Acute Responses to Different Velocity Loss Thresholds during Squat Exercise with Blood-Flow Restriction in Strength-Trained Men

Author:

Sánchez-Valdepeñas Juan12,Cornejo-Daza Pedro J.123,Rodiles-Guerrero Luis13ORCID,Páez-Maldonado Jose A.14ORCID,Sánchez-Moreno Miguel15ORCID,Bachero-Mena Beatriz13ORCID,Saez de Villarreal Eduardo2,Pareja-Blanco Fernando12ORCID

Affiliation:

1. Science Based Training Research Group, Department of Sports and Computer Sciences, Universidad Pablo de Olavide, 41013 Seville, Spain

2. Faculty of Sport Sciences, Department of Sports and Computer Sciences, Universidad Pablo de Olavide, 41013 Seville, Spain

3. Department of Human Movement and Sport Performance, University of Seville, 41013 Seville, Spain

4. Centre Attached to the University of Seville, University of Osuna, 41640 Osuna, Spain

5. Department of Physical Education and Sports, University of Seville, 41013 Seville, Spain

Abstract

(1) Background: The aim of this paper is to analyze the acute effects of different velocity loss (VL) thresholds during a full squat (SQ) with blood-flow restriction (BFR) on strength performance, neuromuscular activity, metabolic response, and muscle contractile properties. (2) Methods: Twenty strength-trained men performed four protocols that differed in the VL achieved within the set (BFR0: 0% VL; BFR10: 10% VL; BFR20: 20% VL; and BFR40: 40% VL). The relative intensity (60% 1RM), recovery between sets (2 min), number of sets (3), and level of BFR (50% of arterial occlusion pressure) were matched between protocols. Tensiomyography (TMG), blood lactate, countermovement jump (CMJ), maximal voluntary isometric SQ contraction (MVIC), and performance with the absolute load required to achieve 1 m·s−1 at baseline measurements in SQ were assessed before and after the protocols. (3) Results: BFR40 resulted in higher EMG alterations during and after exercise than the other protocols (p < 0.05). BFR40 also induced greater impairments in TMG-derived variables and BFR10 decreased contraction time. Higher blood lactate concentrations were found as the VL within the set increased. BFR0 and BFR10 showed significantly increased median frequencies in post-exercise MVIC. (4) Conclusions: High VL thresholds (BFR40) accentuated metabolic and neuromuscular stress, and produced increased alterations in muscles’ mechanical properties. Low VL could potentiate post-exercise neuromuscular activity and muscle contractile properties.

Funder

Ministerio Español de Innovación y Ciencia

Ministerio de Universidades

Publisher

MDPI AG

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