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  • 1
    Monograph available for loan
    Monograph available for loan
    London : Routledge
    Call number: RIFS 23.95607
    Type of Medium: Monograph available for loan
    Pages: XI, 172 S. , Ill., graph. Darst.
    ISBN: 0415576865 , 9780415576864 , 0415576857 , 9780415576857
    Language: English
    Branch Library: RIFS Library
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  • 2
    Call number: RIFS 23.95499
    Type of Medium: Monograph available for loan
    Pages: xx, 286 Seiten , Illustrationen
    ISBN: 9781138781832 , 9781138781849
    Series Statement: Key issues in cultural heritage
    Language: English
    Note: Introduction: heritage and climate change: the future is not the past , Narratives of change on the Jurassic Coast World Heritage Site , Heritage and climate change: a fatal affair , Climate and cultural heritage: an experiment with the weather memory bank , Diverse epistemic traditions in transformative climate change research and adaptation: heritage and legacy , "We now have a name for some of the big changes happening on our bubu [country]": the role of indigenous knowledge for the management of cultural landscapes in a changing climate: a case study of the Kuku Nyungkal people from the Queensland Wet Tropics, Australia , Climate change and the changing nature of conservation , Historical chestnut cultures, climate and rural landscapes in the Apennines , Part II. Creative responses to heritage and climate change relations: processes, policies and possibilities ; Heritage and climate change: organizational conflicts and conundrums , Heritage development and community resilience: insights for the era of climate change , Strategies for coping with the wicked problem of climate change: a natural heritage perspective , Buffer mechanisms for managing diversity and world heritage in the Cape Floral Region (South Africa) , "From dust to dust": earth buildings, process and change , Relationships between climate change and built heritage: the case of dense urban cities in Hong Kong and China , Taking the middle path to the coast: how community collaboration can help save threatened sites , Conclusion: valuing the ever-changing past
    Branch Library: RIFS Library
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  • 3
    Call number: 9783709118832 (e-book)
    Type of Medium: 12
    Pages: 1 Online-Ressource (xxx, 765 Seiten) , Illustrationen
    ISBN: 9783709118832 , 978-3-7091-1883-2
    Language: English
    Note: Contents Part I Introduction 1 Cardiac Development and Animal Models of Congenital Heart Defects / Robert G. Kelly 2 Normal Cardiac Anatomy and Clinical Evaluation / David J. Driscoll Part II Development of the Heart and Its Vessels 3 First and Second Heart Field / Margaret Buckingham 4 Neural Crest / Bijoy Thattaliyath and Mary Hutson 5 Inflow Tract Development / Andy Wessels 6 Epicardium and Coronary Arteries / José C. Martín-Robles and José M. Pérez-Pomares 7 Establishment of Cardiac Laterality / George C. Gabriel and Cecilia W. Lo 8 Cardiac Conduction System / Rajiv Mohan and Vincent M. Christoffels 9 Hemodynamics During Development and Postnatal Life / David Sedmera 10 Evolutionary Aspects of Cardiac Development / Bjarke Jensen and Antoon F.M. Moorman Part III Central Molecular Pathways 11 Inter- and Intracellular Signaling Pathways / Jörg Heineke 12 Cardiac Transcription Factors and Regulatory Networks / Marcel Grunert, Cornelia Dorn, and Silke Rickert-Sperling 13 Post-transcriptional Regulation by Proteins and Non-coding RNAs / Amelia E. Aranega and Diego Franco 14 Post-translational Modification / Jun Wang and Robert J. Schwartz 15 Epigenetics / Rajan Jain, Mudit Gupta, and Jonathan A. Epstein 16 Environmental Signals / George A. Porter Jr. 17 The Contractile Apparatus of the Heart / Ingo Morano 18 Technologies to Study