
Products
Group: palsea
Highlights
1.
(2015)
Sea-level rise due to polar ice-sheet mass loss during past warm periods
, Science
349
(6244)
: aaa4019-1
, DOI:10.1126/science.aaa4019
2.
(2016)
Temperature-driven global sea-level variability in the Common Era
, PNAS
113
(11)
: E1434–E1441
, DOI:10.1073/pnas.1517056113
3.
(2009)
The Sea-Level Conundrum: Case Studies From Palaeo-Archives
, Journal of Quaternary Science
25
(1)
: 19-25
, DOI:10.1002/jqs.1270
4.
(2011)
Sea-level Oscillations During the Last Interglacial Highstand Recorded by Bahamas Corals
, Nature Geoscience
4
(10)
: 684-687
, DOI:10.1038/ngeo1253
Journal articles
1.
(2010)
The Timing of Sea-Level High-Stands During Marine Isotope Stages 7.5 and 9: Constraints from the Uranium-Series Dating of Fossil Corals from Henderson Island
, Geochimica et Cosmochimica Acta
74
(12)
: 3598-3620
, DOI:10.1016/j.gca.2010.03.020
2.
(2013)
Constraints on Antarctic Ice Sheet configuration during and following the last glacial maximum and its episodic contribution to sea-level rise
, Geological Society, London, Special Publications
381
, DOI:10.1144/SP381.13
3.
(2014)
Variable response of coastal environments of the northwestern Gulf of Mexico to sea-level rise and climate change: Implications for future change
, Marine Geology
Available online 14 December 2013
, DOI:10.1016/j.margeo.2013.12.008
4.
(2017)
Detection of a dynamic topography signal in last interglacial sea-level records
, Science Advances
3
(7)
: e1700457
, DOI:10.1126/sciadv.1700457
5.
(2014)
Salt-marsh reconstructions of relative sea-level change in the North Atlantic during the last 2000 years
, Quaternary Science Reviews
99
: 1-16
, DOI:10.1016/j.quascirev.2014.06.008
6.
(2016)
Testing models of ice cap extent, South Georgia, sub-Antarctic
, Quaternary Science Reviews
154
: 157–168
, DOI:10.1016/j.quascirev.2016.11.007
7.
(2017)
Relative sea-level variability during the late Middle Pleistocene: New evidence from eastern England
, Quaternary Science Reviews
173
: 20-39
, DOI:10.1016/j.quascirev.2017.08.017
8.
(2018)
Lack of evidence for a substantial sea-level fluctuation within the Last Interglacial
, Nature Geoscience
11
: 627–634
, DOI:10.1038/s41561-018-0195-4
9.
(2013)
Salt marshes as late Holocene tide gauges
, Global and Planetary Change
106
: 90-110
, DOI:10.1016/j.gloplacha.2013.03.003
10.
(2013)
Combining Ice Core Records and Ice Sheet Models to Explore the Evolution of the East Antarctic Ice Sheet During the Last Interglacial Period
, Global and Planetary Change
100
: 278–290
, DOI:10.1016/j.gloplacha.2012.11.002
11.
(2012)
Where Might We Find Evidence of a Last Interglacial West Antarctic Ice Sheet Collapse in Antarctic Ice Core Records?
, Global and Planetary Change
88-89
: 64–75
, DOI:10.1016/j.gloplacha.2012.03.004
12.
(2016)
Past, Present and Future Perspectives of Sediment Compaction as a Driver of Relative Sea Level and Coastal Change
, Current Climate Change Reports
2
(3)
: 75-85
, DOI:10.1007/s40641-016-0038-6
13.
(2015)
Quantifying the contribution of sediment compaction to late Holocene salt-marsh sea-level reconstructions (North Carolina, USA)
, Quaternary Research
83
(1)
: 41-51
, DOI:10.1016/j.yqres.2014.08.003
14.
(2013)
How to evaluate model-derived deglaciation chronologies: a case study using Antarctica
, Quaternary Science Reviews
63
: 109-127
, DOI:10.1016/j.quascirev.2012.11.021
15.
(2015)
Modeling sea-level change using errors-in-variables integrated gaussian processes
, Annals of Applied Statistics
9
(2)
: 547-571
, DOI:10.1214/15-AOAS824
16.
(2012)
Northern Hemisphere Ice-Sheet Responses to Past Climate Warming
, Nature Geoscience
5
(9)
: 607–613
, DOI:10.1038/ngeo1528
17.
(2018)
Seawater 234U/238U recorded by modern and fossil corals
, Geochimica et Cosmochimica Acta
224
: 1-17
, DOI:10.1016/j.gca.2017.12.017
18.
(2016)
Palaeo-sea-level and palaeo-ice-sheet databases: problems, strategies, and perspectives
, Climate of the Past
12
(4)
: 911–921
, DOI:10.5194/cp-12-911-2016
19.
(2021)
Sea-level stands from the Western Mediterranean over the past 6.5 million years
, Scientific Reports
11
: 261
, DOI:10.1038/s41598-020-80025-6
20.
(2016)
The role of Holocene relative sea-level change in preserving records of subduction zone earthquakes
, Current Climate Change Reports
2
(3)
: 86–100
, DOI:10.1007/s40641-016-0041-y
21.
(2012)
Ice Volume and Sea Level During the Last Interglacial
, Science
337
(6091)
: 216-219
, DOI:10.1126/science.1205749
22.
(2015)
Sea-level rise due to polar ice-sheet mass loss during past warm periods
, Science
349
(6244)
: aaa4019-1
, DOI:10.1126/science.aaa4019
23.
(2017)
Data reporting standards for publication of U-series data for geochronology and timescale assessment in the earth sciences
, Quaternary Geochronology
39
: 142-149
, DOI:10.1016/j.quageo.2017.03.001
24.
