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February 2, 2026Journal of Functional Morphology and Kinesiology0 citationsOpen Access

Public Safety Heroes (PUSH) Workout: Task-Specific High-Intensity Functional Training for Emergency Readiness in Fire and Police—Proof of Concept

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RBR. Barcala-FurelosFZFernando Zarzosa-AlonsoMOMartín Otero-Agra

Key Points

  • This study aims to assess the effectiveness of the Public Safety Heroes Workout (PUSH) in improving emergency readiness among public safety personnel.
  • Fifteen active-duty public safety officers participated in a pilot study.
  • The PUSH workout included tasks like sandbag carries and burpee box jumps, combined with chest compressions.
  • Physiological responses such as lactate levels and heart rate were measured.
  • Lactate levels increased significantly from 2.2 to 14.8 mmol·L−1.
  • Heart rates peaked at 170 bpm, indicating high cardiovascular demand.
  • Compression quality for CPR remained high, with firefighters outperforming police in compression rate.

Abstract

Objectives: Public safety personnel, such as police and firefighters, face high physical demands during emergencies, including compressions-only cardiopulmonary resuscitation (CPR) under fatigue. This study aimed to evaluate a High-Intensity Functional Training (HIFT) program, the Public Safety Heroes Workout (PUSH), designed to enhance emergency readiness. Methods: Fifteen active-duty public safety officers participated in a pilot study. The PUSH workout included tasks like sandbag carries and burpee box jumps, interspersed with chest compressions (CC). Physiological responses, including lactate levels, heart rate, and Compressions-only CPR quality, were measured. Results: The PUSH workout induced significant metabolic stress, with lactate levels rising from 2.2 to 14.8 mmol·L−1. Heart rates peaked at 170 bpm, indicating high cardiovascular demand. Compressions-only CPR quality remained high, with firefighters outperforming police in compression rate. Conclusions: The PUSH workout effectively simulates the physical demands of emergency situations, enhancing readiness and compressions-only CPR performance under fatigue. This training model could be applied to other first responders and CrossFit® athletes.

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Cite This Study

Barcala-Furelos et al. (2026) studied this question.

synapsesocial.com/papers/6980fe8ac1c9540dea810a47https://doi.org/10.3390/jfmk11010060
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