Genetics and Molecular Pathways / Cornelia Dorn, Marcel Grunert, Ana Dopazo, Fátima Sánchez-Cabo, Alberto Gatto, Jésus Vázquez, Silke Rickert-Sperling, and Enrique Lara-Pezzi Part IV Atrial Septal Defect 19 Clinical Presentation and Therapy of Atrial Septal Defect / David J. Driscoll 20 Human Genetics of Atrial Septal Defect / Rabia Khan and Patrick Y. Jay 21 Molecular Pathways and Animal Models of Atrial Septal Defect / Patrick Y. Jay, Karl R. Degenhardt, and Robert H. Anderson Part V Ventricular Septal Defect 22 Clinical Presentation and Therapy of Ventricular Septal Defect / David J. Driscoll 23 Human Genetics of Ventricular Septal Defect / Katherina Bellmann, Andreas Perrot, and Silke Rickert-Sperling 24 Molecular Pathways and Animal Models of Ventricular Septal Defect / Lucile Houyel Part VI Atrioventricular Septal Defect 25 Clinical Presentation and Therapy of Atrioventricular Septal Defect / David J. Driscoll 26 Human Genetics of Atrioventricular Septal Defect / Cheryl L. Maslen 27 Molecular Pathways and Animal Models of Atrioventricular Septal Defect / Andy Wessels Part VII Total Anomalous Pulmonary Venous Return 28 Clinical Presentation and Therapy of Total Anomalous Pulmonary Venous Return / David J. Driscoll 29 Human Genetics of Total Anomalous Pulmonary Venous Return / Robert E. Poelmann, Monique R.M. Jongbloed, Marco C. DeRuiter, and Adriana C. Gittenberger-de Groot 30 Molecular Pathways and Animal Models of Total Anomalous Pulmonary Venous Return / Robert E. Poelmann, Adriana C. Gittenberger-de Groot, Monique R.M. Jongbloed, and Marco C. DeRuiter Part VIII Tetralogy of Fallot and Double Outlet Right Ventricle 31 Clinical Presentation and Therapy of Tetralogy of Fallot and Double Outlet Right Ventricle / David J. Driscoll 32 Human Genetics of Tetralogy of Fallot and Double Outlet Right Ventricle / Cornelia Dorn, Andreas Perrot, and Silke Rickert-Sperling 33 Molecular Pathways and Animal Models of Tetralogy of Fallot and Double Outlet Right Ventricle / Robert G. Kelly Part IX d-Transposition of the Great Arteries 34 Clinical Presentation and Therapy of d-Transposition of the Great Arteries / David J. Driscoll 35 Human Genetics of d-Transposition of the Great Arteries / Patrice Bouvagnet and Anne Moreau de Bellaing 36 Molecular Pathways and Animal Models of d-Transposition of the Great Arteries / Amy-Leigh Johnson and Simon D. Bamforth Part X Defects of Situs 37 Clinical Presentation and Therapy of Defects of Situs / David J. Driscoll 38 Human Genetics of Defects of Situs / Andreas Perrot and Silke Rickert-Sperling 39 Molecular Pathways and Animal Models of Defects of Situs / Nikolai T. Klena, George C. Gabriel, and Cecilia W. Lo Part XI Semilunar Valve and Aortic Arch Anomalies 40 Clinical Presentation and Therapy of Semilunar Valve and Aortic Arch Anomalies / David J. Driscoll 41 Human Genetics of Semilunar Valve and Aortic Arch Anomalies / Matina Prapa and Siew Yen Ho 42 Molecular Pathways and Animal Models of Semilunar Valve and Aortic Arch Anomalies / Amy-Leigh Johnson and Simon D. Bamforth Part XII Coronary Artery Anomalies 43 Clinical Presentation and Therapy of Coronary Artery Anomalies / David J. Driscoll 44 Human Genetics of Coronary Artery Anomalies / Beatriz Picazo and José M. Pérez-Pomares 45 Molecular Pathways and Animal Models of Coronary Artery Anomalies / Juan A. Guadix and José M. Pérez-Pomares Part XIII Truncus Arteriosus 46 Clinical Presentation and Therapy of Truncus Arteriosus / David J. Driscoll 47 Human Genetics of Truncus Arteriosus / Hiroyuki Yamagishi 48 Molecular Pathways and Animal Models of Truncus Arteriosus / Amy-Leigh Johnson and Simon D. Bamforth Part XIV Tricuspid Atresia and Univentricular Heart 49 Clinical Presentation and Therapy of Tricuspid Atresia and Univentricular Heart / David J. Driscoll 50 Human Genetics of Tricuspid Atresia and Univentricular Heart / Abdul-Karim Sleiman, Liane