Altered walking and muscle patterns reduce hip contact forces in individuals with symptomatic cam femoroacetabular impingement
File(s)NG et al. 2018 Am J Sports Med.pdf (941.96 KB)
Accepted version
Author(s)
Ng, KC Geoffrey
Mantovani, Giulia
Modenese, Luca
Beaulé, Paul E
Lamontagne, Mario
Type
Journal Article
Abstract
Background:
Cam-type femoroacetabular impingement (FAI) is a causative factor for hip pain and early hip osteoarthritis. Although cam FAI can alter hip joint biomechanics, it is unclear what role muscle forces play and how they affect the hip joint loading.
Purpose/Hypothesis:
The purpose was to examine the muscle contributions and hip contact forces in individuals with symptomatic cam FAI during level walking. Patients with symptomatic cam FAI would demonstrate different muscle and hip contact forces during gait.
Study Design:
Controlled laboratory study.
Methods:
Eighteen patients with symptomatic cam FAI were matched for age and body mass index with 18 control participants. Each participant’s walking kinematics and kinetics were recorded throughout a gait cycle (ipsilateral foot-strike to ipsilateral foot-off) by use of a motion capture system and force plates. Muscle and hip contact forces were subsequently computed by use of a musculoskeletal modeling program and static optimization methods.
Results:
The FAI group walked slower and with shorter steps, demonstrating reduced joint motions and moments during contralateral foot-strike, compared with the control group. The FAI group showed reduced psoas major (median, 1.1 newtons per bodyweight [N/BW]; interquartile range [IQR], 1.0-1.5 N/BW) and iliacus forces (median, 1.2 N/BW; IQR, 1.0-1.6 N/BW), during contralateral foot-strike, compared with the control group (median, 1.6 N/BW; IQR, 1.3-1.6 N/BW, P = .004; and median, 1.5 N/BW; IQR, 1.3-1.6 N/BW, P = .03, respectively), which resulted in lower hip contact forces in the anterior (P = .026), superior (P = .02), and medial directions (P = .038). The 3 vectors produced a resultant peak force at the anterosuperior aspect of the acetabulum for both groups, with the FAI group demonstrating a substantially lower magnitude.
Conclusion:
FAI participants altered their walking kinematics and kinetics, especially during contralateral foot-strike, as a protective mechanism, which resulted in reduced psoas major and iliacus muscle force and anterosuperior hip contact force estimations.
Cam-type femoroacetabular impingement (FAI) is a causative factor for hip pain and early hip osteoarthritis. Although cam FAI can alter hip joint biomechanics, it is unclear what role muscle forces play and how they affect the hip joint loading.
Purpose/Hypothesis:
The purpose was to examine the muscle contributions and hip contact forces in individuals with symptomatic cam FAI during level walking. Patients with symptomatic cam FAI would demonstrate different muscle and hip contact forces during gait.
Study Design:
Controlled laboratory study.
Methods:
Eighteen patients with symptomatic cam FAI were matched for age and body mass index with 18 control participants. Each participant’s walking kinematics and kinetics were recorded throughout a gait cycle (ipsilateral foot-strike to ipsilateral foot-off) by use of a motion capture system and force plates. Muscle and hip contact forces were subsequently computed by use of a musculoskeletal modeling program and static optimization methods.
Results:
The FAI group walked slower and with shorter steps, demonstrating reduced joint motions and moments during contralateral foot-strike, compared with the control group. The FAI group showed reduced psoas major (median, 1.1 newtons per bodyweight [N/BW]; interquartile range [IQR], 1.0-1.5 N/BW) and iliacus forces (median, 1.2 N/BW; IQR, 1.0-1.6 N/BW), during contralateral foot-strike, compared with the control group (median, 1.6 N/BW; IQR, 1.3-1.6 N/BW, P = .004; and median, 1.5 N/BW; IQR, 1.3-1.6 N/BW, P = .03, respectively), which resulted in lower hip contact forces in the anterior (P = .026), superior (P = .02), and medial directions (P = .038). The 3 vectors produced a resultant peak force at the anterosuperior aspect of the acetabulum for both groups, with the FAI group demonstrating a substantially lower magnitude.
Conclusion:
FAI participants altered their walking kinematics and kinetics, especially during contralateral foot-strike, as a protective mechanism, which resulted in reduced psoas major and iliacus muscle force and anterosuperior hip contact force estimations.
Date Issued
2018-09-01
Date Acceptance
2018-07-20
Citation
American Journal of Sports Medicine, 2018, 46 (11), pp.2615-2623
ISSN
0363-5465
Publisher
SAGE Publications (UK and US)
Start Page
2615
End Page
2623
Journal / Book Title
American Journal of Sports Medicine
Volume
46
Issue
11
Copyright Statement
© 2018 The Author(s). The final, definitive version of this paper has been published in American Journal of Sports Medicine by Sage Publications Ltd. All rights reserved. It is available at: http://journals.sagepub.com/doi/10.1177/0363546518787518
Subjects
Science & Technology
Life Sciences & Biomedicine
Orthopedics
Sport Sciences
femoroacetabular
impingement
muscle forces
motion
joint contact forces
FEMORO-ACETABULAR IMPINGEMENT
ASYMPTOMATIC VOLUNTEERS
LOWER-EXTREMITY
LEVEL WALKING
ALPHA ANGLE
JOINT
GAIT
OSTEOARTHRITIS
KINEMATICS
MOTION
1106 Human Movement And Sports Science
0903 Biomedical Engineering
0913 Mechanical Engineering
Publication Status
Published
Date Publish Online
2018-08-03