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Temperature Measurement Sites01:14

Temperature Measurement Sites

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A thermometer measures body temperature. The common sites for measuring body temperature are the oral cavity, axillary region, temporal artery, and skin surface, such as the forehead, abdomen, and axilla. True core body temperature is assessed in the rectum, tympanic membrane, pulmonary artery, esophagus, and urinary bladder.
Oral: When assessing oral temperature, the thermometer tip should be placed under the tongue in the posterior sublingual pocket. It offers accurate readings and can be...
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Related Experiment Video

Updated: Nov 8, 2025

Investigating the Relationship between Sea Surface Chlorophyll and Major Features of the South China Sea with Satellite Information
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Investigating the Relationship between Sea Surface Chlorophyll and Major Features of the South China Sea with Satellite Information

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Uncovering marine connectivity through sea surface temperature.

Ljuba Novi1, Annalisa Bracco2,3, Fabrizio Falasca3

  • 1Institute of Geosciences and Earth Resources (IGG), National Research Council (CNR), 56124, Pisa, Italy. ljuba.novi@igg.cnr.it.

Scientific Reports
|April 24, 2021
PubMed
Summary

Marine ecoregions can now be defined by species connectivity, not just water masses. This new approach helps track changes over time for better conservation planning.

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Area of Science:

  • Marine ecology
  • Oceanography
  • Network analysis

Background:

  • Oceans are traditionally divided into ecoregions based on similar water masses and resources.
  • Defining marine ecoregions is challenging due to data gaps and the dispersal capabilities of ocean currents.
  • Changes in ocean currents and water characteristics impact biological communities, with predictions of susceptibility remaining difficult.

Purpose of the Study:

  • To define marine ecoregions based on species connectivity using recent advances in satellite data.
  • To track the evolution of these ecoregions over time.
  • To provide a framework for conservation management and planning.

Main Methods:

  • Application of a time-dependent complex network framework.
  • Analysis of a thirty-year dataset of sea surface temperatures in the Mediterranean Sea.

Main Results:

  • Demonstrated that ocean ecoregionalization based on connectivity is achievable.
  • Showcased the ability to define ecoregions at relevant spatial and temporal scales.

Conclusions:

  • Connectivity-based ecoregionalization offers a robust method for defining and monitoring marine ecosystems.
  • This approach is valuable for conservation management and planning in dynamic ocean environments.