Sadder, and George Nemer 51 Molecular Pathways and Animal Models of Tricuspid Atresia and Univentricular Heart / Kamel Shibbani and George Nemer Part XV Ebstein Anomaly 52 Clinical Presentation and Therapy of Ebstein Anomaly / David J. Driscoll 53 Human Genetics of Ebstein Anomaly / Gregor U. Andelfinger 54 Molecular Pathways and Animal Models of Ebstein Anomaly / Gregor U. Andelfinger Part XVI Hypoplastic Left Heart Syndrome 55 Clinical Presentation and Therapy of Hypoplastic Left Heart Syndrome / David J. Driscoll 56 Human Genetics of Hypoplastic Left Heart Syndrome / Woodrow D. Benson 57 Molecular Pathways and Animal Models of Hypoplastic Left Heart Syndrome / Florian Wünnemann and Gregor U. Andelfinger Part XVII Cardiomyopathies 58 Clinical Presentation and Therapy of Cardiomyopathies / David J. Driscoll 59 Human Genetics of Cardiomyopathies / Alexa M.C. Vermeer, Arthur A.M. Wilde, and Imke Christiaans 60 Molecular Pathways and Animal Models of Cardiomyopathies / Enkhsaikhan Purevjav
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  • 4
    Journal available for loan
    Journal available for loan
    Tübingen : Mohr Siebeck ; 1.1884 - 48.1931; N.F. 1.1932/33 - 10.1943/44(1945),3; 11.1948/49(1949) -
    Call number: ZS 22.95039
    Type of Medium: Journal available for loan
    Pages: Online-Ressource
    ISSN: 1614-0974 , 0015-2218 , 0015-2218
    Language: German , English
    Note: N.F. entfällt ab 57.2000. - Volltext auch als Teil einer Datenbank verfügbar , Ersch. ab 2000 in engl. Sprache mit dt. Hauptsacht.
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  • 5
    Monograph available for loan
    Monograph available for loan
    New York : PublicAffairs
    Call number: M 22.94751
    Type of Medium: Monograph available for loan
    Pages: 277 Seiten , Illustrationen
    Edition: International edition, first edition
    ISBN: 9781610392761 , 9781610396714
    Language: English
    Branch Library: GFZ Library
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  • 6
    Monograph available for loan
    Monograph available for loan
    Dordrecht : Springer
    Call number: M 22.94750
    Type of Medium: Monograph available for loan
    Pages: xi, 173 Seiten , Illustrationen
    Edition: Softcover reprint of the hardcover 1st edition
    ISBN: 9789401780193 , 9789402400311
    Series Statement: World geomorphological landscapes
    Language: English
    Branch Library: GFZ Library
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  • 7
    Call number: PIK M 311-22-94701
    Type of Medium: Monograph available for loan
    Pages: xix, 625 Seiten , Illustrationen
    ISBN: 978-0-521-88588-1
    Language: English
    Location: A 18 - must be ordered
    Branch Library: PIK Library
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  • 8
    Monograph available for loan
    Monograph available for loan
    Hoboken, NJ : Wiley
    Call number: AWI A14-15-0008
    Description / Table of Contents: The cryosphere, that region of the world where water is temporarily or permanently frozen, plays a crucial role on our planet. Recent developments in remote sensing techniques, and the acquisition of new data sets, have resulted in significant advances in our understanding of all components of the cryosphere and its processes. This book, based on contributions from 40 leading experts, offers a comprehensive and authoritative overview of the methods, techniques and recent advances in applications of remote sensing of the cryosphere. Examples of the topics covered include: snow extent, depth, grain size and impurities; surface and subsurface melting; glaciers; accumulation over the Greenland and Antarctica ice sheets; ice thickness and velocities; gravimetric measurements from space; sea, lake and river ice; frozen ground and permafrost; fieldwork activities; recent and future cryosphere-oriented missions and experiments.
