Articles | Volume 7, issue 2
https://doi.org/10.5194/essd-7-203-2015
© Author(s) 2015. This work is distributed under
the Creative Commons Attribution 3.0 License.
the Creative Commons Attribution 3.0 License.
https://doi.org/10.5194/essd-7-203-2015
© Author(s) 2015. This work is distributed under
the Creative Commons Attribution 3.0 License.
the Creative Commons Attribution 3.0 License.
Woodland Survey of Great Britain 1971–2001
Centre for Ecology and Hydrology, Lancaster Environment Centre, Bailrigg, Lancaster, LA1 4AP, UK
S. M. Smart
Centre for Ecology and Hydrology, Lancaster Environment Centre, Bailrigg, Lancaster, LA1 4AP, UK
R. G. H. Bunce
Estonian University of Life Sciences, Kreuzwaldi 5, 51014 Tartu, Estonia
Related authors
Christopher G. Marston, Aneurin W. O'Neil, R. Daniel Morton, Claire M. Wood, and Clare S. Rowland
Earth Syst. Sci. Data, 15, 4631–4649, https://doi.org/10.5194/essd-15-4631-2023, https://doi.org/10.5194/essd-15-4631-2023, 2023
Short summary
Short summary
The UK Land Cover Map 2021 (LCM2021) is a UK-wide land cover data set, with 21- and 10-class versions. It is intended to support a broad range of UK environmental research, including ecological and hydrological research. LCM2021 was produced by classifying Sentinel-2 satellite imagery. LCM2021 is distributed as a suite of products to facilitate easy use for a range of applications. To support research at different spatial scales it includes 10 m, 25 m and 1 km resolution products.
Claire M. Wood, Jamie Alison, Marc S. Botham, Annette Burden, François Edwards, R. Angus Garbutt, Paul B. L. George, Peter A. Henrys, Russel Hobson, Susan Jarvis, Patrick Keenan, Aidan M. Keith, Inma Lebron, Lindsay C. Maskell, Lisa R. Norton, David A. Robinson, Fiona M. Seaton, Peter Scarlett, Gavin M. Siriwardena, James Skates, Simon M. Smart, Bronwen Williams, and Bridget A. Emmett
Earth Syst. Sci. Data, 13, 4155–4173, https://doi.org/10.5194/essd-13-4155-2021, https://doi.org/10.5194/essd-13-4155-2021, 2021
Short summary
Short summary
The Glastir Monitoring and Evaluation Programme (GMEP) ran from 2013 until 2016, as a national programme of ecological study in Wales. GMEP included a large field survey component, collecting data on a range of elements including vegetation, land cover and land use, soils, freshwater, birds, and insect pollinators. GMEP was designed so that surveys could be repeated at regular intervals to monitor the Welsh environment. Data from GMEP have been used to address many applied policy questions.
Claire M. Wood, Robert G. H. Bunce, Lisa R. Norton, Simon M. Smart, and Colin J. Barr
Earth Syst. Sci. Data, 10, 899–918, https://doi.org/10.5194/essd-10-899-2018, https://doi.org/10.5194/essd-10-899-2018, 2018
Short summary
Short summary
In the 1990s, ecological survey work was carried out in English landscapes containing semi-natural habitats that were perceived to be under threat, or which represented areas of concern ("key habitats"), complementing the national Countryside Survey of Great Britain. The landscapes were lowland heath, chalk and limestone grasslands, coasts and uplands. Standardised procedures were used to record ecological data from representative 1 km squares throughout England in 1992 and 1993.
Claire M. Wood, Robert G. H. Bunce, Lisa R. Norton, Lindsay C. Maskell, Simon M. Smart, W. Andrew Scott, Peter A. Henrys, David C. Howard, Simon M. Wright, Michael J. Brown, Rod J. Scott, Rick C. Stuart, and John W. Watkins
Earth Syst. Sci. Data, 10, 745–763, https://doi.org/10.5194/essd-10-745-2018, https://doi.org/10.5194/essd-10-745-2018, 2018
Short summary
Short summary
The Countryside Survey (CS) of Great Britain consists of an extensive set of repeated ecological measurements at a national scale, covering a time span of 29 years. CS was first undertaken in 1978 to monitor ecological and land use change in Britain using standardised procedures for recording ecological data from representative 1 km squares throughout the country. The mapping of ecological landscape elements has subsequently been repeated in 1984, 1990, 1998 and 2007.
Claire M. Wood, Simon M. Smart, Robert G. H. Bunce, Lisa R. Norton, Lindsay C. Maskell, David C. Howard, W. Andrew Scott, and Peter A. Henrys
Earth Syst. Sci. Data, 9, 445–459, https://doi.org/10.5194/essd-9-445-2017, https://doi.org/10.5194/essd-9-445-2017, 2017
Short summary
Short summary
The Countryside Survey (CS) of Great Britain consists of an extensive set of repeated ecological measurements at a national scale, covering a time span of 29 years. CS was first undertaken in 1978 to monitor ecological and land use change in Britain using standardised procedures for recording ecological data from representative 1 km squares throughout the country. The vegetation component has subsequently been repeated in 1990, 1998 and 2007, and changes may be related to a range of drivers.
