Literature DB >> 25772723

Variability of the Ischiofemoral Space Relative to Femur Position: An Ultrasound Study.

Jonathan T Finnoff1, Jeffrey R Bond2, Mark S Collins2, Jacob L Sellon3, John H Hollman4, Michael K Wempe5, Jay Smith3.   

Abstract

BACKGROUND: Ischiofemoral impingement is caused by compression of the quadratus femoris muscle between the ischial tuberosity and lesser trochanter. The evaluation of ischiofemoral impingement includes radiologic studies to evaluate the ischiofemoral space dimensions. No prior study has evaluated the effect of femoral position on ischiofemoral space dimensions.
OBJECTIVE: To determine whether the dimensions of the ischiofemoral space vary with changes in femoral position.
DESIGN: Cross-sectional study.
SETTING: Academic institution. PARTICIPANTS: Six male and four female subjects with no hip pain and no history of hip disorders or surgery were selected to participate in the study. The subjects' mean age was 31.5 years; mean height, 176.8 cm; mean weight, 70.2 kg; and mean body mass index, 23.6 kg/m(2).
METHODS: Ultrasound was used to measure the ischiofemoral space in bilateral gluteal regions of each volunteer. The volunteers underwent imaging in a prone position. The ischiofemoral space was measured with the femur in 9 different positions created through various combinations of frontal (15° abduction, neutral, and 15° adduction) and transverse (30° internal rotation, neutral, and 30° external rotation) plane hip motions. MAIN OUTCOME MEASUREMENTS: The narrowest ischiofemoral interval, defined as the narrowest distance between the medial cortex of the lesser trochanter and the lateral cortex of the ischial tuberosity.
RESULTS: The anatomic landmarks used to measure the ischiofemoral space were easily identified in all subjects. The frontal plane main effect (F2,18 = 38.611) was statistically significant (P < .001), as was the transverse plane main effect (F2,18 = 82.452, P < .001). These findings indicated that there was a statistically significant difference in ischiofemoral space according to hip position in the frontal and transverse planes. The largest ischiofemoral space measurement occurred with the hip in abduction and internal rotation (51.8 mm; 95% confidence interval [CI], 49.2-54.5 mm), whereas hip adduction and external rotation resulted in the narrowest ischiofemoral space measurement (30.8 mm; 95% CI, 25.5-36.0 mm). The largest difference was between the adduction-external rotation and the abduction-internal rotation positions (mean difference = 21.1 mm; 95% CI, 13.7-28.5 mm; P < .001), and the smallest difference was between the adducted-neutral rotation and the abducted-external rotation positions (mean difference = 0.23 mm; 95% CI, -8.07-8.55 mm; P = .99).
CONCLUSIONS: Femoral position affects ischiofemoral space dimensions. The ischiofemoral space widens with abduction and internal rotation and narrows with adduction and external rotation, and thus femoral position should be considered when imaging and measuring the ischiofemoral space.
Copyright © 2015 American Academy of Physical Medicine and Rehabilitation. Published by Elsevier Inc. All rights reserved.

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Year:  2015        PMID: 25772723     DOI: 10.1016/j.pmrj.2015.03.010

Source DB:  PubMed          Journal:  PM R        ISSN: 1934-1482            Impact factor:   2.298


  7 in total

1.  Variability of ischiofemoral space dimensions with changes in hip flexion: an MRI study.

Authors:  Adam C Johnson; John H Hollman; Benjamin M Howe; Jonathan T Finnoff
Journal:  Skeletal Radiol       Date:  2016-10-14       Impact factor: 2.199

2.  In Vivo Measurements of the Ischiofemoral Space in Recreationally Active Participants During Dynamic Activities: A High-Speed Dual Fluoroscopy Study.

Authors:  Penny R Atkins; Niccolo M Fiorentino; Stephen K Aoki; Christopher L Peters; Travis G Maak; Andrew E Anderson
Journal:  Am J Sports Med       Date:  2017-07-06       Impact factor: 6.202

3.  Interpretation of ischiofemoral impingement via a clinical test using hip triaxial dynamic magnetic resonance imaging.

Authors:  Yu-Ping Li; Gui-Ping Li; Kang Liu; Fan Zhao; Jia-Jia Zhao; Guan-Nan Wang; Chang Liu
Journal:  Quant Imaging Med Surg       Date:  2022-01

Review 4.  Evaluation and management of ischiofemoral impingement: a pathophysiologic, radiologic, and therapeutic approach to a complex diagnosis.

Authors:  Moisés Fernández Hernando; Luis Cerezal; Luis Pérez-Carro; Ana Canga; Raquel Prada González
Journal:  Skeletal Radiol       Date:  2016-03-03       Impact factor: 2.199

5.  A MRI study of the lesser trochanteric version and its relationship to proximal femoral osseous anatomy.

Authors:  Ricardo Gonçalves Schröder; Manoj Reddy; Munif Ahamad Hatem; Juan Gómez-Hoyos; Leon Toye; Anthony Khoury; Hal David Martin
Journal:  J Hip Preserv Surg       Date:  2015-11-09

6.  Anatomical analysis of the pelvis to identify any predisposing anatomical factors for ischiofemoral space pathology: a retrospective study.

Authors:  Maria Pilar López-Royo; Esther Valero-Tena; Mercedes Roca
Journal:  Br J Radiol       Date:  2020-01-29       Impact factor: 3.039

7.  Is the ischiofemoral space value of Japanese hip joints equal to that of Western populations?

Authors:  Tomohiro Mimura; Kanji Mori; Noriaki Okumura; Kosuke Kumagai; Tsutomu Maeda; Takafumi Yayama; Shinji Imai
Journal:  J Hip Preserv Surg       Date:  2019-10-30
  7 in total

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