    Type of Medium: Monograph available for loan
    Pages: 408 Seiten , Illustrationen
    Edition: 1. edition
    ISBN: 9781118368855
    Series Statement: The cryosphere science series
    Language: English
    Note: Table of Contents: List of contributors. - Cryosphere Science: Series Preface. - Preface. - Acknowledgments. - About the companion website. - 1 Remote sensing and the cryosphere. - 1.1 Introduction. - 1.2 Remote sensing. - 1.2.1 The electromagnetic spectrum and blackbody radiation. - 1.2.2 Passive systems. - 1.2.3 Active systems. - 1.3 The cryosphere. - References. - 2 Electromagnetic properties of components of the cryosphere. - 2.1 Electromagnetic properties of snow. - 2.1.1 Visible/near-infrared and thermal infrared. - 2.1.2 Microwave region. - 2.2 Electromagnetic properties of sea ice. - 2.2.1 Visible/near-infrared and thermal infrared. - 2.2.2 Microwave region. - 2.3 Electromagnetic properties of freshwater ice. - 2.4 Electromagnetic properties of glaciers and ice sheets. - 2.4.1 Visible/near-infrared and thermal infrared. - 2.4.2 Microwave region. - 2.5 Electromagnetic properties of frozen soil. - 2.5.1 Visible/near-infrared and thermal infrared. - 2.5.2 Microwave region. - References. - Acronyms. - Websites cited. - 3 Remote sensing of snow extent. - 3.1 lntroduction. - 3.2 Visible/near-infrared snow products. - 3.2.1 The normalized difference snow index (NDSI). - 3.3 Passive microwave products. - 3.4 Blended VNIR/PM products. - 3.5 Satellite snow extent as input to hydrological models. - 3.6 Concluding remarks. - Acknowledgments. - References. - Acronyms. - Websites cited. - 4 Remote sensing of snow albedo, grain size, and pollution from space. - 4.1 Introduction. - 4.2 Forward modeling. - 4.3 Local optical properties of a snow layer. - 4.4 Inverse problem. - 4.5 Pitfalls of retrievals. - 4.6 Conclusions. - Acknowledgments. - References. - Acronyms. - Websites cited. - 5 Remote sensing of snow depth and snow water equivalent. - 5.1 Introduction. - 5.2 Photogrammetry. - 5.3 LiDAR. - 5.4 Gamma radiation. - 5.5 Gravity data. - 5.6 Passive microwave data. - 5.7 Active microwave data. - 5.8 Conclusions. - References. - Acronyms. - Websites cited. - 6 Remote sensing of melting snow and ice. - 6.1 Introduction. - 6.2 General considerations on optical/thermal and microwave sensors and techniques for remote sensing of melting. - 6.2.1 Optical and thermal sensors. - 6.2.2 Microwave sensors. - 6.2.3 Electromagnetic properties of dry and wet snow. - 6.3 Remote sensing of melting over land. - 6.4 Remote sensing of melting over Greenland. - 6.4.1 Thermal infrared sensors. - 6.4.2 Microwave sensors. - 6.5 Remote sensing of melting over Antarctica. - 6.6 Conclusions. - References. - Acronyms. - 7 Remote sensing of glaciers. - 7.1 Introduction. - 7.2 Fundamentals. - 7.3 Satellite instruments for glacier research. - 7.4 Methods. - 7.4.1 Image classification for glacier mapping. - 7.4.2 Mapping debris-covered glaciers. - 7.4.3 Glacier mapping with SAR data. - 7.4.4 Assessing glacier changes. - 7.4.5 Area and length changes. - 7.4.6 Volumetrie glacier changes. - 7.4.7 Glacier velocity. - 7.5 Glaciers of the Greenland ice sheet. - 7.5.1 Surface elevation. - 7.5.2 Glacier extent. - 7.5.3 Glacier dynamics. - 7.6 Summary. - References. - Acronyms. - Websites cited. - 8 Remote sensing of accumulation over the Greenland and Antarctic ice sheets. - 8.1 Introduction to accumulation. - 8.2 Spaceborne methods for determining accumulation over ice sheets. - 8.2.1 Microwave remote sensing. - 8.2.2 Other remote sensing techniques and combined methods. - 8.3 Airborne and ground-based measurements of accumulation. - 8.3.1 Ground-based. - 8.3.2 Airborne. - 8.4 Modeling of accumulation. - 8.5 The future for remote sensing of accumulation. - 8.6 Conclusions. - References. - Acronyms. - Website cited. - 9 Remote sensing of ice thickness and surface velocity. - 9.1 Introduction. - 9.1.1 Electrical properties of glacial ice. - 9.2 Radar principles. - 9.2.1 Radar sounder. - 9.2.2 Radar equation. - 9.3 Pulse compression. - 9.4 Antennas. - 9.5 Example results. - 9.6 SAR and array processing. - 9.7 SAR Interferometry. - 9. 