International Conference on

Ocean Deoxygenation and Marine Species Adaptation (ICODMSA-26)

Conference Date

5th Aug - 6th Aug 2026

Conference Venue

La Condamine, Monaco

Conference Mode

Hybrid Conference
Proudly organized by:- Science Leagues

"Join global experts in Ocean Deoxygenation and Marine Species Adaptation"

Registration Options

View all registration categories and choose the best fit.

Conference Session Tracks

SDG Wheel

Aligned with

UN Sustainable Development Goals

This conference contributes to global sustainability by aligning its research discussions and academic sessions with key United Nations Sustainable Development Goals. It fosters knowledge exchange, innovation, and collaborative engagement.

SDG 13
SDG 13 Climate Action
SDG 14
SDG 14 Life Below Water
SDG 15
SDG 15 Life on Land
SDG 17
SDG 17 Partnerships for the Goals
Track 01

Ocean Deoxygenation Mechanisms

This session will explore the underlying mechanisms driving ocean deoxygenation, including biogeochemical cycles and anthropogenic influences. Emphasis will be placed on the interactions between physical and chemical processes that contribute to hypoxic conditions.

Track 02

Impact of Hypoxia on Marine Biodiversity

This track will investigate the effects of hypoxic environments on marine species diversity and ecosystem dynamics. Presentations will focus on case studies highlighting shifts in species composition and community structure in oxygen-depleted zones.

Track 03

Adaptation Strategies of Marine Species

This session will discuss the adaptive responses of marine organisms to changing oxygen levels and environmental stressors. Research will cover physiological, behavioral, and ecological adaptations that enhance resilience in hypoxic conditions.

Track 04

Ecosystem Health and Monitoring

This track will address methodologies for assessing ecosystem health in the context of ocean deoxygenation. It will highlight innovative monitoring techniques and indicators that can effectively measure the impacts of hypoxia on marine ecosystems.

Track 05

Climate Change and Ocean Chemistry

This session will examine the interplay between climate change and ocean chemistry, focusing on how rising temperatures and CO2 levels influence oxygen solubility and distribution. Discussions will include implications for marine life and ecosystem stability.

Track 06

Oxygen Minimum Zones: Dynamics and Implications

This track will delve into the formation and dynamics of oxygen minimum zones (OMZs) and their ecological implications. Presentations will cover the spatial and temporal variability of OMZs and their effects on marine biota.

Track 07

Species Interactions in Hypoxic Environments

This session will focus on the interactions between species in hypoxic environments, including competition, predation, and symbiosis. Research will highlight how these interactions are altered by reduced oxygen availability.

Track 08

Ecosystem Modeling of Deoxygenation Effects

This track will present advanced modeling approaches to predict the impacts of ocean deoxygenation on marine ecosystems. Emphasis will be placed on integrating biophysical models with ecological data to assess future scenarios.

Track 09

Conservation Strategies for Hypoxic Regions

This session will explore conservation strategies aimed at mitigating the effects of hypoxia on marine ecosystems. Discussions will include policy frameworks, management practices, and community engagement in conservation efforts.

Track 10

Marine Physiology Under Stress

This track will investigate the physiological responses of marine organisms to hypoxic stress. Research will focus on metabolic adaptations, stress tolerance mechanisms, and the implications for survival and reproduction.

Track 11

Future Directions in Oceanographic Research

This session will highlight emerging trends and future directions in oceanographic research related to deoxygenation and species adaptation. It will encourage interdisciplinary collaboration and innovative approaches to address the challenges posed by environmental change.