Is it Time to Reconsider the Fluid of Choice in Hypothermia? the Case for Lactated Ringer's Solution

Current Wilderness Medical Society guidelines for accidental hypothermia recommend 0.9% normal saline (NS) over lactated Ringer's (LR) for fluid resuscitation, citing concerns that a hypothermic liver cannot metabolize lactate. The purpose of this article is to challenge this theoretical premise. We highlight a critical biochemical difference: lactic acid with sodium lactate, the salt found in LR. We propose that the lactate in LR does not contribute to acidosis as it lacks a dissociative proton. In contrast, large-volume NS resuscitation carries the better-documented risk of hyperchloremic non-anion-gap metabolic acidosis. Existing clinical protocols for therapeutic hypothermia and cardiopulmonary bypass already utilize LR safely at severely low core temperatures, demonstrating that a hypothermic body can tolerate balanced solutions without adverse metabolic consequences. Ultimately, the aversion to LR in accidental hypothermia warrants pause and further investigation. We recommend that clinical guidelines be updated to reflect physiological realities and allow for future studies comparing crystalloid fluids.

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Publication Details

Journal
Wilderness and Environmental Medicine
Published
2026-09-18
DOI
https://doi.org/10.1177/10806032261485253
Primary Topic
Thermal Regulation in Medicine
Type
article
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article

Is it Time to Reconsider the Fluid of Choice in Hypothermia? the Case for Lactated Ringer's Solution

Ken Zafren, Ignacio Ognian
Wilderness and Environmental Medicine
Thermal Regulation in Medicine
article

Is it Time to Reconsider the Fluid of Choice in Hypothermia? the Case for Lactated Ringer's Solution

Ken Zafren, Ignacio Ognian
article en

Abstract

Current Wilderness Medical Society guidelines for accidental hypothermia recommend 0.9% normal saline (NS) over lactated Ringer's (LR) for fluid resuscitation, citing concerns that a hypothermic liver cannot metabolize lactate. The purpose of this article is to challenge this theoretical premise. We highlight a critical biochemical difference: lactic acid with sodium lactate, the salt found in LR. We propose that the lactate in LR does not contribute to acidosis as it lacks a dissociative proton. In contrast, large-volume NS resuscitation carries the better-documented risk of hyperchloremic non-anion-gap metabolic acidosis. Existing clinical protocols for therapeutic hypothermia and cardiopulmonary bypass already utilize LR safely at severely low core temperatures, demonstrating that a hypothermic body can tolerate balanced solutions without adverse metabolic consequences. Ultimately, the aversion to LR in accidental hypothermia warrants pause and further investigation. We recommend that clinical guidelines be updated to reflect physiological realities and allow for future studies comparing crystalloid fluids.

Wilderness and Environmental Medicine
Stanford Medicine (US)
Life in Land
Openalex Percentile: Top 9%
Thermal Regulation in Medicine
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Is it Time to Reconsider the Fluid of Choice in Hypothermia? the Case for Lactated Ringer's Solution — Ken Zafren, Ignacio Ognian · Wilderness and Environmental Medicine (2026) | TGRS Research Map | TGRS