7.1 Introduction. - 9.7.2 Basic theory. - 9.7.3 Practical considerations of InSAR systems. - 9.7.4 Application of InSAR to Cryosphere remote sensing. - 9.8 Conclusions. - References. - Acronyms. - 10 Gravimetry measurements from space. - 10.1 Introduction. - 10.2 Observing the Earth's gravity field with inter-satellite ranging. - 10.3 Surface mass variability from GRACE. - 10.4 Results. - 10.5 Conclusions. - References. - Acronyms. - 11 Remote sensing of sea ice. - 11.1 Introduction. - 11.2 Sea ice concentration and extent. - 11.2.1 Passive microwave radiometers. - 11.2.2 Active microwave - scatterometry and radar. - 11.2.3 Visible and infrared. - 11.2.4 Operational sea ice analyses. - 11.3 Sea ice drift. - 11.4 Sea ice thickness and age, and snow depth. - 11.4.1 Altimetric thickness estimates. - 11.4.2 Radiometric thickness estimates. - 11.4.3 Sea ice age estimates as a proxy for ice thickness. - 11.5 Sea ice melt onset and freeze-up, albedo, melt pond fraction and surface temperature. - 11.5.1 Melt onset and freeze-up. - 11.5.2 Sea ice albedo and melt pond fraction. - 11.5.3 Sea ice surface temperature. - 11.6 Summary, challenges and the road ahead. - References. - Acronyms. - Website cited. - 12 Remote sensing of lake and river ice. - 12.1 Introduction. - 12.2 Remote sensing of lake ice. - 12.2.1 Ice concentration, extent and phenology. - 12.2.2 Ice types. - 12.2.3 Ice thickness and snow on ice. - 12.2.4 Snow/ice surface temperature. - 12.2.5 Floating and grounded ice: the special case of shallow Arctic/sub-Arctic lakes. - 12.3 Remote sensing of river ice. - 12.3.1 Ice extent and phenology. - 12.3.2 lce types, ice jams and flooded areas. - 12.3.3 Ice thickness. - 12.3.4 Surface flow velocities. - 12.3.5 Incorporating SAR-derived ice information into a GIS-based system in support of river-flow modeling and flood forecasting. - 12.4 Conclusions and outlook. - Acknowledgments. - References. - Acronyms. - Websites cited. - 13 Remote sensing of permafrost and frozen ground. - 13.1 Permafrost - an essential climate variable of the "Global Climate Observing System". - 13.2 Mountain permafrost. - 13.2.1 Remote sensing of surface features and permafrost landforms. - 13.2.2 Generation of digital elevation models. - 13.2.3 Terrain elevation change and displacement. - 13.3 Lowland permafrost - identification and mapping of surface features. - 13.3.1 Land cover and vegetation. - 13.3.2 Permafrost landforms. - 13.3.3 Landforms and processes indicating permafrost degradation. - 13.4 Lowland permafrost - remote sensing of physical variables related to the thermal permafrost state. - 13.4.1 Land surface temperature through thermal remote sensing. - 13.4.2 Freeze-thaw state of the surface soil through microwave remote sensing. - 13.4.3 Permafrost mapping with airborne electromagnetic surveys. - 13.4.4 Regional surface deformation through radar interferometry. - 13.4.5 A gravimetric signal of permafrost thaw?. - 13.5 Outlook - remote sensing data and permafrost models. - References. - Acronyms. - 14 Field measurements for remote sensing of the cryosphere. - 14.1 Introduction. - 14.2 Physical properties of