Cardiorespiratory demands of firearms training instruction and 15m shuttle tests in British law enforcement

J Joseph Warwick S Sophie Cooper F Flaminia Ronca

Abstract

Objectives Law enforcement agencies require minimum fitness standards to safeguard their officers and training staff. Firearms instructors (FI) are expected to maintain the same standards as their operational counterparts. This study aimed to quantify the daily physiological demands placed on FI. Methods 19 FI (45 ± 5 years) completed occupational tasks whilst wearing heart rate (HR) monitors for a minimum 10 days. Maximal oxygen consumption (VO 2 max) testing was conducted on FI during a treadmill test (TT) and a multistage shuttle test (ST). Linear regression models were used to model the relationship between VO 2 and HR throughout the TT. This model was applied to HR data from occupational tasks to infer oxygen consumption. Repeated Measures ANOVAs were used to compare time spent in VO 2 max equivalent zones throughout. Results The VO 2 max achieved during ST (45.1 ± 5.6 ml/kg/min) was significantly higher than TT (39 ± 3 ml/kg/min) (p = 0.014). Time to exhaustion (TTE) was sooner on ST (06:26 min) compared to TT (13:16 min) (p < .001). FI spent ~85% of occupational time with an oxygen demand ≤20 ml/kg/min (p < .005). The most intense occupational tasks saw FI achieve VO 2 max ≥30 ml/kg/min, but <40 ml/kg/min. Conclusion Using ST to assess cardiorespiratory fitness resulted in a quicker TTE and a higher VO 2 max. Predominantly, FI occupational tasks are low intensity with sporadic exposures requiring a VO 2 max of >40 ml/kg/min. To safeguard FI from occupational-related cardiorespiratory or long-term health issues, it is intuitive to suggest fitness standards should exceed a VO 2 max of 40 ml/kg/min.

Article Details

Journal PLoS ONE
Volume / Issue Vol. 20, Issue 1
Published January 13, 2025
Pages e0300161
ISSN 1932-6203
Publisher Public Library of Science

Journal Info

PLoS ONE

Public Library of Science

ISSN: 1932-6203 Open Access Health Sciences

Authors (3)

J

Joseph Warwick

S

Sophie Cooper

F

Flaminia Ronca