(2012)
Holocene Sea Level Database for the Atlantic Coast of the United States
, Quaternary Science Reviews
54
: 12-25
, DOI:10.1016/j.quascirev.2011.09.013
25.
(2011)
Holocene Sea Level Changes Along the United States' Atlantic Coast
, Oceanography
24
(2)
: 70-79
, DOI:10.5670/oceanog.2011.28
26.
(2011)
Holocene Relative Sea-Level Changes and Glacial Isostatic Adjustment of the U.S. Atlantic Coast
, Geology
39
: 751-754
, DOI:10.1130/G31857.1
27.
(2015)
A sea-level database for the Pacific coast of central North America
, Quaternary Science Reviews
113
: 78–92
, DOI:10.1016/j.quascirev.2014.12.001
28.
(2012)
Linking the Historic 2011 Mississippi River Flood to Coastal Wetland Sedimentation
, Nature Geoscience
5
(11)
: 803-807
, DOI:10.1038/ngeo1615
29.
(2017)
Impact of climate change on New York City’s coastal flood hazard: Increasing flood heights from the preindustrial to 2300 CE
, PNAS
114
(45)
: 11861-11866
, DOI:10.1073/pnas.1703568114
30.
(2012)
Exploring Uncertainties in the Relationship Between Temperature, Ice Volume, and Sea Level Over the Past 50 Million Years
, Reviews of Geophysics
50
(1)
, DOI:10.1029/2011RG000358
31.
(2013)
When Did Modern Rates of Sea-Level Rise Start?
, Global and Planetary Change
100
: 263–277
, DOI:10.1016/j.gloplacha.2012.10.020
32.
(2011)
Two Millennia of Sea Level Data: The Key to Predicting Change
, Eos, Transactions American Geophysical Union
92
(35)
: 289-290
, DOI:10.1029/2011EO350001
33.
(2020)
Could the Last Interglacial Constrain Projections of Future Antarctic Ice Mass Loss and Sea‐level Rise?
, Journal of Geophysical Research: Earth Surface
: e2019JF005418
, DOI:10.1029/2019JF005418
34.
(2015)
A new Holocene relative sea-level curve for western Brittany (France): insights on isostatic dynamics along the Atlantic coast of north-western Europe
, Quaternary Science Reviews
129
: 341-365
, DOI:10.1016/j.quascirev.2015.10.029
35.
(2021)
Last interglacial (MIS 5e) sea-level proxies in southeastern South America
, Earth System Science Data
13
: 171-197
, DOI:10.5194/essd-13-171-2021
36.
(2021)
A new global ice sheet reconstruction for the past 80 000 years
, Nature Communications
12
: 1199
, DOI:10.1038/s41467-021-21469-w
37.
(2012)
Deglacial Rapid Sea Level Rises Caused By Ice-Sheet Saddle Collapses
, Nature
487
(7406)
: 219–222
, DOI:10.1038/nature11257
38.
(2013)
A High-Resolution Study of Tides in the Delaware Bay: Past Conditions and Future Scenarios
, Geophysical Research
40
(2)
: 338–342
, DOI:10.1029/2012GL054675
39.
(2018)
Ice volume and climate changes from a 6000 year sea-level record in French Polynesia
, Nature Communications
9
: 285
, DOI:10.1038/s41467-017-02695-7
40.
(2016)
Relative sea-level change in northeastern Florida (USA) during the last∼ 8.0 ka
, Quaternary Science Reviews
142
: 90-101
, DOI:10.1016/j.quascirev.2016.04.016
41.
(2020)
Pliocene‐Pleistocene Stratigraphy and Sea‐Level Estimates, Republic of South Africa With Implications for a 400 ppmv CO2 World
, Paleoceanography and Paleoclimatology
35
(7)
: e2019PA003835
, DOI:10.1029/2019PA003835
42.
(2016)
Coral indicators of past sea-level change: A global repository of U-series dated benchmarks
, Quaternary Science Reviews
145
: 1-56
, DOI:10.1016/j.quascirev.2016.04.019
43.
(2013)
Influence of tidal-range change and sediment compaction on Holocene relative sea-level change in New Jersey, USA
, Journal of Quaternary Science
28
(4)
: 403-411
, DOI:10.1002/jqs.2634
44.
(2020)
Estimating global mean sea-level rise and its uncertainties by 2100 and 2300 from an expert survey
, npj Climate and Atmospheric Science
3
: 18
, DOI:10.1038/s41612-020-0121-5
45.
(2018)
Mapping Sea-Level Change in Time, Space, and Probability
, Annual Review of Environment and Resources
43
: 481-521
, DOI:10.1146/annurev-environ-102017-025826
46.
(2017)
Microfossil measures of rapid sea-level rise: Timing of response of two microfossil groups to a sudden tidal-flooding experiment in Cascadia
, Geology
45
(6)
: 535-538
, DOI:10.1130/G38832.1
47.
(2014)
Expert assessment of sea-level rise by AD 2100 and AD2300
, Quaternary Science Reviews
84
: 1-6
, DOI:10.1016/j.quascirev.2013.11.002
48.
(2018)
Predicting marsh vulnerability to sea-level rise using Holocene relative sea-level data
, Nature Communications
9
(Article number: 2687)
, DOI:10.1038/s41467-018-05080-0
49.
(2013)
Contribution of relative sea-level rise to historical hurricane flooding in New York City
, Journal of Quaternary Science
28
(6)
: 537-541
, DOI:10.1002/jqs.2653
50.
(2014)
Late Holocene relative sea- and land-level change on the U.S. southeastern Atlantic coast
, Marine Geology
357
: 90-100
, DOI:10.1016/j.margeo.2014.07.010
51.
