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March 10, 2026Quaternary Science Reviews0 citationsOpen Access

Deglaciation of Anticosti Island (eastern Canada) and its implications on climate-driven dynamics of the Laurentide Ice Sheet margin

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PCPierre-Olivier CouettePBPascal BernatchezVRVincent Rinterknecht

Key Points

  • This research aims to reconstruct the retreat pattern of the Laurentide Ice Sheet margin and its climate sensitivity.
  • Generated a geomorphological map of ice-marginal landforms from Anticosti Island.
  • Analyzed 31 cosmogenic nuclide surface exposure ages and 24 radiocarbon dates.
  • Assessed correlations between deglaciation patterns and climate changes during the last glacial period.
  • The Laurentide Ice Sheet stabilized on Anticosti Island between ∼15.5 and ∼14.4 ka.
  • Ice margin retreat was linked to climate warming during the Bølling-Allerød period (∼14.6 ka).
  • Strong sensitivity of the ice margin to temperature variations in the Northern Hemisphere was highlighted.

Abstract

Reconstructing the dynamical retreat pattern of former ice margins is essential to better understand the long-term evolution of ice-sheets and their sensitivity to climate change. Here we present a geomorphological map of ice-marginal landforms from Anticosti Island together with 31 cosmogenic nuclide surface exposure and 24 radiocarbon ages, that suggest close ties between regional deglaciation patterns and climate. These results reveal that the Laurentide Ice Sheet stabilized on Anticosti Island between ∼15.5 and ∼14.4 ka, before subsequently resuming its retreat toward the Québec North Shore and into the Gulf of St. Lawrence. Moraine ages highlight a strong sensitivity of the LIS to temperature changes in the Northern Hemisphere, as the documented ice-margin stabilizations coincide with the end of Heinrich Stadial 1, a period after the Last Glacial Maximum characterized by cold winters but warming summers. In turn, ice sheet recession in the area coincided with the onset of the Bølling-Allerød (∼14.6 ka), marked by relatively warmer atmosphere temperature year-round across the Northern Hemisphere. These results provide evidence for the synchronicity of the ice margin along the southeastern Laurentide Ice Sheet in response to abrupt cold periods and allow further discussion of the regional implications for deglaciation of the Laurentian Channel in the context of a large calving bay formation in the former Gulf of St. Lawrence.

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Cite This Study

Couette et al. (2026) studied this question.

synapsesocial.com/papers/69af958570916d39fea4d376https://doi.org/10.1016/j.quascirev.2026.109904
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Early deglaciation history of the southeastern Baffin Island shelf (Eastern Canadian Arctic Archipelago)2026
  2. 2Dynamical response of the southwestern Laurentide Ice Sheet to rapid Bølling–Allerød warming2024 · 4 citations
  3. 3Interaction between ice sheet dynamics and sea surface characteristics in the Labrador Sea during the last 50 ka2024 · 1 citations
  4. 4Laurentide Ice Sheet dynamics across multiple glacial-interglacial cycles from Quaternary stratigraphic records in central Canada2026
  5. 5Reconstructing the deglacial dynamics of the northwestern Laurentide Ice Sheet 2024