interest. - 14.2.1 Surface properties. - 14.2.2 Sub-surface properties. - 14.3 Standard techniques for direct measurements of physical properties. - 14.3.1 Topography. - 14.3.2 Snow depth. - 14.3.3 Snow water equivalent and density. - 14.3.4 Temperature. - 14.3.5 Stratigraphy. - 14.3.6 Sea ice depth and ice thickness. - 14.4 New techniques for high spatial resolution measurements. - 14.4.1 Topography. - 14.4.2 Surface properties. - 14.4.3 Sub-surface properties. - 14.5 Simulating airborne and spaceborne observations from the ground. - 14.5.1 Active microwave. - 14.5.2 Passive microwave. - 14.6 Sampling strategies for remote sensing field campaigns: concepts and examples. - 14.6.1 Ice sheet campaigns. - 14.6.2 Seasonal snow campaigns. - 14.6.3 Sea ice campaigns. - 14.7 Conclusions. - References. - Acronyms. - Websites cited. - 15 Remote sensing missions and the cryosphere. - 15.1 In
    Location: AWI Reading room
    Branch Library: AWI Library
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  • 9
    Dissertations
    Dissertations
    Stockholm : Department of Meteorology, Stockholm University
    Call number: AWI A4-21-94661
    Description / Table of Contents: The Arctic sea-ice cover plays an important role for the global climate system. Sea ice and the overlying snow cover reflect up to eight times more of the solar radiation than the underlying ocean. Hence, they are important for the global energy budget, and changes in the sea-ice cover can have a large impact on the Arctic climate and beyond. In the past 36 years the ice cover reduced significantly. The largest decline is observed in September, with a rate of more than 12% per decade. The negative trend is accompanied by large inter-annual sea-ice variability: in September the sea-ice extent varies by up to 27% between years. The processes controlling the large variability are not well understood. In this thesis the atmospheric contribution to the inter-annual sea-ice variability is explored. The focus is specifically on the thermodynamical effects: processes that are associated with a temperature change of the ice cover and sea-ice melt. Atmospheric reanalysis data are used to identify key processes, while experiments with a state-of-the-art climate model are conducted to understand their relevance throughout different seasons. It is found that in years with a very low September sea-ice extent more heat and moisture is transported in spring into the area that shows the largest ice variability. The increased transport is often associated with similar atmospheric circulation patterns. Increased heat and moisture over the Arctic result in positive anomalies of water vapor and clouds. These alter the amount of downward radiation at the surface: positive cloud anomalies allow for more longwave radiation and less shortwave radiation. In spring, when the solar inclination is small, positive cloud anomalies result in an increased surface warming and an earlier seasonal melt onset. This reduces the ice cover early in the season and allows for an increased absorption of solar radiation by the surface during summer, which further accelerates the ice melt. The modeling experiments indicate that cloud anomalies of similar magnitude during other seasons than spring would likely not result in below-average September sea ice. Based on these results a simple statistical sea-ice prediction model is designed, that only takes into account the downward longwave radiation anomalies or variables associated with it. Predictive skills are similar to those of more complex models, emphasizing the importance of the spring atmosphere for the annual sea-ice evolution.
