Anatomic predictors of sagittal hip and pelvic motions in patients with a cam deformity
File(s)GN - PelvicIncidenceROM_REVISION.doc (3.51 MB)
Accepted version
Author(s)
Ng, KCG
Lamontagne, M
Jeffers, J
Grammatopoulos, George
Beaule, P
Type
Journal Article
Abstract
Background:
As there is a high prevalence of patients with cam deformities and no ongoing hip dysfunction, understanding the biomechanical factors predicting the onset of symptoms and degenerative changes is critical. One such variable is how the spinopelvic parameters may influence hip and pelvic sagittal mobility.
Hypothesis/Purpose:
Pelvic incidence may predict sagittal hip and pelvic motions during walking and squatting. The purpose was to determine which anatomic characteristics were associated with symptoms and how they influenced functional hip and pelvic ranges of motion (ROMs) during walking and squatting.
Study Design:
Controlled laboratory study.
Methods:
Fifty-seven participants underwent computed tomography and were designated either symptomatic (n = 19, cam deformity with pain), asymptomatic (n = 19, cam deformity with no pain), or control (n = 19, no cam deformity or pain). Multiple femoral (cam deformity, neck angle, torsion), acetabular (version, coverage), and spinopelvic (pelvic tilt, sacral slope, pelvic incidence) parameters were measured from each participant’s imaging data, and sagittal hip and pelvic ROMs during walking and squatting were recorded using a motion capture system.
Results:
Symptomatic participants had large cam deformities, smaller femoral neck-shaft angles, and larger pelvic incidence angles compared with the asymptomatic and control participants. Discriminant function analyses confirmed that radial 1:30 alpha angle (λ1 = 0.386), femoral neck-shaft angle (λ2 = 0.262), and pelvic incidence (λ3 = 0.213) (P < .001) were the best anatomic parameters to classify participants with their groups. Entering these 3 parameters into a hierarchical linear regression, significant regressions were achieved for hip ROM only when pelvic incidence was included for walking (R2 = 0.20, P = .01) and squatting (R2 = 0.14, P = .04). A higher pelvic incidence decreased walking hip ROM (r = −0.402, P = .004). Although symptomatic participants indicated a trend of reduced squatting hip and pelvic ROMs, there were no significant regressions with the anatomic parameters.
Conclusion:
A cam deformity alone may not indicate early clinical signs or decreased ROM. Not only was pelvic incidence a significant parameter to classify the participants, but it was also an important parameter to predict functional ROM. Symptomatic patients with a higher pelvic incidence may experience limited sagittal hip mobility.
As there is a high prevalence of patients with cam deformities and no ongoing hip dysfunction, understanding the biomechanical factors predicting the onset of symptoms and degenerative changes is critical. One such variable is how the spinopelvic parameters may influence hip and pelvic sagittal mobility.
Hypothesis/Purpose:
Pelvic incidence may predict sagittal hip and pelvic motions during walking and squatting. The purpose was to determine which anatomic characteristics were associated with symptoms and how they influenced functional hip and pelvic ranges of motion (ROMs) during walking and squatting.
Study Design:
Controlled laboratory study.
Methods:
Fifty-seven participants underwent computed tomography and were designated either symptomatic (n = 19, cam deformity with pain), asymptomatic (n = 19, cam deformity with no pain), or control (n = 19, no cam deformity or pain). Multiple femoral (cam deformity, neck angle, torsion), acetabular (version, coverage), and spinopelvic (pelvic tilt, sacral slope, pelvic incidence) parameters were measured from each participant’s imaging data, and sagittal hip and pelvic ROMs during walking and squatting were recorded using a motion capture system.
Results:
Symptomatic participants had large cam deformities, smaller femoral neck-shaft angles, and larger pelvic incidence angles compared with the asymptomatic and control participants. Discriminant function analyses confirmed that radial 1:30 alpha angle (λ1 = 0.386), femoral neck-shaft angle (λ2 = 0.262), and pelvic incidence (λ3 = 0.213) (P < .001) were the best anatomic parameters to classify participants with their groups. Entering these 3 parameters into a hierarchical linear regression, significant regressions were achieved for hip ROM only when pelvic incidence was included for walking (R2 = 0.20, P = .01) and squatting (R2 = 0.14, P = .04). A higher pelvic incidence decreased walking hip ROM (r = −0.402, P = .004). Although symptomatic participants indicated a trend of reduced squatting hip and pelvic ROMs, there were no significant regressions with the anatomic parameters.
Conclusion:
A cam deformity alone may not indicate early clinical signs or decreased ROM. Not only was pelvic incidence a significant parameter to classify the participants, but it was also an important parameter to predict functional ROM. Symptomatic patients with a higher pelvic incidence may experience limited sagittal hip mobility.
Date Issued
2018-05-01
Date Acceptance
2017-11-14
Citation
American Journal of Sports Medicine, 2018, 46 (6), pp.1331-1342
ISSN
0363-5465
Publisher
SAGE Publications (UK and US)
Start Page
1331
End Page
1342
Journal / Book Title
American Journal of Sports Medicine
Volume
46
Issue
6
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/10.1177/0363546518755150
Sponsor
Engineering & Physical Science Research Council (EPSRC)
Engineering & Physical Science Research Council (E
Grant Number
EP/K027549/1
EP/N006267/1
Subjects
Science & Technology
Life Sciences & Biomedicine
Orthopedics
Sport Sciences
hip
femoroacetabular impingement
spinopelvic
gait
motion analysis
SYMPTOMATIC FEMOROACETABULAR IMPINGEMENT
FEMORO-ACETABULAR IMPINGEMENT
LEVEL WALKING
LUMBAR SPINE
PSOAS MAJOR
OSTEOARTHRITIS
BIOMECHANICS
KINEMATICS
JOINT
GAIT
1106 Human Movement And Sports Science
0903 Biomedical Engineering
0913 Mechanical Engineering
Publication Status
Published
Date Publish Online
2018-03-08