Related Experiment Video
Updated: Mar 18, 2026

A Rapidly Incremented Tethered-Swimming Maximal Protocol for Cardiorespiratory Assessment of Swimmers
Published on: January 28, 2020
Toward the Development of Predictive Equations for Resting Metabolic Rate in Acutely Ill Spontaneously Breathing
David C Frankenfield1, Christine M Ashcraft1
11 Department of Clinical Nutrition, Department of Nursing, Penn State Milton S. Hershey Medical Center, Hershey, Pennsylvania, USA.
Background:
There are many equations used for calculating energy needs of nutrition support patients but few developed specifically for the subset of spontaneously breathing acutely ill patients. The purpose of the current study was to validate existing equations and to start developing new equations for this cohort.
Methods:
Acutely ill patients not requiring mechanical ventilation had their resting metabolic rate measured using an indirect calorimeter. Metabolic rate was also calculated using the Mifflin-St Jeor equation, the Ireton-Jones equation for spontaneously breathing patients, and a modification of the Penn State equation in which the minute ventilation-dependent variable was removed. These calculated values were compared with measured expenditure and considered accurate if they fell within 10% of the measurement.
Results:
Fifty-five patients were measured successfully. The modified Penn State equation was accurate in 71% of patients compared with 44% for Ireton-Jones and 42% for Mifflin-St Jeor. Several forms of a new equation were outlined but not validated. The equation with the highest R2 (0.82) was as follows: resting metabolic rate (kcal/d) = weight in kg (20) - age in years (3) + male sex (197) + body mass index in kg/m2 (25.9) + mean heart rate in beats/min (9.4) + 89.
Conclusions:
A modification of the Penn State equation for predicting resting metabolic rate was shown to accurately predict resting metabolic rate in acutely ill, spontaneously breathing patients if body mass index was ≥20.5 kg/m2. A new set of population-specific equations was outlined but should not be used until validated.
More Related Videos
04:20Integration of Brain Tissue Saturation Monitoring in Cardiopulmonary Exercise Testing in Patients with Heart Failure
Published on: October 1, 2019
06:57Determining Basal Energy Expenditure and the Capacity of Thermogenic Adipocytes to Expend Energy in Obese Mice
Published on: November 11, 2021
Related Concept Videos
Assessment of Ventilation I: Respiratory Rate
A Ventilation assessment is critical for monitoring a patient's health status. Respiration, one of the most accessible vital signs, provides insights into the function of numerous body systems and can indicate serious health issues, such as brainstem injuries from head trauma.
Critical Guidelines for Assessing Ventilation:
Metabolic Rate
The Basal Metabolic Rate (BMR) measures the energy expended at rest.
Several factors influence...
Acute Respiratory Failure-IV
Respiratory Volumes and Capacities I
Special considerations while measuring oxygen saturation
Ensuring accuracy in vital sign recordings while prioritizing patient comfort and minimizing anxiety is...
Respiratory Volumes and Capacities