(2015)
Paleo Constraints on Future Sea-Level Rise
, Current Climate Change Reports
1
(3)
: 205-215
, DOI:10.1007/s40641-015-0014-6
52.
(2013)
Sea-level change during the last 2500 years in New Jersey, USA
, Quaternary Science Reviews
81
: 90-104
, DOI:10.1016/j.quascirev.2013.09.024
53.
(2012)
Quantitative Vertical Zonation of Salt-Marsh Foraminifera for Reconstructing Former Sea Level; An Example from New Jersey, USA
, Quaternary Science Reviews
54
: 26-39
, DOI:10.1016/j.quascirev.2011.09.014
54.
(2017)
Extended late Holocene relative sea-level histories for North Carolina, USA
, Quaternary Science Reviews
160
: 13–30
, DOI:10.1016/j.quascirev.2017.01.012
55.
(2012)
Use of Lead Isotopes for Developing Chronologies in Recent Salt-Marsh Sediments
, Quaternary Geochronology
12
: 40–49
, DOI:10.1016/j.quageo.2012.05.004
56.
(2013)
Reconstructing Holocene sea level using salt-marsh foraminifera and transfer functions: lessons from New Jersey, USA
, Journal of Quaternary Science
28
(6)
: 617-629
, DOI:10.1002/jqs.2657
57.
(2012)
Application of Stable Carbon Isotopes for Reconstructing Salt-Marsh Floral Zones and Relative Sea Level, New Jersey, USA
, Journal of Quaternary Science
27
(4)
: 404-414
, DOI:10.1002/jqs.1561
58.
(2020)
Enough is Enough, or More is More? Testing the Influence of Foraminiferal Count Size on Reconstructions of Paleo-Marsh Elevation
, Journal of Foraminiferal Research
50
(3)
: 266–278
, DOI:10.2113/gsjfr.50.3.266
59.
(2017)
Drivers of Holocene sea-level change in the Caribbean
, Quaternary Science Reviews
155
: 13-36
, DOI:10.1016/j.quascirev.2016.08.032
60.
(2015)
Holocene relative sea-level changes from near-, intermediate-, and far-field locations
, Current Climate Change Reports
1
(4)
: 247–262
, DOI:10.1007/s40641-015-0029-z
61.
(2019)
The application of δ13C, TOC and C/N geochemistry of mangrove sediments to reconstruct Holocene paleoenvironments and relative sea levels, Puerto Rico
, Marine Geology
415
: 105963
, DOI:10.1016/j.margeo.2019.105963
62.
(2017)
Evolving understanding of Antarctic ice-sheet physics and ambiguity in probabilistic sea-level projections
, Earth's Future
5
(12)
: 1217-1233
, DOI:10.1002/2017EF000663
63.
(2015)
Geographic variability of sea-level change
, Current Climate Change Reports
1
(3)
: 192-204
, DOI:10.1007/s40641-015-0015-5
64.
(2015)
Past and future sea-level rise along the coast of North Carolina, United States
, Climatic Change
132
(4)
: 693–707
, DOI:10.1007/s10584-015-1451-x
65.
(2014)
Probabilistic 21st and 22nd century sea-level projections at a global network of tide gauge sites
, Earth's Future
2
(8)
: 383-406
, DOI:10.1002/2014EF000239
66.
(2016)
Temperature-driven global sea-level variability in the Common Era
, PNAS
113
(11)
: E1434–E1441
, DOI:10.1073/pnas.1517056113
67.
(2018)
The Influence of Sediment Isostatic Adjustment on Sea-Level Change and Land Motion along the US Gulf Coast
, Journal of Geophysical Research Solid Earth
122
: 12144-12149
, DOI:10.1002/2017JB014695
68.
(2016)
Relative sea-level data from southwest Scotland constrain meltwater-driven sea-level jumps prior to the 8.2 kyr BP event
, Quaternary Science Reviews
151
: 292–308
, DOI:10.1016/j.quascirev.2016.06.013
69.
(2017)
High Arctic Holocene temperature record from the Agassiz ice cap and Greenland ice sheet evolution
, PNAS
114
(23)
: 5952-5957
, DOI:10.1073/pnas.1616287114
70.
(2016)
Hurricane Sandy’s flood frequency increasing from year 1800 to 2100
, PNAS
113
(43)
: 12071–12075
, DOI:10.1073/pnas.1604386113
71.
(2016)
Sea-level constraints on the amplitude and source distribution of Meltwater Pulse 1A
, Nature Geoscience
9
: 130-134
, DOI:10.1038/NGEO2616
72.
(2016)
Lateglacial and Holocene relative sea-level changes and first evidence for the Storegga tsunami in Sutherland, Scotland
, Journal of Quaternary Science
31
(3)
: 239-255
, DOI:10.1002/jqs.2862
73.
(2015)
Near-field sea-level variability in northwest Europe and ice sheet stability during the last interglacial
, Quaternary Science Reviews
126
: 26-40
, DOI:10.1016/j.quascirev.2015.08.021
74.
(2014)
Contrasting records of sea-level change in the eastern and western North Atlantic during the last 300 years
, Earth and Planetary Science Letters
388
: 110-122
, DOI:10.1016/j.epsl.2013.11.012
75.
(2011)
Isolation basins, sea-level changes and the Holocene history of the Greenland Ice Sheet
, Quaternary Science Reviews
30
(27–28)
: 3748-3768
, DOI:10.1016/j.quascirev.2011.10.013
76.
(2019)
The indicative meaning calculator – quantification of paleo sea-level relationships by using global wave and tide datasets
, Open Geospatial Data, Software and Standards
4
(1)
: 10
, DOI:10.1186/s40965-019-0069-8
77.
