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Updated: Jun 24, 2026

Establishment of Deep Hypothermic Circulatory Arrest in Rats
Published on: December 16, 2022
Hydrogen ion (pH) and gas behavior during deep hypothermic cardiopulmonary bypass: Physiology and clinical
Sylvain Diop1,2,3, Jacques Thes1,2,3, Maria Cristina Kassab1
1Department of Anesthesiology, Marie Lannelongue Hospital, Le Plessis Robinson, France.
Abstract:
Deep hypothermic cardiopulmonary bypass (CPB) is used in selected procedures such as pulmonary endarterectomy (PEA) and aortic arch repair. Hypothermia induces metabolic and physicochemical changes that affect hydrogen ion concentration ([H+]), haemoglobin-dioxygen (O2) binding, O2 consumption, and carbon dioxide (CO2) production. Modern blood gas analysers provide instantaneous measurements of blood pH, PO2, and PCO2, enabling rapid bedside assessment of acid-base disturbances. Accurate interpretation, however, requires an understanding of the underlying physical and chemical principles. Acid-base management during hypothermic CPB is typically guided by either a pH-stat (interpreting blood gases at the patient's actual temperature) or an alpha-stat strategy (interpreting blood gases at 37°C, independently of the patient's actual temperature). The optimal strategy remains debated. This review clarifies key physiological principles of acid-base regulation, the effects of temperature on blood pH and gas solubility, and their clinical implications, with the aim of supporting accurate interpretation of blood gas values during hypothermic CPB.
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