Claire M. Wood and Robert G. H. Bunce
Earth Syst. Sci. Data, 8, 177–189, https://doi.org/10.5194/essd-8-177-2016, https://doi.org/10.5194/essd-8-177-2016, 2016
Short summary
Short summary
In 1971, an ecological survey of the native pinewoods of Scotland was carried out. This unique habitat is widely recognised, not only by ecologists for its inherent biodiversity but also by the general public for its cultural and amenity value. The repeatable survey collected information on ground flora, soils, forest structure and general site information from 27 major pinewood sites. The results from the survey helped to set the conservation agenda for the old Caledonian pinewoods.
Claire M. Wood and Robert G. H. Bunce
Earth Syst. Sci. Data, 8, 89–103, https://doi.org/10.5194/essd-8-89-2016, https://doi.org/10.5194/essd-8-89-2016, 2016
Short summary
Short summary
A survey of the natural environment was undertaken in Shetland in 1974, after concern was expressed that large-scale development from the new oil industry could threaten the natural features of the islands. A framework was constructed by the Institute of Terrestrial Ecology on which to select samples for the survey. The vegetation and habitat data that were collected, along with the sampling framework, have recently been made public.
Christopher G. Marston, Aneurin W. O'Neil, R. Daniel Morton, Claire M. Wood, and Clare S. Rowland
Earth Syst. Sci. Data, 15, 4631–4649, https://doi.org/10.5194/essd-15-4631-2023, https://doi.org/10.5194/essd-15-4631-2023, 2023
Short summary
Short summary
The UK Land Cover Map 2021 (LCM2021) is a UK-wide land cover data set, with 21- and 10-class versions. It is intended to support a broad range of UK environmental research, including ecological and hydrological research. LCM2021 was produced by classifying Sentinel-2 satellite imagery. LCM2021 is distributed as a suite of products to facilitate easy use for a range of applications. To support research at different spatial scales it includes 10 m, 25 m and 1 km resolution products.
Claire M. Wood, Jamie Alison, Marc S. Botham, Annette Burden, François Edwards, R. Angus Garbutt, Paul B. L. George, Peter A. Henrys, Russel Hobson, Susan Jarvis, Patrick Keenan, Aidan M. Keith, Inma Lebron, Lindsay C. Maskell, Lisa R. Norton, David A. Robinson, Fiona M. Seaton, Peter Scarlett, Gavin M. Siriwardena, James Skates, Simon M. Smart, Bronwen Williams, and Bridget A. Emmett
Earth Syst. Sci. Data, 13, 4155–4173, https://doi.org/10.5194/essd-13-4155-2021, https://doi.org/10.5194/essd-13-4155-2021, 2021
Short summary
Short summary
The Glastir Monitoring and Evaluation Programme (GMEP) ran from 2013 until 2016, as a national programme of ecological study in Wales. GMEP included a large field survey component, collecting data on a range of elements including vegetation, land cover and land use, soils, freshwater, birds, and insect pollinators. GMEP was designed so that surveys could be repeated at regular intervals to monitor the Welsh environment. Data from GMEP have been used to address many applied policy questions.
Claire M. Wood, Robert G. H. Bunce, Lisa R. Norton, Simon M. Smart, and Colin J. Barr
Earth Syst. Sci. Data, 10, 899–918, https://doi.org/10.5194/essd-10-899-2018, https://doi.org/10.5194/essd-10-899-2018, 2018
Short summary
Short summary
In the 1990s, ecological survey work was carried out in English landscapes containing semi-natural habitats that were perceived to be under threat, or which represented areas of concern ("key habitats"), complementing the national Countryside Survey of Great Britain. The landscapes were lowland heath, chalk and limestone grasslands, coasts and uplands. Standardised procedures were used to record ecological data from representative 1 km squares throughout England in 1992 and 1993.
Claire M. Wood, Robert G. H. Bunce, Lisa R. Norton, Lindsay C. Maskell, Simon M. Smart, W. Andrew Scott, Peter A. Henrys, David C. Howard, Simon M. Wright, Michael J. Brown, Rod J. Scott, Rick C. Stuart, and John W. Watkins
Earth Syst. Sci. Data, 10, 745–763, https://doi.org/10.5194/essd-10-745-2018, https://doi.org/10.5194/essd-10-745-2018, 2018
Short summary
Short summary
The Countryside Survey (CS) of Great Britain consists of an extensive set of repeated ecological measurements at a national scale, covering a time span of 29 years. CS was first undertaken in 1978 to monitor ecological and land use change in Britain using standardised procedures for recording ecological data from representative 1 km squares throughout the country. The mapping of ecological landscape elements has subsequently been repeated in 1984, 1990, 1998 and 2007.
