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Updated: Sep 18, 2025

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Published on: May 1, 2018
Both Isometric and Dynamic Testing Are Essential for a Comprehensive Assessment of the Knee Extensors
Ludovico Grossio1,2,3, Francesco Salvaggio1,2,3, Paolo R Brustio1,4
1Neuromuscular Function Research Group, School of Exercise and Sport Science, University of Turin, Turin Italy.
Abstract:
Grossio, L, Salvaggio, F, Brustio, PR, Rainoldi, A, Samozino, P, and Boccia, G. Both isometric and dynamic testing are essential for a comprehensive assessment of the knee extensors. J Strength Cond Res 39(10): e1226-e1232, 2025-The improvements of measurement tools and data analysis enhanced our possibilities to assess neuromuscular performance, but also created confusion regarding significance and practical applications of this available information. To simplify the strength assessment understanding, our purpose was to group force, velocity, and power metrics that could provide similar outcomes. We measured single-leg knee extensor strength under isometric and dynamic conditions on 64 young adults (33 men and 31 women). Subjects performed maximal and burst-like contractions under isometric conditions to assess maximal torque (MVT) and rate of torque development (RTD). Under dynamic conditions, a torque-velocity relationship was obtained from an incremental load test. Principal component analysis (PCA) was used to reduce the dimensionality of the data set and group variables. Principal component analysis identified 4 components: (a) "Maximal force" (composed by MVT, T 0 , RTD 100 , RTD 150 , T opt , Pmax ), (b) "Explosiveness" (composed by RTD 50 , RTD peak , RTD 50 N, RTD 100 N, RTD 150 N, RTD peak N, time to peak torque, time to RTD peak ), (c) "Force at high velocity" (composed by V 0 and V opt ), and (d) "Curvature" (C). When data were normalized by sex differences, "Explosiveness" resulted as the first component and Pmax was included in the "Force at high velocity" component. The present findings remark the importance of testing the explosiveness (i.e., early RTD and normalized RTD metrics) together with torque-velocity profiling, to have a more comprehensive assessment of neuromuscular qualities.

