Inter-Repetition Rest Impact on the Estimated Repetitions in Reserve at Various Loads and Proximities to Neuromuscular Failure

Author:

Ruiz-Alias Santiago A.12ORCID,Ramirez-Campillo Rodrigo3ORCID,Leando Quidel-Catrilelbún Maurio Elías4,García-Pinillos Felipe125ORCID,Pérez-Castilla Alejandro67ORCID

Affiliation:

1. Department of Physical Education and Sports, Faculty of Sport Sciences, University of Granada, Granada, Spain;

2. Sport and Health University Research Center (iMUDS), University of Granada, Granada, Spain;

3. Exercise and Rehabilitation Sciences Institute, School of Physical Therapy, Faculty of Rehabilitation Sciences, Universidad Andres Bello, Santiago, Chile;

4. Institute of Sport, Faculty of Health and Social Science, Universidad de Las Américas, Concepción, Chile;

5. Department of Physical Education, Sports and Recreation, Universidad de La Frontera, Temuco, Chile;

6. Department of Education, Faculty of Education Sciences, University of Almería, Almería, Spain; and

7. SPORT Research Group (CTS-1024), CIBIS (Centro de Investigación para el Bienestar y la Inclusión Social) Research Center, CERNEP Research Center, University of Almería, Almería, Spain

Abstract

Abstract Ruiz-Alias, SA, Ramirez-Campillo, R, Leando Quidel-Catrilelbún, ME, García-Pinillos, F, and Pérez-Castilla, A. Inter-repetition rest Impact on the estimated repetitions in reserve at various loads and proximities to neuromuscular failure . J Strength Cond Res XX(X): 000–000, 2024—The repetitions in reserve (RIR) estimation method allows for monitoring resistance training set volume. However, a significant bias is commonly observed when ending the set further from neuromuscular failure and using lower relative loads. Is unclear if implementing an IRR could improve its estimation validity. This study aimed to determine if the RIR estimation is influenced by the IRR at different relative loads and proximities to neuromuscular failure during the back squat (BQ) and bench press (BP) exercises. After a familiarization session, 19 male subjects (age, 21–26 years) completed an experimental session for each IRR configuration: IRR0 (without rest), IRR3 (3 seconds of rest), and SSIRR (self-selected rest [up to 5 seconds]). In each session, single sets to neuromuscular failure were performed at 3 relative loads (65% 1 repetition maximum [1RM], 75% 1RM, 85% 1RM) for BQ and BP exercises. Using the Estimated Repetitions to Failure scale, subjects estimated the RIR associated with a score of “5” and “2” (i.e., RIR-5 and RIR-2). The results revealed no interactions between the RIR estimation and IRR for BQ (RIR-5: p = 0.812; RIR-2: p = 0.084) or BP (RIR-5: p = 0.884; RIR-2: p = 0.944). Subjects provided valid estimations, with overestimation (BQ RIR-5: 0%; BQ RIR-2: 2.9%; BP RIR-5: 1.1%; BP RIR-2: 2.3%) or underestimation (BQ RIR-5: 14.9%; BQ RIR-2: 4%; BP RIR-5: 15.2% BP RIR-2: 8.2%) in few sets. In conclusion, the RIR estimation method seems valid, and the IRR (0–5 seconds) does not influence its validity at 65–85% 1RM loads nor proximities to neuromuscular failure (RIR-2, RIR-5).

Funder

Ministerio de Universidades

Publisher

Ovid Technologies (Wolters Kluwer Health)

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