Claire M. Wood, Simon M. Smart, Robert G. H. Bunce, Lisa R. Norton, Lindsay C. Maskell, David C. Howard, W. Andrew Scott, and Peter A. Henrys
Earth Syst. Sci. Data, 9, 445–459, https://doi.org/10.5194/essd-9-445-2017, https://doi.org/10.5194/essd-9-445-2017, 2017
Short summary
Short summary
The Countryside Survey (CS) of Great Britain consists of an extensive set of repeated ecological measurements at a national scale, covering a time span of 29 years. CS was first undertaken in 1978 to monitor ecological and land use change in Britain using standardised procedures for recording ecological data from representative 1 km squares throughout the country. The vegetation component has subsequently been repeated in 1990, 1998 and 2007, and changes may be related to a range of drivers.
Claire M. Wood and Robert G. H. Bunce
Earth Syst. Sci. Data, 8, 177–189, https://doi.org/10.5194/essd-8-177-2016, https://doi.org/10.5194/essd-8-177-2016, 2016
Short summary
Short summary
In 1971, an ecological survey of the native pinewoods of Scotland was carried out. This unique habitat is widely recognised, not only by ecologists for its inherent biodiversity but also by the general public for its cultural and amenity value. The repeatable survey collected information on ground flora, soils, forest structure and general site information from 27 major pinewood sites. The results from the survey helped to set the conservation agenda for the old Caledonian pinewoods.
Claire M. Wood and Robert G. H. Bunce
Earth Syst. Sci. Data, 8, 89–103, https://doi.org/10.5194/essd-8-89-2016, https://doi.org/10.5194/essd-8-89-2016, 2016
Short summary
Short summary
A survey of the natural environment was undertaken in Shetland in 1974, after concern was expressed that large-scale development from the new oil industry could threaten the natural features of the islands. A framework was constructed by the Institute of Terrestrial Ecology on which to select samples for the survey. The vegetation and habitat data that were collected, along with the sampling framework, have recently been made public.
Related subject area
Biosphere – Biodiversity
New historical data for long-term swordfish ecological studies in the Mediterranean Sea
An 18S V4 rRNA metabarcoding dataset of protist diversity in the Atlantic inflow to the Arctic Ocean, through the year and down to 1000 m depth
Integrated ecological monitoring in Wales: the Glastir Monitoring and Evaluation Programme field survey
Multi-scale data on intertidal macrobenthic biodiversity and environmental features in three New Zealand harbours
The Arctic Traits Database – a repository of Arctic benthic invertebrate traits
Freshwater fish fauna of rivers of the southern Western Ghats, India
Copepod species abundance from the Southern Ocean and other regions (1980–2005) – a legacy
Land cover and vegetation data from an ecological survey of "key habitat" landscapes in England, 1992–1993
Growth characteristics of natural and planted Dahurian larch in northeast China
Ecological landscape elements: long-term monitoring in Great Britain, the Countryside Survey 1978–2007 and beyond
Seabed images from Southern Ocean shelf regions off the northern Antarctic Peninsula and in the southeastern Weddell Sea
Long-term vegetation monitoring in Great Britain – the Countryside Survey 1978–2007 and beyond
Standardization of a geo-referenced fishing data set for the Indian Ocean bigeye tuna, Thunnus obesus (1952–2014)
Ecological survey of the native pinewoods of Scotland 1971
Survey of the terrestrial habitats and vegetation of Shetland, 1974 – a framework for long-term ecological monitoring
Brian R. MacKenzie, Teresa Romeo, Piero Addis, Pietro Battaglia, Pierpaolo Consoli, Franco Andaloro, and Gianluca Sarà
Earth Syst. Sci. Data, 13, 5867–5877, https://doi.org/10.5194/essd-13-5867-2021, https://doi.org/10.5194/essd-13-5867-2021, 2021
Short summary
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Management of marine fisheries and ecosystems is limited by knowledge based on datasets which are short and recent. We recovered new long-term catch and size data for swordfish in the Mediterranean Sea. Our new data series cover the period 1896–2010, which predates most other Mediterranean swordfish datasets. The data allow scientists to investigate long-term effects of fishing and ocean–climate conditions on swordfish ecology in the Mediterranean Sea.
Elianne Egge, Stephanie Elferink, Daniel Vaulot, Uwe John, Gunnar Bratbak, Aud Larsen, and Bente Edvardsen
Earth Syst. Sci. Data, 13, 4913–4928, https://doi.org/10.5194/essd-13-4913-2021, https://doi.org/10.5194/essd-13-4913-2021, 2021
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Here we present a dataset of DNA sequences obtained from size-fractionated seawater samples from the Arctic Ocean that are used to identify taxonomic groups of unicellular plankton. This dataset can be used to investigate the diversity and distribution of plankton groups both by season and by depth and thus increase our understanding of the factors influencing the dynamics of this important part of the Arctic marine ecosystem.