(2016)
The contribution of glacial isostatic adjustment to projections of sea-level change along the Atlantic and Gulf coasts of North America
, Earth's Future
4
(10)
: 440-464
, DOI:10.1002/2016EF000363
78.
(2019)
Relative sea-level data from the SEAMIS database compared to ICE-5G model predictions of glacial isostatic adjustment
, Data in Brief
27
: 104600
, DOI:10.1016/j.dib.2019.104600
79.
(2017)
Half-metre sea-level fluctuations on centennial timescales from mid-Holocene corals of Southeast Asia
, Nature Communications
8
: 14387
, DOI:10.1038/ncomms14387
80.
(2019)
The penultimate deglaciation: protocol for Paleoclimate Modelling Intercomparison Project (PMIP) phase 4 transient numerical simulations between 140 and 127 ka, version 1.0
, Geoscientific Model Development
12
: 3649–3685
, DOI:10.5194/gmd-12-3649-2019
81.
(2015)
Reconciling past and present changes in Earth rotation with 20th century global sea-level rise: Resolving Munk’s enigma
, Science Advances
1
(11)
, DOI:10.1126/sciadv.1500679
82.
(2015)
Early–middle Holocene relative sea-level oscillation events recorded in a submerged speleothem from the Yucatán Peninsula, Mexico
, The Holocene
25
(9)
: 1511-1521
, DOI:10.1177/0959683615585832
83.
(2015)
Sea-level change and subsidence in the Delaware estuary in the last ∼ 2200 years
, Estuarine, Coastal and Shelf Science
164
: 506-519
, DOI:10.1016/j.ecss.2015.08.012
84.
(2014)
Storm erosion during the past 2000 years along the north shore of Delaware Bay, USA
, Geomorphology
208
: 160-172
, DOI:10.1016/j.geomorph.2013.11.022
85.
(2015)
Reappraisal of the Ångerman River decay time estimate and its application to determine uncertainty in Earth viscosity structure
, Geophysical Journal International
201
(2)
: 811-822
, DOI:10.1093/gji/ggv051
86.
(2009)
The Sea-Level Conundrum: Case Studies From Palaeo-Archives
, Journal of Quaternary Science
25
(1)
: 19-25
, DOI:10.1002/jqs.1270
87.
(2014)
Sea-level and deep-sea-temperature variability over the past 5.3 million years
, Nature
508
(7497)
: 477-482
, DOI:10.1038/nature13230
88.
(2017)
Giant boulders and Last Interglacial storm intensity in the North Atlantic
, PNAS
114
(46)
: 12144-12149
, DOI:10.1073/pnas.1712433114
89.
(2015)
Mid-Pliocene shorelines of the US Atlantic Coastal Plain - An improved elevation database with comparison to Earth model predictions
, Earth-Science Reviews
145
: 117-131
, DOI:10.1016/j.earscirev.2015.02.007
90.
(2014)
The Mid-Pliocene sea-level conundrum: Glacial isostasy, eustasy and dynamic topography
, Earth and Planetary Science Letters
387
: 27-33
, DOI:10.1016/j.epsl.2013.10.030
91.
(2016)
The analysis of Last Interglacial (MIS 5e) relative sea-level indicators: Reconstructing sea-level in a warmer world
, Earth-Science Reviews
159
(August)
: 404–427
, DOI:10.1016/j.earscirev.2016.06.006
92.
(2016)
Eustatic and Relative Sea Level Changes
, Current Climate Change Reports
2
(4)
: 221-231
, DOI:10.1007/s40641-016-0045-7
93.
(2015)
Sea-level changes in Iceland and the influence of the North Atlantic Oscillation during the last half millennium
, Quaternary Science Reviews
108
: 23-36
, DOI:10.1016/j.quascirev.2014.11.005
94.
(2020)
Age constraints on surface deformation recorded by fossil shorelines at Cape Range, Western Australia
, GSA Bulletin
, DOI:10.1130/B35564.1
95.
(2012)
Late Holocene Vertical Land Motion and Relative Sea-Level Changes: Lessons From the British Isles
, Journal of Quaternary Science
27
(1)
: 64-70
, DOI:10.1002/jqs.1532
96.
(2010)
Changes in Deep Pacific Temperature During the Mid-Pleistocene Transition and Quaternary
, Quaternary Science Reviews
29
(1-2)
: 170–181
, DOI:10.1016/j.quascirev.2009.05.011
97.
(2010)
Changing Influence of Antarctic and Greenlandic Temperature Records on Sea-Level Over the Last Glacial Cycle
, Quaternary Science Reviews
29
(3-4)
: 410–423
, DOI:10.1016/j.quascirev.2009.11.007
98.
(2011)
The Influence of Decadal- to Millennial-Scale Ice Mass Changes on Present-Day Vertical Land Motion in Greenland: Implications for the Interpretation of GPS Observations
, Journal of Geophysical Research: Solid Earth
116
(B2)
, DOI:10.1029/2010JB007776
99.
(2016)
Diachronous retreat of the Greenland ice sheet during the last deglaciation
, Quaternary Science Reviews
145
: 243-258
, DOI:10.1016/j.quascirev.2016.05.040
100.
(2017)
Evidence of tectonism based on differential uplift of the Falmouth Formation of Jamaica
, GSA Bulletin
130
(5-6)
: 707-720
, DOI:10.1130/B31796.1
101.
(2009)
Uranium-Series Dating of Fossil Coral Reefs: Extending the Sea-Level Record Beyond the Last Glacial Cycle
, Earth and Planetary Science Letters
284
(3-4)
: 269-283
, DOI:10.1016/j.epsl.2009.04.045
102.
