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January 1, 1964American Journal of Physiology-Legacy Content82 citations

Ventricular performance, pressure-volume relationships, and O2 consumption during hypothermia

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RMR. GRIER MONROEBoston Children's HospitalRSRuth H. StrangBoston Children's HospitalCLC. Grant LaFargeBoston Children's Hospital

Key Points

  • The aim is to evaluate how hypothermia affects left ventricular performance and oxygen consumption in an isolated heart model.
  • Isolated dog hearts were examined at normal (37.7 C) and hypothermic (32.2 C) temperatures.

Structured PICO

Does hypothermia alter left ventricular performance and oxygen consumption in isolated dog hearts compared to normal temperatures?

P
Population
Isolated dog hearts
I
Intervention
Hypothermia (32.2 C)
C
Comparator
Normal temperature (37.7 C)
O
Outcome
Left ventricular performance, pressure-volume relationships, and oxygen consumptionsurrogate

Hypothermia increases left ventricular peak pressure and work capacity in isolated dog hearts compared to normal temperatures.

Abstract

Left ventricular performance in the isolated heart of a dog was observed at normal temperatures (37.7 C) and under hypothermia (32.2 C) at comparable heart rates. The peak pressure of isovolumic contractions at the same ventricular end-diastolic pressures averaged 40% higher at the lower temperature. Diastolic pressure-volume relationships were similar at both temperatures. In studies in which the ventricle ejected fluid and performed work the hypothermic ventricle was capable of performing greater work at comparable heart rates, left ventricular end-diastolic pressures, and loading. When the ventricle was allowed to perform work by compressing air into a chamber of constant volume left ventricular oxygen consumption (Vo 2 ) increased with the peak systolic pressure as the temperature was lowered. If the peak systolic pressure was maintained constant by increasing the volume of the air chamber as the temperature was lowered no consistent relationship could be shown between left ventricular Vo 2 and the integral of systolic pressure in time which invariably increased with hypothermia.

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Cite This Study

MONROE et al. (1964) studied this question.

synapsesocial.com/papers/6a1cfa4f7f448865515d9cb4https://doi.org/10.1152/ajplegacy.1964.206.1.67
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