Electromyography applied to the horse locomotion on treadmill

ABSTRACT: Surface electromyography (sEMG) is widely used to evaluate muscle activity during equine locomotion. This study investigated the average RMS values of four muscles (triceps brachii, tensor fasciae latae, gluteus medius, and biceps femoris) in five horses during walking (1.8 m/s), trotting...

Full description

Bibliographic Details
Published in:Ciência Rural
Main Authors: Beatriz Cavalcante Moreira, Carlos Eduardo Geraldo dos Santos, Mirella Souza Rodrigues, Bruna Caroline Franzan, Natália Sales Leal dos Santos, Leonardo Rodrigues de Lima, Runer Augusto Marson, Fernando Queiroz de Almeida
Format: Article
Language:English
Published: Universidade Federal de Santa Maria 2026-06-01
Subjects:
Online Access:http://www.scielo.br/pdf/cr/v56n6/1678-4596-cr-56-06-e20250021.pdf
_version_ 1871774307652206592
author Beatriz Cavalcante Moreira
Carlos Eduardo Geraldo dos Santos
Mirella Souza Rodrigues
Bruna Caroline Franzan
Natália Sales Leal dos Santos
Leonardo Rodrigues de Lima
Runer Augusto Marson
Fernando Queiroz de Almeida
author_facet Beatriz Cavalcante Moreira
Carlos Eduardo Geraldo dos Santos
Mirella Souza Rodrigues
Bruna Caroline Franzan
Natália Sales Leal dos Santos
Leonardo Rodrigues de Lima
Runer Augusto Marson
Fernando Queiroz de Almeida
author_sort Beatriz Cavalcante Moreira
collection DOAJ
container_title Ciência Rural
description ABSTRACT: Surface electromyography (sEMG) is widely used to evaluate muscle activity during equine locomotion. This study investigated the average RMS values of four muscles (triceps brachii, tensor fasciae latae, gluteus medius, and biceps femoris) in five horses during walking (1.8 m/s), trotting (4.0 m/s), and galloping (7.0 m/s) on a treadmill. Significant differences in muscle activation were observed across gaits (P < 0.01), with progressively increasing values from walking to galloping. Distinct activation patterns were identified for each muscle, reflecting their specific biomechanical roles. Propulsion-related muscles (TB, GM, and BF) showed the highest activation during galloping, while TFL displayed stability between walking and trotting but increased significantly during galloping. Additionally, a bilateral analysis revealed significant asymmetry in RMS values, with higher activation on the left side for TB, GM, and BF during walking and BF during trotting (P < 0.05). These findings emphasized the influence of gait type and bilateral differences on muscle demand, providing valuable insights for developing training programs, complementary clinical assessments of locomotor limbs and lameness, and strategies for preventing injuries in sports horses.
format Article
id doaj-art-e6ecde576d994c48a27e5eb20ab1bbdc
institution Directory of Open Access Journals
issn 1678-4596
language English
publishDate 2026-06-01
publisher Universidade Federal de Santa Maria
record_format Article
spelling doaj-art-e6ecde576d994c48a27e5eb20ab1bbdc2026-06-02T07:44:48ZengUniversidade Federal de Santa MariaCiência Rural1678-45962026-06-0156610.1590/0103-8478cr20250021Electromyography applied to the horse locomotion on treadmillBeatriz Cavalcante Moreirahttps://orcid.org/0000-0001-6043-7608Carlos Eduardo Geraldo dos Santoshttps://orcid.org/0009-0003-9900-9151Mirella Souza Rodrigueshttps://orcid.org/0009-0005-3596-6600Bruna Caroline Franzanhttps://orcid.org/0000-0002-3290-6304Natália Sales Leal dos Santoshttps://orcid.org/0009-0001-1251-1233Leonardo Rodrigues de Limahttps://orcid.org/0000-0002-9611-2933Runer Augusto Marsonhttps://orcid.org/0000-0002-5248-7717Fernando Queiroz de Almeidahttps://orcid.org/0000-0002-0418-2775ABSTRACT: Surface electromyography (sEMG) is widely used to evaluate muscle activity during equine locomotion. This study investigated the average RMS values of four muscles (triceps brachii, tensor fasciae latae, gluteus medius, and biceps femoris) in five horses during walking (1.8 m/s), trotting (4.0 m/s), and galloping (7.0 m/s) on a treadmill. Significant differences in muscle activation were observed across gaits (P < 0.01), with progressively increasing values from walking to galloping. Distinct activation patterns were identified for each muscle, reflecting their specific biomechanical roles. Propulsion-related muscles (TB, GM, and BF) showed the highest activation during galloping, while TFL displayed stability between walking and trotting but increased significantly during galloping. Additionally, a bilateral analysis revealed significant asymmetry in RMS values, with higher activation on the left side for TB, GM, and BF during walking and BF during trotting (P < 0.05). These findings emphasized the influence of gait type and bilateral differences on muscle demand, providing valuable insights for developing training programs, complementary clinical assessments of locomotor limbs and lameness, and strategies for preventing injuries in sports horses.http://www.scielo.br/pdf/cr/v56n6/1678-4596-cr-56-06-e20250021.pdfequineslocomotorssymmetry
spellingShingle Beatriz Cavalcante Moreira
Carlos Eduardo Geraldo dos Santos
Mirella Souza Rodrigues
Bruna Caroline Franzan
Natália Sales Leal dos Santos
Leonardo Rodrigues de Lima
Runer Augusto Marson
Fernando Queiroz de Almeida
Electromyography applied to the horse locomotion on treadmill
equines
locomotors
symmetry
title Electromyography applied to the horse locomotion on treadmill
title_full Electromyography applied to the horse locomotion on treadmill
title_fullStr Electromyography applied to the horse locomotion on treadmill
title_full_unstemmed Electromyography applied to the horse locomotion on treadmill
title_short Electromyography applied to the horse locomotion on treadmill
title_sort electromyography applied to the horse locomotion on treadmill
topic equines
locomotors
symmetry
url http://www.scielo.br/pdf/cr/v56n6/1678-4596-cr-56-06-e20250021.pdf
work_keys_str_mv AT beatrizcavalcantemoreira electromyographyappliedtothehorselocomotionontreadmill
AT carloseduardogeraldodossantos electromyographyappliedtothehorselocomotionontreadmill
AT mirellasouzarodrigues electromyographyappliedtothehorselocomotionontreadmill
AT brunacarolinefranzan electromyographyappliedtothehorselocomotionontreadmill
AT nataliasaleslealdossantos electromyographyappliedtothehorselocomotionontreadmill
AT leonardorodriguesdelima electromyographyappliedtothehorselocomotionontreadmill
AT runeraugustomarson electromyographyappliedtothehorselocomotionontreadmill
AT fernandoqueirozdealmeida electromyographyappliedtothehorselocomotionontreadmill