(2018)
MIS 5e relative sea-level changes in the Mediterranean Sea: Contribution of isostatic disequilibrium
, Quaternary Science Reviews
185
: 122–134
, DOI:10.1016/j.quascirev.2018.01.004
103.
(2012)
Assessing Subsidence Rates and Paleo Water-Depths for Tahiti Reefs Using U–Th Chronology of Altered Corals
, Marine Geology
295-298
: 86-94
, DOI:10.1016/j.margeo.2011.12.006
104.
(2011)
Sea-level Oscillations During the Last Interglacial Highstand Recorded by Bahamas Corals
, Nature Geoscience
4
(10)
: 684-687
, DOI:10.1038/ngeo1253
105.
(2012)
Links Between Early Holocene Ice-Sheet Decay, Sea-Level Rise and Abrupt Climate Change
, Nature Geoscience
5
: 601-606
, DOI:10.1038/ngeo1536
106.
(2016)
Multiproxy assessment of Holocene relative sea-level changes in the western Mediterranean: sea-level variability and improvements in the definition of the isostatic signal
, Earth-Science Reviews
155
: 172-197
, DOI:10.1016/j.earscirev.2016.02.002
107.
(2014)
An updated database of Holocene relative sea level change in NE Aegean Sea
, Quaternary International
328-329
: 301-310
, DOI:10.1016/j.quaint.2013.08.036
108.
(2014)
An updated database of Holocene relative sea level changes in NE Aegean Sea
, Quaternary International
328–329
: 301-310
, DOI:10.1016/j.quaint.2013.08.036
109.
(2013)
Scale Considerations in Using Diatoms as Indicators of Sea-Level Change: Lessons From Alaska
, Journal of Quaternary Science
28
(2)
: 165–179
, DOI:10.1002/jqs.2592
110.
(2014)
Using relative sea-level data to constrain the deglacial and Holocene history of southern Greenland
, Quaternary Science Reviews
92
: 345-356
, DOI:10.1016/j.quascirev.2013.09.008
111.
(2015)
New constraints on late Holocene eustatic sea-level changes from Mahe Seychelles
, Quaternary Science Reviews
115
: 1-16
, DOI:10.1016/j.quascirev.2015.02.011
112.
(2018)
Rapid glaciation and a two-step sea level plunge into the Last Glacial Maximum
, Nature
559
(7715)
: 603–607
, DOI:10.1038/s41586-018-0335-4
113.
(2013)
Radiocarbon Dating of Basal Peats Supports Separation of Lake Superior from Lakes Michigan-Huron about 1250 years ago
, Earth and Planetary Science Letters
375
: 319-325
, DOI:10.1016/j.epsl.2013.05.051
114.
(2014)
Estimating tectonic uplift of the Cape Fear Arch (southeast-Atlantic coast, USA) using reconstructions of Holocene relative sea level
, Journal of Quaternary Science
29
(8)
: 749-759
, DOI:10.1002/jqs.2746
Special issues
1.
Khan N, Engelhart S, Rovere A & Horton B
(2019)
Inception of a Global Atlas of Sea Levels since the Last Glacial Maximum
, Quaternary Science Reviews
2.
Carlson A, Dutton A, Long A & Milne G
(2017)
PALeo constraints on SEA level rise (PALSEA): ice-sheet and sea-level responses to past climate warming
, Quaternary Science Reviews
3.
Siddall M & Milne G
(2012)
Sea Level and Ice Sheet Evolution: A PALSEA Special Edition
, Earth and Planetary Science Letters
315-316
: 1-102
4.
Rovere A, Ryan D, Murray-Wallace CV, Vacchi M, Simms A & Dutton A
(2020)
WALIS – the World Atlas of Last Interglacial Shorelines
, Earth System Science Data
Special issue articles
1.
(2019)
Statistical modeling of rates and trends in Holocene relative sea level
, Quaternary Science Reviews
204
: 58-77
, DOI:10.1016/j.quascirev.2018.10.032
2.
(2018)
A postglacial relative sea-level database for the Russian Arctic coast
, Quaternary Science Reviews
199
: 188-205
, DOI:10.1016/j.quascirev.2018.07.033
3.
Siddall M & Milne G
(2012)
Relative sea-level response to Little Ice Age ice mass change in south central Alaska: Reconciling model predictions and geological evidence
, Earth and Planetary Science Letters
315-316
: 62-75
, DOI:10.1016/j.epsl.2011.09.048
4.
(2019)
Late Holocene sea-level changes in eastern Québec and potential drivers
, Quaternary Science Reviews
203
: 151-169
, DOI:10.1016/j.quascirev.2018.10.039
5.
(2019)
PALeo constraints on SEA level rise (PALSEA): Ice-sheet and sea-level responses to past climate warming
, Quaternary Science Reviews
212
: 28-32
, DOI:10.1016/j.quascirev.2019.03.032
6.
Carlson A, Dutton A, Long A & Milne G
(2018)
Rapid Laurentide ice-sheet advance towards southern last glacial maximum limit during marine isotope stage 3
, Quaternary Science Reviews
196
: 118-123
, DOI:10.1016/j.quascirev.2018.07.039
7.
Siddall M & Milne G
(2012)
Modeling the surface mass-balance response of the Laurentide Ice Sheet to Bølling warming and its contribution to Meltwater Pulse 1A
, Earth and Planetary Science Letters
315-316
: 24-29
, DOI:10.1016/j.epsl.2011.07.008
8.
(2018)
Sea-level change in southern Africa since the Last Glacial Maximum
, Quaternary Science Reviews
201
: 303-318
, DOI:10.1016/j.quascirev.2018.10.013
9.
(2019)
Can we detect centennial sea-level variations over the last three thousand years in Israeli archaeological records?
