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The FITP: A Controlled Intermittent Running Test for Futsal Athletes

João Nuno Ribeiro, Farzad Yousefian, Raúl F. Bartolomeu, Faber Sérgio Bastos Martins, Konstantinos Spyrou, Bruno Travassos et al. · Journal of Functional Morphology and Kinesiology · 2026

Researchers had ten national-level male futsal players complete a new treadmill test (the FITP) that mimics futsal's stop-start running and substitution patterns, measuring oxygen uptake, heart rate, blood lactate, perceived effort, recovery ratings and jump performance. Heart rate and perceived exertion rose across the four bouts while recovery ratings dropped, but oxygen uptake, lactate, and countermovement jump performance stayed stable, suggesting match-like cardiovascular and perceptual strain without clear neuromuscular fatigue.
Takeaway: Use a futsal-specific intermittent treadmill protocol like the FITP if you want a repeatable, controlled way to test a player's high-intensity running tolerance.
Abstract (source)

Background: Futsal is a high-intensity, intermittent team sport, yet laboratory protocols that reproduce its substitution-based running demands remain scarce. This study examined the physiological, neuromuscular, and perceptual responses to the Futsal Intermittent Treadmill Protocol (FITP), a laboratory-based protocol designed to replicate the intermittent high-intensity running demands of futsal.

Methods: Ten male, national-level (Tier 3) futsal players completed four bouts of intermittent running (6–20 km·h−1) reflecting typical substitution patterns. Measurements included oxygen consumption (VO2), heart rate (HR), blood lactate concentration ([BLa−]), rating of perceived exertion (RPE), total quality recovery (TQR), and countermovement jump (CMJ) performance. Responses were analyzed using one-way repeated-measures ANOVA.

Results: HR and %HRmax increased significantly across bouts (p < 0.001; η2p = 0.84 for both), reaching values typical of competitive matches. Relative VO2 and %VO2max remained stable, while RPE increased and TQR decreased progressively (p < 0.001; η2p = 0.59–0.62). Blood lactate levels and the CMJ mechanical variables showed no significant changes, indicating no systematic neuromuscular fatigue pattern.

Conclusions: The FITP induces substantial cardiovascular and perceptual strain that is physiologically comparable to high-intensity futsal, while metabolic and neuromuscular responses remain stable. The protocol may provide a controlled, repeatable

Method: for assessing intermittent running tolerance; however, optimizing its role in physical evaluation, top-up conditioning, and return-to-play monitoring will benefit from future research confirming its ongoing consistency and field application.

Primary studyOpen accessEndurance & Cardiovascular
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