    Type of Medium: Dissertations
    ISBN: 978-91-7649-228-4
    Language: English
    Note: Zugleich: Dissertation, Stockholm University, 2015 , Contents Abstract Zusammenfassung Sammanfattning List of Papers Author’s contribution 1 Introduction 2 Sea ice as part of the global climate system 2.1 The global climate system 2.2 Sea-ice characteristics 3 Methodology 3.1 Atmospheric reanalyses 3.2 Global climate models 4 Changes of the sea-ice cover 4.1 Long-term changes of the sea-ice cover 4.2 Inter-annual sea-ice variability 5 Conclusions and Outlook Acknowledgements References
    Location: AWI Reading room
    Branch Library: AWI Library
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  • 10
    Call number: https://doi.org/10.1144/SP407
    In: Geological Society special publication
    Description / Table of Contents: This Special Publication is dedicated to heritage stone: those natural stones that have special significance in human culture. Some stones that have had important uses in the past are now neglected because theyare no longer extracted. Others are still commercially important, but their heritage uses have not beenwell documented in widely available sources. The Heritage Stone Task Group of the International Unionof Geological Sciences is working to establish a new formal designation of 'Global Heritage StoneResource' to recognize those stones that have had internationally significant architectural and ornamentaluses. The aim is to spread awareness of the cultural heritage aspects of these stones, to help to encouragecontinued supply for maintenance and repair of important monuments and to preserve historically importantquarries. The aim is neither to promote nor to limit these stones for new construction: in some cases continuingcommercial use might help to ensure future supplies for building conservation purposes.
    Type of Medium: 12
    Pages: 1 Online-Ressource (VI, 275 Seiten)
    ISBN: 9781862396951 (electronic) , 9781862396852 (print)
    Series Statement: Geological Society special publication 407
    URL: Cover
    Language: English
    Note: Introduction -- Procedures and criteria for the definition of Global Heritage Stone Resources -- The 'Global Heritage Stone Resource' designation: past, present and future -- Global stone heritage: Larvikite, Norway -- The Hallandia gneiss, a Swedish heritage stone resource -- The Kolmården serpentine marble in Sweden: a stone found both in castles and peoples homes -- Global Heritage Stone: Estremoz Marbles, Portugal -- Contribution of Portuguese two-mica granites to stone built heritage: the historical value of Oporto granite -- Piedra Pajarilla: a candidacy as a global heritage stone resource for Martinamor granite -- The Sierra Nevada serpentinites: the serpentinites most used in Spanish heritage buildings -- Villamayor Stone (Golden Stone) as a Global Heritage Stone Resource from Salamanca (NW of Spain) -- Colmenar Limestone, Madrid, Spain: considerations for its nomination as a Global Heritage Stone Resource due to its long term durability -- Carrara Marble: a nomination for Global Heritage Stone Resource from Italy -- Rosa Beta granite (Sardinian Pink Granite): a heritage stone of international significance from Italy -- Pietra Serena: the stone of the Renaissance -- Ornamental stones of the Verbano Cusio Ossola quarry district: characterization of materials, quarrying techniques and history and relevance to local and national heritage -- Stone materials used for monumental buildings in the historical centre of Turin (NW Italy): architectonical survey and petrographic characterization of Via Roma -- Podpec limestone: a heritage stone from Slovenia -- Stone heritage in Southeast Slovenia -- Ornamental stone in the history of St Petersburg architecture -- Natural stone in the built heritage of the interior of Brazil: the use of stone in Minas Gerais -- Piedra Mar del Plata: An Argentine orthoquartzite worthy of being considered as a Global Heritage Stone Resource..
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