Claire M. Wood, Jamie Alison, Marc S. Botham, Annette Burden, François Edwards, R. Angus Garbutt, Paul B. L. George, Peter A. Henrys, Russel Hobson, Susan Jarvis, Patrick Keenan, Aidan M. Keith, Inma Lebron, Lindsay C. Maskell, Lisa R. Norton, David A. Robinson, Fiona M. Seaton, Peter Scarlett, Gavin M. Siriwardena, James Skates, Simon M. Smart, Bronwen Williams, and Bridget A. Emmett
Earth Syst. Sci. Data, 13, 4155–4173, https://doi.org/10.5194/essd-13-4155-2021, https://doi.org/10.5194/essd-13-4155-2021, 2021
Short summary
Short summary
The Glastir Monitoring and Evaluation Programme (GMEP) ran from 2013 until 2016, as a national programme of ecological study in Wales. GMEP included a large field survey component, collecting data on a range of elements including vegetation, land cover and land use, soils, freshwater, birds, and insect pollinators. GMEP was designed so that surveys could be repeated at regular intervals to monitor the Welsh environment. Data from GMEP have been used to address many applied policy questions.
Casper Kraan, Barry L. Greenfield, and Simon F. Thrush
Earth Syst. Sci. Data, 12, 293–297, https://doi.org/10.5194/essd-12-293-2020, https://doi.org/10.5194/essd-12-293-2020, 2020
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Understanding how the plants and animals that live in the sea floor vary in their spatial patterns of diversity and abundance is fundamental to gaining insight into the role of biodiversity in maintaining ecosystem functioning in coastal ecosystems. Yet data are lacking. Therefore, we collected multi-scale high-resolution data on macrobenthic biodiversity in New Zealand marine sandflats. For 1200 sampling locations we provide data on benthic biodiversity and associated environmental variables.
Renate Degen and Sarah Faulwetter
Earth Syst. Sci. Data, 11, 301–322, https://doi.org/10.5194/essd-11-301-2019, https://doi.org/10.5194/essd-11-301-2019, 2019
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Trait-based approaches (such that consider the life history, morphological, physiological and behavioral characteristics of species) promise new insights in ecology. To facilitate these approaches also in polar regions, we provide the free and easily accessible Arctic Traits Database to the scientific community. Trait information was collected from literature and via communication with experts. At present the database holds trait information for more than 1900 arctic taxa.
Anbu Aravazhi Arunkumar and Arunachalam Manimekalan
Earth Syst. Sci. Data, 10, 1735–1752, https://doi.org/10.5194/essd-10-1735-2018, https://doi.org/10.5194/essd-10-1735-2018, 2018
Astrid Cornils, Rainer Sieger, Elke Mizdalski, Stefanie Schumacher, Hannes Grobe, and Sigrid B. Schnack-Schiel
Earth Syst. Sci. Data, 10, 1457–1471, https://doi.org/10.5194/essd-10-1457-2018, https://doi.org/10.5194/essd-10-1457-2018, 2018
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Copepods are the predominant taxon in marine zooplankton and play an important role in the pelagic food web as intermediators between primary producers, the microbial loop and higher trophic levels. Here, we provide 33 data sets with abundances for a total of 312 copepod taxa from the Southern Ocean, the Magellan region, the Great Meteor Bank and the northern Red Sea, and the Gulf of Aqaba.
Claire M. Wood, Robert G. H. Bunce, Lisa R. Norton, Simon M. Smart, and Colin J. Barr
Earth Syst. Sci. Data, 10, 899–918, https://doi.org/10.5194/essd-10-899-2018, https://doi.org/10.5194/essd-10-899-2018, 2018
Short summary
Short summary
In the 1990s, ecological survey work was carried out in English landscapes containing semi-natural habitats that were perceived to be under threat, or which represented areas of concern ("key habitats"), complementing the national Countryside Survey of Great Britain. The landscapes were lowland heath, chalk and limestone grasslands, coasts and uplands. Standardised procedures were used to record ecological data from representative 1 km squares throughout England in 1992 and 1993.
Bingrui Jia and Guangsheng Zhou
Earth Syst. Sci. Data, 10, 893–898, https://doi.org/10.5194/essd-10-893-2018, https://doi.org/10.5194/essd-10-893-2018, 2018
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Dahurian larch (Larix gmelinii) is the dominant species in northeast China, which is situated in the southernmost part of the global boreal forest and is undergoing great climate change. Its growth characteristics (tree height, diameter at breast height, tree volume and/or stand volume) were collected from published studies from 1965 to 2015. The data set (N=743) provides a quantitative reference for plantation management practices and boreal forest growth prediction under future climate change.
Claire M. Wood, Robert G. H. Bunce, Lisa R. Norton, Lindsay C. Maskell, Simon M. Smart, W. Andrew Scott, Peter A. Henrys, David C. Howard, Simon M. Wright, Michael J. Brown, Rod J. Scott, Rick C. Stuart, and John W. Watkins
Earth Syst. Sci. Data, 10, 745–763, https://doi.org/10.5194/essd-10-745-2018, https://doi.org/10.5194/essd-10-745-2018, 2018
Short summary
Short summary
The Countryside Survey (CS) of Great Britain consists of an extensive set of repeated ecological measurements at a national scale, covering a time span of 29 years. CS was first undertaken in 1978 to monitor ecological and land use change in Britain using standardised procedures for recording ecological data from representative 1 km squares throughout the country. The mapping of ecological landscape elements has subsequently been repeated in 1984, 1990, 1998 and 2007.