, Quaternary Science Reviews
210
: 125-135
, DOI:10.1016/j.quascirev.2019.02.021
10.
(2018)
Holocene sea-level database from the Atlantic coast of Europe
, Quaternary Science Reviews
196
: 177-192
, DOI:10.1016/j.quascirev.2018.07.031
11.
Siddall M & Milne G
(2012)
Nineteenth and twentieth century sea-level changes in Tasmania and New Zealand
, Earth and Planetary Science Letters
315-316
: 94-102
, DOI:10.1016/j.epsl.2011.08.046
12.
(2018)
Mid- to late Pliocene (3.3–2.6 Ma) global sea-level fluctuations recorded on a continental shelf transect, Whanganui Basin, New Zealand
, Quaternary Science Reviews
201
: 241-260
, DOI:10.1016/j.quascirev.2018.09.044
13.
(2019)
Holocene sea-level database for the Rhine-Meuse Delta, The Netherlands: Implications for the pre-8.2 ka sea-level jump
, Quaternary Science Reviews
214
: 68-86
, DOI:10.1016/j.quascirev.2019.05.001
14.
Khan N, Engelhart S, Roverre A & Horton B
(2019)
Inception of a global atlas of sea levels since the Last Glacial Maximum
, Quaternary Science Reviews
220
: 359-371
, DOI:10.1016/j.quascirev.2019.07.016
15.
Siddall M & Milne G
(2012)
The anatomy of interglacial sea levels: The relationship between sea levels and ice volumes during the Last Interglacial
, Earth and Planetary Science Letters
315-316
: 4-11
, DOI:10.1016/j.epsl.2011.08.026
16.
Siddall M & Milne G
(2012)
Synchronizing a sea-level jump, final Lake Agassiz drainage, and abrupt cooling 8200 years ago
, Earth and Planetary Science Letters
315-316
: 41-50
, DOI:10.1016/j.epsl.2011.05.034
17.
Siddall M & Milne G
(2012)
Relative sea-level change in Greenland during the last 700 yrs and ice sheet response to the Little Ice Age
, Earth and Planetary Science Letters
315-316
: 76-85
, DOI:10.1016/j.epsl.2011.06.027
18.
(2019)
Holocene sea levels in Southeast Asia, Maldives, India and Sri Lanka: The SEAMIS database
, Quaternary Science Reviews
219
: 112-125
, DOI:10.1016/j.quascirev.2019.07.007
19.
(2017)
The PMIP4 contribution to CMIP6 – Part 2: Two interglacials, scientific objective and experimental design for Holocene and Last Interglacial simulations
, Geoscientific Model Development
10
(11)
: 3979–4003
, DOI:10.5194/gmd-10-3979-2017
20.
Carlson A, Dutton A, Long A & Milne G
(2018)
Refining the Laurentide Ice Sheet at Marine Isotope Stage 3: A data-based approach combining glacial isostatic simulations with a dynamic ice model
, Quaternary Science Reviews
195
: 171-179
, DOI:10.1016/j.quascirev.2018.07.023
21.
Carlson A, Dutton A, Long A & Milne G
(2018)
Quantifying variable rates of postglacial relative sea level fall from a cluster of 24 isolation basins in southern Norway
, Quaternary Science Reviews
197
: 175-192
, DOI:10.1016/j.quascirev.2018.07.041
22.
(2018)
Tectonic influences on late Holocene relative sea levels from the central-eastern Adriatic coast of Croatia
, Quaternary Science Reviews
200
: 262-275
, DOI:10.1016/j.quascirev.2018.09.015
23.
(2018)
Relative sea-level changes and crustal movements in Britain and Ireland since the Last Glacial Maximum
, Quaternary Science Reviews
188
: 143-159
, DOI:10.1016/j.quascirev.2018.03.031
24.
(2012)
Preface: Sea Level and Ice Sheet Evolution: A PALSEA Special Edition
, Earth and Planetary Science Letters
315-316
: 1
, DOI:10.1016/j.epsl.2012.01.004
25.
(2012)
Understanding sea-level change is impossible without both insights from paleo studies and working across disciplines
, Earth and Planetary Science Letters
315-316
: 2-3
, DOI:10.1016/j.epsl.2011.10.023
26.
Siddall M & Milne G
(2012)
Uncertainties in elevation changes and their impact on Antarctic temperature records since the end of the last glacial period
, Earth and Planetary Science Letters
315-316
: 12-23
, DOI:10.1016/j.epsl.2011.04.032
27.
(2019)
Balancing the last glacial maximum (LGM) sea-level budget
, Quaternary Science Reviews
205
: 143-153
, DOI:10.1016/j.quascirev.2018.12.018
28.
Carlson A, Dutton A, Long A & Milne G
(2018)
Late Holocene relative sea levels near Palmer Station, northern Antarctic Peninsula, strongly controlled by late Holocene ice-mass changes
, Quaternary Science Reviews
199
: 45-59
, DOI:10.1016/j.quascirev.2018.09.017
29.
Carlson A, Dutton A, Long A & Milne G
(2018)
Relative sea-level change during the Last Interglacial as recorded in Bahamian fossil reefs
, Quaternary Science Reviews
200
: 160-177
, DOI:10.1016/j.quascirev.2018.09.033
30.
(2018)
A below-the-present late Holocene relative sea level and the glacial isostatic adjustment during the Holocene in the Malay Peninsula
, Quaternary Science Reviews
201
: 206-222
, DOI:10.1016/j.quascirev.2018.10.009
31.
Siddall M & Milne G
(2012)
A data-calibrated distribution of deglacial chronologies for the North American ice complex from glaciological modeling
, Earth and Planetary Science Letters
315-316
: 30-40
, DOI:10.1016/j.epsl.2011.09.010
32.
