Related Experiment Video
Updated: Jan 24, 2026

Assessment of Physical Activity Intensity with Accelerometers and Oxygen Consumption
Published on: June 20, 2025
Estimation of physical activity intensity cut-points using accelerometry in breast cancer survivors and age-matched
Linda Trinh1, Robert W Motl2, Sarah A Roberts3
1Faculty of Kinesiology and Physical Education, University of Toronto, Toronto, ON.
Objective:
To examine the association between accelerometer activity counts and energy expenditure during walking in breast cancer survivors (BCS) compared with age-matched healthy controls, and differences in moderate-to-vigorous physical activity (MVPA) cut-points.
Methods:
Using a case-control design, 19 BCS and 19 age-matched women completed 6 min of resting energy expenditure and 6-min periods of treadmill walking in Midwestern United States. Accelerometers and an open-circuit spirometry system were used to measure activity counts and energy expenditure (VO2 ). A mixed-factor analysis of variance was conducted on activity counts and VO2 . Independent samples t tests compared the magnitude of associations between groups.
Results:
There were group by speed interactions on energy expenditure (p < 0.001) and counts (p < 0.001). The linear association did not differ between BCS and controls for the R2 (p = 0.62) nor the slope (p = 0.43), but there was a difference in the intercept (p = 0.01). This resulted in different MVPA cut-points between groups: 1,439 ± 761 counts·min-1 in BCS and 1,937 ± 639 counts·min-1 in controls.
Conclusion:
The findings support the use of different cut-points to quantify time spent in MVPA for BCS. Application of these cut-points is warranted to accurately assess physical activity (PA) patterns for better prescription and health outcomes in PA programmes for BCS.
Related Concept Videos
Estimation of the Physical Quantities
IR Spectrum Peak Intensity: Amount of IR-Active Bonds
Physical Methods for Controlling Microbial Growth: Temperature
Sign Test for Matched Pairs
To conduct the sign test, we first calculate the differences in...
Physical Methods for Controlling Microbial Growth: Radiation and Filtration
Physical and Chemical Properties of Matter