Dieter Piepenburg, Alexander Buschmann, Amelie Driemel, Hannes Grobe, Julian Gutt, Stefanie Schumacher, Alexandra Segelken-Voigt, and Rainer Sieger
Earth Syst. Sci. Data, 9, 461–469, https://doi.org/10.5194/essd-9-461-2017, https://doi.org/10.5194/essd-9-461-2017, 2017
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An ocean floor observation system (OFOS) was used to collect seabed imagery on two cruises of the RV Polarstern, ANT-XXIX/3 (PS81) to the Antarctic Peninsula from January to March 2013 and ANT-XXXI/2 (PS96) to the Weddell Sea from December 2015 to February 2016. We report on the image and data collections gathered during these cruises. Seabed images, including metadata, are available from the data publisher PANGAEA via https://doi.org/10.1594/PANGAEA.872719 (PS81) and https://doi.org/10.1594/PANGAEA.862097 (PS96).
Claire M. Wood, Simon M. Smart, Robert G. H. Bunce, Lisa R. Norton, Lindsay C. Maskell, David C. Howard, W. Andrew Scott, and Peter A. Henrys
Earth Syst. Sci. Data, 9, 445–459, https://doi.org/10.5194/essd-9-445-2017, https://doi.org/10.5194/essd-9-445-2017, 2017
Short summary
Short summary
The Countryside Survey (CS) of Great Britain consists of an extensive set of repeated ecological measurements at a national scale, covering a time span of 29 years. CS was first undertaken in 1978 to monitor ecological and land use change in Britain using standardised procedures for recording ecological data from representative 1 km squares throughout the country. The vegetation component has subsequently been repeated in 1990, 1998 and 2007, and changes may be related to a range of drivers.
Teja A. Wibawa, Patrick Lehodey, and Inna Senina
Earth Syst. Sci. Data, 9, 163–179, https://doi.org/10.5194/essd-9-163-2017, https://doi.org/10.5194/essd-9-163-2017, 2017
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Geo-referenced catch and fishing effort data of the bigeye tuna fisheries in the Indian Ocean over 1952–2014 were analyzed and standardized to facilitate population dynamics modeling studies. A total of 30 fisheries were finally determined from longline, purse seine and other-gears data sets. Nevertheless, still one-third of total nominal catch is not included due to a total lack of geo-referenced information and would need to be processed separately.
Claire M. Wood and Robert G. H. Bunce
Earth Syst. Sci. Data, 8, 177–189, https://doi.org/10.5194/essd-8-177-2016, https://doi.org/10.5194/essd-8-177-2016, 2016
Short summary
Short summary
In 1971, an ecological survey of the native pinewoods of Scotland was carried out. This unique habitat is widely recognised, not only by ecologists for its inherent biodiversity but also by the general public for its cultural and amenity value. The repeatable survey collected information on ground flora, soils, forest structure and general site information from 27 major pinewood sites. The results from the survey helped to set the conservation agenda for the old Caledonian pinewoods.
Claire M. Wood and Robert G. H. Bunce
Earth Syst. Sci. Data, 8, 89–103, https://doi.org/10.5194/essd-8-89-2016, https://doi.org/10.5194/essd-8-89-2016, 2016
Short summary
Short summary
A survey of the natural environment was undertaken in Shetland in 1974, after concern was expressed that large-scale development from the new oil industry could threaten the natural features of the islands. A framework was constructed by the Institute of Terrestrial Ecology on which to select samples for the survey. The vegetation and habitat data that were collected, along with the sampling framework, have recently been made public.
Cited articles
Allen, S. E.: Chemical Analysis of Ecological Materials, 2nd Edn., Blackwell Scientific Publications, 1989.
Asner, G. P.: Organismic remote sensing for tropical forest ecology and conservation, Ann. Mo. Bot. Gard., 100, 127–140, https://doi.org/10.3417/2012016, 2015.
Avery, B. W.: Soil classification for England and Wales [higher categories], Technical Monograph, Soil Survey of England and Wales, 1980.
Balmford, A., Crane, P., Dobson, A., Green, R. E., and Mace, G. M.: The 2010 challenge: data availability, information needs and extraterrestrial insights, Philos. T. R. Soc. B, 360, 221–228, https://doi.org/10.1098/rstb.2004.1599, 2005.
Böhl, J. and Brändli, U.-B.: Deadwood volume assessment in the third Swiss National Forest Inventory: Methods and first results, Eur. J. For. Res., 126, 449–457, https://doi.org/10.1007/s10342-007-0169-3, 2007.
Bunce, R. G. H.: British woodlands in an European context, in: Forest and woodland ecology: an account of research being done in ITE, edited by: Last, F. T. and Gardiner, A. S., 7–11, (ITE symposium no. 8), Institute of Terrestrial Ecology, Cambridge, 1981.
Bunce, R. G. H.: A field key for classifying British woodland vegetation. Part 1, Institute of Terrestrial Ecology, Cambridge, 1982.
