manned Submersibles 79
Scuba Diving 79
Active Gears 79
Sampling Trawls (Midwater and Bottom) 79
Beach Seine 85
Plankton Nets 86
Multiple Nets 89
Sledges and Dredges 91
Grabs and Corers 94
Water Samplers 95
Passive Gears 98
Gillnets and Entangling Nets 98
Pots 99
Fyke Nets 100
Hook-and-line 101
Remote Sensing 101
Acoustics 101
A UVs 107
Con ten fs
3.1.4.3 Satellite or Infrared Light 107
3.2 Sampling the Physical Environment 110
3.2.1 Conductivity, Salinity, Temperature, Oxygen 110
3.2.1.1 CTD 110
3.2.1.2 Weatherstation 111
3.2.2 Light 111
3.2.2.1 Secchi Disc 111
3.2.2.2 Transmission Meters 112
3.2.2.3 PAR Sensors 112
3.2.2.4 Spectroradiometers 113
3.2.3 Currents (Direction, Speed) 113
3.2.3.1 ADCP (Acoustic Doppler Current Profiler) 113
3.2.3.2 LADCP (Lowered Acoustic Doppler Current Profiler) 116
3.2.3.3 Small Handheld ADCPs 116
3.2.3.4 Moorings with ADCPs 117
3.2.4 Sediment 117
3.3 Suitability of Equipment in Given Habitat Types 118
References 118
4 Sorting Specimens and Preserving Materials 121
Anne Gro Veo Salvanes*, Henrik Glenner*, Jennifer Devine, Jon Thomassen
Hestetun, Mette Hordnes, Knut Heige Jensen, Frank Midtoy and Kjersti Sjotun
* Lead authors; co-authors in alphabetical order
4.1 Sampling Diary 121
4.2 Sorting and Preserving Littoral Collections 121
4.3 Sorting Zooplankton 122
4.3.1 Procedure for Processing Small Zooplankton Samples
for Total Biomass 124
4.4 Sieving and Sorting Benthic Samples 125
4.5 Fish and Nekton 126
4.5.1 Trawl Samples 126
4.5.1.1 Sorting a Codend Sample and Subsampling 129
4.5.2 Sorting Hook-and-Line Samples 137
4.6 Data Records 137
4.6.1 Station Records and Species Composition 138
4.6.2 Detailed Individual Measurements 142
4.6.3 Information Transfer to Data Files 142
4.7 Samples for Storage 144
4.7.1 Fixatives 145
4.7.2 Health and Security When Using Fixatives 147
References 149
5 Data Analysis 151
Knut Heige Jensen*, Jennifer Devine, Henrik Glenner, Jon Thomassen Hestetun,
Anne Gro Vea Salvanes and Kjersti Sjotun
* Lead authors; co-authors in alphabetical order
5.1 Scripts 151
5.2 Setting the Working Directory 152
IT) If)
Contents
ix
.3 Importing Data 153
A Working with Data 155
5.4.1 Error Checking 155
5.4.2 Saving Data 159
5.5 Data Exploration and Statistical Testing 160
5.5.1 Analysis of Marine Communities 160
5.5.1.1 The Bray-Curtis Dissimilarity Index 163
5.5.2 Physical Environment 167
5.5.3 Zooplankton Samples 170
5.5.4 Fish and Nekton 175
5.5.4.1 Hook-and-line 175
5.5.4.2 Trawls 175
5.5.5 Mapping 200
5.5.5.1 Making Maps with R 200
References 206
Index 209
A comprehensive, clear, and detailed guide to procedures for
conducting marine ecological field studies
Marine Ecological Field Methods is a comprehensive resource that offers the
most relevant sampling methodologies for quantitative and qualitative studies of
mesopelagic, demersal, littoral, and soft-bottom organisms, as well as relevant
physical parameters. The authors describe how various sampling gears work, how to
operate them, their limitations, guides on sorting and measuring collected organisms,
and how to deal with subsamples of large catches. The text also explains how to use
acoustic equipment for monitoring aggregations of organisms, for example fish shoals,
as well as the use of sensors for registering environmental variables such as salinity,
temperature, oxygen, and light.
The text contains cutting-edge research techniques that are in their final stages
of development for use in research surveys. Marine Ecological Field Methods is
designed to help with the entire procedure for conducting a field study, including the
generation of hypotheses, planning field collection of data, conducting field work,
data exploration and statistical analysis with the use of R, and presentation of results
in a final report. This essential resource:
• Covers a wide range of techniques and methods for the marine environment
• Includes tried and trusted methodologies and techniques from a team of noted
experts in the field
• Contains information on sampling equipment ranging from those that are useful
in the littoral zone to shallow nearshore areas, including bottles, secchi discs,
and gillnets, and finally large trawls, benthic sleds, ROV and advanced
technologies for remote sensing in the open ocean
• Explores the step-by-step procedures for conducting a field study, from
formulating hypotheses to the process of registering and reporting results
Written for students and professionals in the field, this vital resource describes
marine ecological sampling equipment, methods and analysis, ranging from physical
parameters to fish, microalgae, zooplankton, benthos and macroalgae.
