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Updated: Aug 16, 2026

Employing the Forced Oscillation Technique for the Assessment of Respiratory Mechanics in Adults
Published on: February 9, 2022
Reference equations for maximal inspiratory and expiratory pressures: From childhood to advanced age
Laura Gochicoa-Rangel1, Juana Hernández-Ruiz2, Taki Moreno-Chavarría2
1Instituto Nacional de Enfermedades Respiratorias Ismael Cosío Villegas, Calzada de Tlalpan 4502, Alcaldía Tlalpan, CP 14080, Mexico City, Mexico; Instituto de Desarrollo e Innovación en Fisiología Respiratoria (INFIRE), Zitácuaro 22, Alcaldía Cuauhtémoc, CP 06170, Mexico City, Mexico.
Background:
Maximal inspiratory (MIP) and expiratory (MEP) pressures indicate respiratory muscle strength. Published reference equations typically cover limited age ranges, causing artificial shifts in predicted values during age transitions. Our aim was to develop continuous MIP and MEP reference equations from childhood to advanced age.
Methods:
We evaluated 892 healthy subjects aged 4.7-79 years (median: 14.3 years; 50.4% female) in Mexico City (2240m). MIP and MEP were measured following international guidelines.
Results:
Reference equations and root mean square errors (RMSE) were: -MIP (cmH2O)=19.08654+(13.82336·sex)+(2.529469·age)-(0.0341694·age2)+(0.9130152·BMI); RMSE=20.595 MEP (cmH2O)=32.74452+(18.25912·sex)+(2.606639·age)-(0.0301438·age2)+(0.4891667 ·BMI); RMSE=25.157 where sex: male=1, female=0; age in years; BMI in kg/m2. Age exerted the greatest influence on respiratory pressures, followed by sex and BMI.
Conclusion:
These continuous reference equations span most of the lifespan, eliminating transitional gaps and improving the clinical assessment of maximal respiratory pressures.
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