Bunce, R. G. H.: A field key for classifying British woodland vegetation. Part 2, London HMSO, 1989.
Bunce, R. G. H. and Jeffers, J. N. R.: Native pinewoods of Scotland, Institute of Terrestrial Ecology, Cambridge, 1977.
Bunce, R. G. H. and Shaw, M. W.: Classifying woodlands for nature conservation, Forestry and British Timber, 1, 23–25, 1972.
Bunce, R. G. H. and Shaw, M. W.: National survey of semi-natural woodlands, in: Merlewood Research Station Report for 1970–72, The Nature Conservancy, 1973a.
Bunce, R. G. H. and Shaw, M. W.: A standardised method for ecological survey, J. Environ. Manage., 1, 239–258, 1973b.
Bunce, R. G. H. and Smith, R. S.: An ecological survey of Cumbria, Kendal Cumbria County Council and Lake District Special Planning Board, 1978.
Bunce, R. G. H., Barr, C. J., Clarke, R. T., Howard, D. C., and Lane, A. M. J.: ITE land classification of Great Britain 1990, NERC Environmental Information Data Centre, https://doi.org/10.5285/ab320e08-faf5-48e1-9ec9-77a213d2907f, 1990.
Bunce, R. G. H., Barr, C. J., Gillespie, M. K., and Howard, D. C.: The ITE Land Classification: providing an environmental stratification of Great Britain, Environ. Monit. Assess., 39, 39–46, https://doi.org/10.1007/978-94-009-1653-1_5, 1996.
Bunce, R. G. H., Barr, C. J., Gillespie, M. K., Howard, D. C., Scott, W. A., Smart, S. M., Van de Poll, H. M., and Watkins, J. W.: Vegetation of the British countryside – the Countryside Vegetation System, Grange-over-Sands Institute of Terrestrial Ecology, ECOFACT Vol. 1, 1999.
Bunce, R. G. H., Metzger, M. J., Jongman, R. H. G., Brandt, J., de Blust, G., Elena-Rossello, R., Groom, G. B., Halada, L., Hofer, G., Howard, D. C., Kovář, P., Mücher, C. A., Padoa-Schioppa, E., Paelinx, D., Palo, A., Perez-Soba, M., Ramos, I. L., Roche, P., Skånes, H., and Wrbka, T.: A standardized procedure for surveillance and monitoring European habitats and provision of spatial data, Landsc. Ecol., 23, 11–25, https://doi.org/10.1007/s10980-007-9173-8, 2008.
Bunce, R. G. H., Bogers, M., and Roche, P.: Manual for habitat and vegetation surveillance and monitoring: temperate, mediterranean and desert biomes, Alterra Report No. 2154, Wageningen, 2011.
Carey, P. D., Wallis, S., Chamberlain, P. M., Cooper, A., Emmett, B. A., Maskell, L. C., McCann, T., Murphy, J., Norton, L. R., Reynolds, B., Scott, W. A., Simpson, I. C., Smart, S. M., and Ullyett, J. M.: Countryside Survey: UK Results from 2007, NERC/Centre for Ecology & Hydrology, Lancaster, 2008.
Cooke, R. and Kirby, K.: The use of a new woodland classification in surveys for nature conservation purposes in England and Wales, Arboricultural Journal, 18, 167–186, https://doi.org/10.1080/03071375.1994.9747013, 1994.
Corney, P. M., Le Duc, M. G., Smart, S. M., Kirby, K. J., Bunce, R. G. H., and Marrs, R. H.: The effect of landscape-scale environmental drivers on the vegetation composition of British woodlands, Biol. Conserv., 120, 491–505, https://doi.org/10.1016/j.biocon.2004.03.022, 2004.
Corney, P. M., Le Duc, M. G., Smart, S. M., Kirkby, K. J., Bunce, R. G. H., and Marrs, R. H.: Relationships between the species composition of forest field-layer vegetation and environmental drivers, assessed using a national scale survey, J. Ecol., 94, 383–401, https://doi.org/10.1111/j.1365-2745.2006.01094.x, 2006.
DeVries, B., Verbesselt, J., Kooistra, L., and Herold, M.: Robust monitoring of small-scale forest disturbances in a tropical montane forest using Landsat time series, Remote Sens. Environ., 161, 107–121, https://doi.org/10.1016/j.rse.2015.02.012, 2015.
Emmett, B. E. and GMEP team: Glastir Monitoring & Evaluation Programme. First Year Annual Report to Welsh Government (Contract reference: C147/2010/11), NERC/Centre for Ecology & Hydrology, 442 pp., 2014.
Forestry Commission: Census of Woodlands 1947–1949. Woodlands of 5 acres and over, London, 264 pp., 1952.
Forestry Commission: Census of Woodlands 1965–70, Forestry Commission, London, 1970.
Forestry Commission: Census of Woodlands and Trees 1979–82, Forestry Commission, Edinburgh, 1984.
Forestry Commission: National Inventory of Woodland and Trees, Forestry Commission, Edinburgh, 2003.