About the Editors
ANNE GRO VEA SALVANES, JENNIFER DEVINE, KNUT HELGE JENSEN,
JON THOMASSEN HESTETUN, KJERSTI SJ0TUN, and HENRIK GLENNER,
University of Bergen, Norway
|
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dewey-raw | 577.7 |
dewey-search | 577.7 |
dewey-sort | 3577.7 |
dewey-tens | 570 - Biology |
discipline | Biologie |
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spelling | Marine ecological field methods a guide for marine biologists and fisheries scientists edited by Anne Gro Vea Salvanes, Department of Biology, University of Bergen, Bergen, Norway, Jennifer Devine, Institute of Marine Research (IMR), Bergen, Norway, Knut Helge Jensen, Department of Biology, University of Bergen, Bergen, Norway, Jon Thomassen Hestetun, Department of Biology, University of Bergen, Bergen, Norway, Kjersti Sjøtun, Department of Biology, University of Bergen, Bergen, Norway, Henrik Glenner, Department of Biology, University of Bergen, Bergen, Norway Hoboken, NJ Wiley Blackwell 2018 xv, 218 Seiten txt rdacontent n rdamedia nc rdacarrier Includes bibliographical references and index Marine ecology Methodology Meeresökologie (DE-588)4195671-0 gnd rswk-swf Methode (DE-588)4038971-6 gnd rswk-swf Meeresökologie (DE-588)4195671-0 s Methode (DE-588)4038971-6 s DE-604 Gro Vea Salvanes, Anne (DE-588)1152390406 edt Erscheint auch als Online-Ausgabe Marine ecological field methods Hoboken, NJ : Wiley, [2018] 9781119184355 Digitalisierung UB Bayreuth - ADAM Catalogue Enrichment application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=030121531&sequence=000003&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis Digitalisierung UB Bayreuth - ADAM Catalogue Enrichment application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=030121531&sequence=000004&line_number=0002&func_code=DB_RECORDS&service_type=MEDIA Klappentext |
spellingShingle | Marine ecological field methods a guide for marine biologists and fisheries scientists Marine ecology Methodology Meeresökologie (DE-588)4195671-0 gnd Methode (DE-588)4038971-6 gnd |
subject_GND | (DE-588)4195671-0 (DE-588)4038971-6 |
title | Marine ecological field methods a guide for marine biologists and fisheries scientists |
title_auth | Marine ecological field methods a guide for marine biologists and fisheries scientists |
title_exact_search | Marine ecological field methods a guide for marine biologists and fisheries scientists |
title_full | Marine ecological field methods a guide for marine biologists and fisheries scientists edited by Anne Gro Vea Salvanes, Department of Biology, University of Bergen, Bergen, Norway, Jennifer Devine, Institute of Marine Research (IMR), Bergen, Norway, Knut Helge Jensen, Department of Biology, University of Bergen, Bergen, Norway, Jon Thomassen Hestetun, Department of Biology, University of Bergen, Bergen, Norway, Kjersti Sjøtun, Department of Biology, University of Bergen, Bergen, Norway, Henrik Glenner, Department of Biology, University of Bergen, Bergen, Norway |
title_fullStr | Marine ecological field methods a guide for marine biologists and fisheries scientists edited by Anne Gro Vea Salvanes, Department of Biology, University of Bergen, Bergen, Norway, Jennifer Devine, Institute of Marine Research (IMR), Bergen, Norway, Knut Helge Jensen, Department of Biology, University of Bergen, Bergen, Norway, Jon Thomassen Hestetun, Department of Biology, University of Bergen, Bergen, Norway, Kjersti Sjøtun, Department of Biology, University of Bergen, Bergen, Norway, Henrik Glenner, Department of Biology, University of Bergen, Bergen, Norway |
title_full_unstemmed | Marine ecological field methods a guide for marine biologists and fisheries scientists edited by Anne Gro Vea Salvanes, Department of Biology, University of Bergen, Bergen, Norway, Jennifer Devine, Institute of Marine Research (IMR), Bergen, Norway, Knut Helge Jensen, Department of Biology, University of Bergen, Bergen, Norway, Jon Thomassen Hestetun, Department of Biology, University of Bergen, Bergen, Norway, Kjersti Sjøtun, Department of Biology, University of Bergen, Bergen, Norway, Henrik Glenner, Department of Biology, University of Bergen, Bergen, Norway |
title_short | Marine ecological field methods |
title_sort | marine ecological field methods a guide for marine biologists and fisheries scientists |
title_sub | a guide for marine biologists and fisheries scientists |
topic | Marine ecology Methodology Meeresökologie (DE-588)4195671-0 gnd Methode (DE-588)4038971-6 gnd |
topic_facet | Marine ecology Methodology Meeresökologie Methode |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=030121531&sequence=000003&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=030121531&sequence=000004&line_number=0002&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT groveasalvanesanne marineecologicalfieldmethodsaguideformarinebiologistsandfisheriesscientists |