Application of the ratings of perceived exertion-clamp model to examine the effects of joint angle on the time course of torque and neuromuscular responses during a …

RW Smith, TJ Housh, JPV Anders… - The Journal of …, 2023 - journals.lww.com
Abstract Smith, RW, Housh, TJ, Anders, JPV, Neltner, TJ, Arnett, JE, Schmidt, RJ, and
Johnson, GO. Application of the ratings of perceived exertion-clamp model to examine the …

[PDF][PDF] The RPE clamp model and fatigability following a sustained, isometric task to failure

JE Arnett, RW Smith, TJ Neltner, JPV Anders… - J. Exerc. Physiol …, 2022 - researchgate.net
Schmidt RJ, Johnson GO. The RPE Clamp Model and Fatigability Following a Sustained,
Isometric Task to Failure. JEPonline 2022; 25 (5): 13-26. The purpose of this study was to …

Utilizing the RPE-Clamp model to examine interactions among factors associated with perceived fatigability and performance fatigability in women and men

RW Smith, TJ Housh, JE Arnett, JPV Anders… - European Journal of …, 2023 - Springer
Purpose The purpose of the present study was to examine the interactions between
perceived fatigability and performance fatigability in women and men by utilizing the RPE …

[HTML][HTML] Fatiguing joint angle does not influence torque and neuromuscular responses following sustained, isometric forearm flexion tasks anchored to perceptual …

DG Ortega, TJ Housh, RW Smith, JE Arnett… - Journal of Functional …, 2023 - mdpi.com
This study examined the effects of joint angle (JA) on maximal voluntary isometric
contraction (MVIC) and neuromuscular responses following fatiguing tasks anchored to …

[HTML][HTML] Time course of changes in torque and neuromuscular parameters during a sustained isometric forearm flexion task to fatigue anchored to a constant rating of …

RW Smith, TJ Housh, JPV Anders… - … of Musculoskeletal & …, 2022 - ncbi.nlm.nih.gov
Objective: This study examined the time course of changes in torque and electromyographic
(EMG) and mechanomyographic (MMG) responses during a sustained isometric task …

The effects of joint angle and anchoring scheme on performance fatigability and neuromuscular responses following isometric forearm flexion tasks to failure

JE Arnett, RW Smith, TJ Neltner… - Journal for Sports …, 2023 - nsuworks.nova.edu
Purpose: The purpose of this study was to examine the effects of joint angle on MVIC and
neuromuscular responses at task failure following sustained, isometric forearm flexion tasks …

[PDF][PDF] Torque and neuromuscular responses are not joint angle dependent during a sustained, isometric task anchored to a high perceptual intensity

RW Smith, TJ Housh, JPV Anders, TJ Neltner… - Am. J. Sports Sci …, 2022 - researchgate.net
Few studies have assessed changes in the time course of the torque and neuromuscular
responses during a sustained, isometric task anchored to a constant rating of perceived …

[PDF][PDF] Effects of joint angle on inter-and intra-individual variability for women during isometric fatiguing tasks anchored to a perceptual intensity

JE Arnett, RW Smith, TJ Neltner, JPV Anders… - Am J Sports Sci …, 2023 - researchgate.net
The purpose of this study was to compare the composite, inter-individual, and intra-
individual differences in the fatigue-induced torque, electromyographic (EMG), and …

The Effects of Anchoring a Fatiguing Forearm Flexion Task to a High vs. Low Rating of Perceived Exertion on Torque and Neuromuscular Responses

DG Ortega, TJ Housh, RW Smith, JE Arnett… - The Journal of …, 2024 - journals.lww.com
Abstract Ortega, DG, Housh, TJ, Smith, RW, Arnett, JE, Neltner, TJ, Schmidt, RJ, and
Johnson, GO. The effects of anchoring a fatiguing forearm flexion task to a high versus low …

[HTML][HTML] Force and Neuromuscular Responses During a Handgrip Hold to Failure Anchored to a Moderate Perceptual Intensity in Males

M Kwak, PJ Succi, B Benitez, C Mitchinson… - … of Musculoskeletal & …, 2024 - ncbi.nlm.nih.gov
Objectives: The current study investigated performance fatigability (PF) and time course of
changes in force, electromyographic amplitude (EMG AMP) and frequency (EMG MPF), and …