Forestry Commission: National Forest Inventory, available at: http://www.forestry.gov.uk/website/forestry.nsf/byunique/infd-89s9ls, last access: 15 January 2013.
Groom, G. and Reed, T.: Strategic landscape monitoring for the Nordic countries, Nordic Council of Ministers, Copenhagen, 2001.
Haines-Young, R. H., Barr, C. J., Black, H. I. J., Briggs, D. J., Bunce, R. G. H., Clarke, R. T., Cooper, A., Dawson, F. H., Firbank, L. G., Fuller, R. M., Furse, M. T., Gillespie, M. K., Hill, R., Hornung, M., Howard, D. C., McCann, T., Morecroft, M. D., Petit, S., Sier, A. R. J., Smart, S. M., Smith, G. M., Stott, A. P., Stuart, R. C., and Watkins, J. W.: Accounting for nature: assessing habitats in the UK countryside, London DETR, 2000.
Henrys, P. A., Butler, A., Jarvis, S., Smart, S. M., and Fang, Z.: MultiMOVE Model: Ensemble niche modelling of British vegetation v2.0.1., NERC Environmental Information Data Centre, https://doi.org/10.5285/94ae1a5a-2a28-4315-8d4b-35ae964fc3b9, 2015.
Hill, M. O., Bunce, R. G. H., and Shaw, M. W.: Indicator species analysis, a divisive polythetic method of classification, and its application to a survey of native pinewoods in Scotland, J. Ecol., 63, 597–613, https://doi.org/10.2307/2258738, 1975.
Hinrichsen, D.: The forest decline enigma, BioScience, 37, 542–546, 1987.
International Organization for Standardization: ISO 19115:2003, available at: http://www.iso.org/iso/catalogue_detail.htm?csnumber=26020, last access: 27 July 2015.
Kändler, G.: The design of the second German national forest inventory, in: Proceedings of the Eighth Annual Forest Inventory and Analysis Symposium, Monterey, CA, 16–19 October 2006, edited by: McRoberts, R. E., Reams, G. A., Van Deusen, P. C., and McWilliams, W. H., Department of Agriculture, Forest Service, 19–24, General Technical Report WO-79, 404 pp., 2009.
Kandler, O. and Innes, J. L.: Air pollution and forest decline in Central Europe, Environ. Pollut., 90, 171–180, https://doi.org/10.1016/0269-7491(95)00006-D, 1995.
Keller, M. (Ed): Swiss National Forest Inventory. Manual of the field survey 2004–2007, Swiss Federal Research Institute WSL, Birmensdorf, 269 pp., 2011.
Kirby, K., Bines, T., Burn, A., Mackintosh, J., Pitkin, P., and Smith, I.: Seasonal and observer differences in vascular plant records from British woodlands, J. Ecol., 74, 123–131, https://doi.org/10.2307/2260353, 1986.
Kirby, K. J., Smart, S. M., Black, H. I. J., Bunce, R. G. H., Corney, P. M., and Smithers, R. J.: Long term ecological change in British woodland (1971–2001). A re-survey and analysis of change based on the 103 sites in the Nature Conservancy "Bunce 1971" woodland survey, Final report, Peterborough: English Nature (English Nature Research Reports Number 653), 139 pp. + Appendices, 2005.
Kirby, K. J., Smart, S. M., Black, H. I. J., Bunce, R. G. H., Corney, P. M., Smithers, R. J., and Shaw, M. W.: Woodlands survey flora data 1971–2001, NERC Environmental Information Data Centre, https://doi.org/10.5285/2d023ce9-6dbe-4b4f-a0cd-34768e1455ae, 2013a.
Kirby, K. J., Smart, S. M., Black, H. I. J., Bunce, R. G. H., Corney, P. M., Smithers, R. J., and Shaw, M. W.: Woodlands survey tree diameter data 1971–2001, NERC Environmental Information Data Centre, https://doi.org/10.5285/4d93f9ac-68e3-49cf-8a41-4d02a7ead81a, 2013b.
Kirby, K. J., Smart, S. M., Black, H. I. J., Bunce, R. G. H., Corney, P. M., Smithers, R. J., and Shaw, M. W.: Woodlands survey soil data 1971–2001, NERC Environmental Information Data Centre, https://doi.org/10.5285/fb1e474d-456b-42a9-9a10-a02c35af10d2, 2013c.
Kirby, K. J., Smart, S. M., Black, H. I. J., Bunce, R. G. H., Corney, P. M., Smithers, R. J., and Shaw, M. W.: Woodlands survey site information 1971–2001, NERC Environmental Information Data Centre, https://doi.org/10.5285/d6409d40-58fe-4fa7-b7c8-71a105b965b4, 2013d.
Mandallaz, D.: Sampling techniques for forest inventories, CRC Press, Boca Raton, 2007.
Marrs, R., Kirby, K., Le Duc, M., McAllister, H., Smart, S., Oksanen, J., Bunce, R., and Corney, P.: Native dominants in British woodland-a potential cause of reduced species-richness?, New Journal of Botany, 3, 156–168, https://doi.org/10.1179/2042349713Y.0000000028, 2013.