(2018)
Postglacial relative sea-level histories along the eastern Canadian coastline
, Quaternary Science Reviews
201
: 124-146
, DOI:10.1016/j.quascirev.2018.09.043
33.
(2018)
New relative sea-level insights into the isostatic history of the Western Mediterranean
, Quaternary Science Reviews
201
: 396-408
, DOI:10.1016/j.quascirev.2018.10.025
34.
Siddall M & Milne G
(2012)
Century-scale relative sea-level changes in West Greenland — A plausibility study to assess contributions from the cryosphere and the ocean
, Earth and Planetary Science Letters
315-316
: 86-93
, DOI:10.1016/j.epsl.2011.09.029
35.
Siddall M & Milne G
(2012)
Evidence for centennial scale sea level variability during the Medieval Climate Optimum (Crusader Period) in Israel, eastern Mediterranean
, Earth and Planetary Science Letters
315-316
: 51-61
, DOI:10.1016/j.epsl.2011.07.019
36.
Carlson A, Dutton A, Long A & Milne G
(2018)
Holocene sea-level history of the northern coast of South China Sea
, Quaternary Science Reviews
194
: 12-26
, DOI:10.1016/j.quascirev.2018.06.022
37.
Carlson A, Dutton A, Long A & Milne G
(2019)
Holocene Indian Ocean sea level, Antarctic melting history and past Tsunami deposits inferred using sea level reconstructions from the Sri Lankan, Southeastern Indian and Maldivian coasts
, Quaternary Science Reviews
, DOI:10.1016/j.quascirev.2018.11.024
38.
Carlson A, Dutton A, Long A & Milne G
(2018)
Glacial isostatic adjustment along the Pacific coast of central North America
, Quaternary Science Reviews
193
: 288-311
, DOI:10.1016/j.quascirev.2018.06.017
PAGES Magazine issues
1.
Siddall M, Thompson WG, Waelbroeck C & Newman L
(2009)
17 (2): Understanding sea level: Ways forward from the past
, PAGES news
17
(2)
: 49-88
, DOI:10.22498/pages.17.2
2.
Barlow NLM, Milne GA, Shakun JD & Eggleston S
(2019)
27 (1): Paleo Constraints on Sea-Level Rise
, Past Global Changes Magazine
27
(1)
: 1-44
, DOI:10.22498/pages.27.1
PAGES Magazine articles
1.
(2009)
Ice sheet-climate interactions during the ice age cycle
, PAGES news
17
(2)
: 73-74
, DOI:10.22498/pages.17.2.73
2.
(2011)
Relative sea level, ice sheets and isostasy past, present and future: Understanding the implications for human populations
, PAGES news
19
(2)
: 87-88
, DOI:10.22498/pages.19.2.87
3.
(2009)
U-series dating of fossil coral reefs: Consensus and controversy
, PAGES news
17
(2)
: 54-56
, DOI:10.22498/pages.17.2.54
4.
(2019)
The importance of dynamic topography for understanding past sea level changes
, Past Global Changes Magazine
27
(1)
: 18-19
, DOI:10.22498/pages.27.1.18
5.
(2009)
Recent Antarctic and Greenland ice-mass fluxes from satellite observations and their significance
, PAGES news
17
(2)
: 52-54
, DOI:10.22498/pages.17.2.52
6.
(2019)
Editorial: A decade of PALSEA: Advances and future aims
, Past Global Changes Magazine
27
(1)
: 3
, DOI:10.22498/pages.27.1.3
7.
(2019)
Late Holocene sea level
, Past Global Changes Magazine
27
(1)
: 8-9
, DOI:10.22498/pages.27.1.8
8.
(2016)
Sea-level budgets at decadal to millennial timescales to bridge paleo and instrumental records
, PAGES Magazine
24
(2)
: 80
, DOI:10.22498/pages.24.2.80
9.
(2019)
Big data: Challenges and solutions of archiving over 130,000 years of sea-level change
, Past Global Changes Magazine
27
(2)
: 85
, DOI:10.22498/pages.27.2.85
10.
(2012)
Assessing the history of the Greenland Ice Sheet through ocean drilling
, PAGES news
20
(2)
: 97
, DOI:10.22498/pages.20.2.97
11.
(2019)
Interglacial ice extents of the Greenland ice sheet
, Past Global Changes Magazine
27
(1)
: 12-13
, DOI:10.22498/pages.27.1.12
12.
(2009)
Ice sheet retreat and sea level rise during the last deglaciation
, PAGES news
17
(2)
: 64-66
, DOI:10.22498/pages.17.2.64
13.
(2019)
What do we know about Last Interglacial sea level?
, Past Global Changes Magazine
27
(1)
: 6-7
, DOI:10.22498/pages.27.1.6
14.
(2009)
A new chronology of sea level highstands for the penultimate interglacial
, PAGES news
17
(2)
: 66-68
, DOI:10.22498/pages.17.2.66
15.
(2013)
Ice sheet climate interactions: Implications for coastal engineering
, PAGES news
21
(1)
: 40
, DOI:10.22498/pages.21.1.40
16.
(2019)
Storms and extreme events: Insights from the historical and paleo record
, Past Global Changes Magazine
27
(1)
: 26-27
, DOI:10.22498/pages.27.1.26
17.
(2019)
The importance of sediment in sea-level change
, Past Global Changes Magazine
27
(1)
: 24-25
, DOI:10.22498/pages.27.1.24
18.
(2020)
Paleo sea-level science is advancing through Earth- and ice-process insights, but key questions linger
, Past Global Changes Magazine
28
(2)
: 67
, DOI:10.22498/pages.28.2.67
19.
(2009)
Coastal vegetation evidence for sea level changes associated with Heinrich Events
, PAGES news
17
(2)
: 70-72
, DOI:10.22498/pages.17.2.70
20.
(2019)
Geological records of past sea-level changes as constraints for future projections
, Past Global Changes Magazine
27
(1)
: 28-29
, DOI:10.22498/pages.27.1.28
21.
(2009)
The dimensions of the Greenland Ice Sheet since the Last Glacial Maximum
, PAGES news
17
(2)
: 60-61
, DOI:10.22498/pages.17.2.60
22.
(2019)
Sea-level databases
, Past Global Changes Magazine
27
(1)
: 10-11
, DOI:10.22498/pages.27.1.10
23.
(2009)
Termination of the Medieval Warm Period: Linking sub-polar and tropical N Atlantic circulation changes to ENSO
, PAGES news
17
(2)
: 76-77
, DOI:10.22498/pages.17.2.76
24.
(2009)
First international cave monitoring field workshop
, PAGES news
17
(2)
: 83-84
, DOI:10.22498/pages.17.2.83
25.
(2019)
Peak sea level during the warm Pliocene: Errors, limitations, and constraints
, Past Global Changes Magazine
27
(1)
: 4-5
, DOI:10.22498/pages.27.1.4
26.
(2014)
Estimating rates and sources of sea level change during past warm periods
, Past Global Changes Magazine
22
(1)
: 42
, DOI:10.22498/pages.22.1.42
27.
(2009)
Using models to inform the field community: Far-field sea level data applications
, PAGES news
17
(2)
: 56-57
, DOI:10.22498/pages.17.2.56
28.
(2019)
Advances in glacial isostatic adjustment modeling
, Past Global Changes Magazine
27
(1)
: 16-17
, DOI:10.22498/pages.27.1.16
29.
(2019)
Arctic warming and the Greenland ice sheet during the Last Interglacial
, Past Global Changes Magazine
27
(1)
: 22-23
, DOI:10.22498/pages.27.1.22
30.
(2009)
PLIOMAX: Pliocene maximum sea level project
, PAGES news
17
(2)
: 58-59
, DOI:10.22498/pages.17.2.58
31.
(2009)
Reading the first early Cenozoic central Arctic sediment record: A palynological view
, PAGES news
17
(2)
: 78-80
, DOI:10.22498/pages.17.2.78
32.
(2009)
Integrated analysis of interglacial climate dynamics - INTERDYNAMIC Status Seminar
, PAGES news
17
(2)
: 84-85
, DOI:10.22498/pages.17.2.84
33.
(2009)
Potential imprint of changes in multidecadal climate variability on temperature reconstructions of the past millennium
, PAGES news
17
(2)
: 80-81
, DOI:10.22498/pages.17.2.80
34.
(2012)
Ice sheet modeling, sea level and isostasy
, PAGES news
20
(1)
: 50
, DOI:10.22498/pages.20.1.50
35.
(2009)
Editorial: Past ice sheet dynamics and sea level—placing the future in context
, PAGES news
17
(2)
: 51-52
, DOI:10.22498/pages.17.2.51
36.
(2019)
On recovering Last Interglacial changes in the Antarctic ice sheet
, Past Global Changes Magazine
27
(1)
: 14-15
, DOI:10.22498/pages.27.1.14
37.
(2015)
Quantifying global sea level during warm periods
, Past Global Changes Magazine
23
(2)
: 73
, DOI:10.22498/pages.23.2.73
38.
(2018)
Phasing of ice-sheet and sea-level responses to past climate change
, Past Global Changes Magazine
26
(1)
: 37
, DOI:10.22498/pages.26.1.37
39.
(2009)
Extending the uranium-series dating of fossil coral reefs back to marine isotope stage 15
, PAGES news
17
(2)
: 62-64
, DOI:10.22498/pages.17.2.62
40.
(2010)
Understanding future sea level rise: The challenges of dating past interglacials
, PAGES news
18
(1)
: 39-40
, DOI:10.22498/pages.18.1.39
41.
(2009)
Global monsoon in observations, simulations and geological records
, PAGES news
17
(2)
: 82-83
, DOI:10.22498/pages.17.2.82
42.
(2015)
Developing databases of past sea-level and ice-sheet indicators
, Past Global Changes Magazine
23
(1)
: 31
, DOI:10.22498/pages.23.1.31
43.
(2009)
Sustainable water and land management in semi-arid regions: Middle East and North Africa (MENA)
, PAGES news
17
(2)
: 86-87
, DOI:10.22498/pages.17.2.86
44.
(2009)
Tempo of global deglaciation during the early Holocene: A sea level perspective
, PAGES news
17
(2)
: 68-70
, DOI:10.22498/pages.17.2.68
45.
(2019)
Paleo ice-sheet modeling to constrain past sea level
, Past Global Changes Magazine
27
(1)
: 20-21
, DOI:10.22498/pages.27.1.20
Workshop reports
1.
2.
3.
Richman BT
(2016)
Sea level and ice sheet changes during past warm periods
, Eos
97
, DOI:10.1029/2016EO044527
4.
5.
(2018)
Dynamic ice sheet and sea level response to past climate change
, Eos
99
, DOI:10.1029/2018EO098171
6.
(2009)
The Sea Level Conundrum: Insights From Paleo Studies
, Eos, Transactions American Geophysical Union
90
(9)
: 72-73
, DOI:10.1029/2009EO090007
7.
(2017)
Reconstructing Past Sea Level Change to Understand the Future
, Eos
98
, DOI:10.1029/2017EO072403
8.
(2010)
Facilitating Progress on the Quaternary History of Sea Level Change
, Eos, Transactions American Geophysical Union
91
(17)
: 155
, DOI:10.1029/2010EO170005
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