Milner, C.: Shetland project monitoring report Nature Conservancy Council, Contract Report to the Nature Conservancy Council, Institute of Terrestrial Ecology, Grange-over-Sands, 1975.
National Forest Inventory: The Swiss National Forest Inventory, available at: http://www.lfi.ch/lfi/lfi-en.php, last access: 10 July 2015.
Ratcliffe, D. A.: A Nature Conservation Review: The Selection of Biological Sites of National Importance to Nature Conservation in Britain, Cambridge University Press, 1977.
Roche, P. and Geijzendorffer, I.: EBONE: integrated figures of habitat and biodiversity indicators: quantifying indicators of an integrated biodiversity observation system, Alterra, Wageningen UR, 2013.
Rodwell, J. S.: British Plant Communities: Volume 1, Woodlands and Scrub, Cambridge University Press, 1991.
Shaw, M. W. and Bunce, R. G. H.: National Woodlands Classification 1971 Handbook of Field Methods, Merlewood Research Station, Institute of Terrestrial Ecology, Grange-over-Sands, 1971.
Site Surveyors: Long term ecological change in British woodland (1971–2001). Site reports from the 103 sites surveyed in the Nature Conservancy "Bunce 1971" woodland survey and resurveyed in 2001–3, edited by: Rossall, M., Centre for Ecology and Hydrology, Lancaster, 2003.
Smart, S. M., Bunce, R. G. H., Black, H. I. J., Ray, N., Bunce, F., Kirby, K., Watson, R., and Singleton, D.: Measuring long term change in biodiversity in British woodlands (1971–2000) – a pilot re-survey of 14 sites from the ITE/NCC "Bunce" woodland survey and two from native pinewoods. Final report, English Nature, 56 pp. + Appendices, 2001.
Smart, S. M., Kirby, K., Corney, P., and Wood, C. M.: Woodlands Survey of Great Britain 1971–2001: dataset documentation, 2013.
Smart, S. M., Ellison, A. M., Bunce, R. G., Marrs, R. H., Kirby, K. J., Kimberley, A., Scott, A. W., and Foster, D. R.: Quantifying the impact of an extreme climate event on species diversity in fragmented temperate forests: the effect of the October 1987 storm on British broadleaved woodlands, J. Ecol., 102, 1273–1287, https://doi.org/10.1111/1365-2745.12291, 2014.
Smith, W. B.: Forest inventory and analysis: a national inventory and monitoring program, Environ. Pollut., 116, Supplement 1, S233–S242, https://doi.org/10.1016/S0269-7491(01)00255-X, 2002.
Sousa, A. M. O., Goncalves, A. C., Mesquita, P., and Marques da Silva, J. R.: Biomass estimation with high resolution satellite images: A case study of Quercus rotundifolia, ISPRS J. Photogramm., 101, 69–79, https://doi.org/10.1016/j.isprsjprs.2014.12.004, 2015.
Steele, R. C.: National survey of woodlands, reprinted from Society for the Promotion of Nature Reserves Handbook, Lincoln, 1968.
Sykes, J., Horrill, A., and Mountford, M.: Use of visual cover assessments as quantitative estimators of some British woodland taxa, J. Ecol., 71, 437–450, 1983.
Sykes, J. M. and Horrill, A. D.: Survey methods within woodland, Nature Conservancy Council, Peterborough (Contract HF3/03/107), 1979.
Thünen Institute: German National Forest Inventory, available at: http://www.ti.bund.de/en/wo/projects/monitoring-of-forests/bundeswaldinventur/national-forest-inventory/, last access: 10 July 2015.
UK GEMINI: UK GEMINI, available at: http://www.agi.org.uk/join-us/agi-groups/standards-committee/uk-gemini, last access: 12 May 2015.
United States Forest Service: Forest Inventory and Analysis National Program, available at: http://www.fia.fs.fed.us/, last access: 14 May 2015a.
United States Forest Service: National Forest Health Monitoring Program, available at: http://fhm.fs.fed.us/fact/index.htm, last access: 15 May 2015b.
Wani, A. A., Joshi, P. K., and Singh, O.: Estimating biomass and carbon mitigation of temperate coniferous forests using spectral modeling and field inventory data, Ecol. Inform., 25, 63–70, https://doi.org/10.1016/j.ecoinf.2014.12.003, 2015.
Williams, W. and Lambert, J. M.: Multivariate methods in plant ecology: I. Association-analysis in plant communities, J. Ecol., 47, 83–101, https://doi.org/10.2307/2257249, 1959.
Short summary
The Woodland Survey of Great Britain is a unique data set, consisting of a detailed range of ecological measurements at a national scale, covering a time span of 30 years. A set of 103 semi-natural woods spread across Britain were first surveyed in 1971, which were again surveyed in 2000-2003. Standardised methods of describing the trees, shrubs, ground flora, soils and general habitats present were used for both sets of surveys.
The Woodland Survey of Great Britain is a unique data set, consisting of a detailed range of...
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