A surface-based approach to determine key spatial parameters of the acetabulum in a standardized pelvic coordinate system

Xiaojun Chen*, Pengfei Jia, Yiping Wang, Henghui Zhang, Liao Wang, Alejandro F. Frangi, Zeike A. Taylor

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

Accurately determining the spatial relationship between the pelvis and acetabulum is challenging due to their inherently complex three-dimensional (3D) anatomy. A standardized 3D pelvic coordinate system (PCS) and the precise assessment of acetabular orientation would enable the relationship to be determined. We present a surface-based method to establish a reliable PCS and develop software for semi-automatic measurement of acetabular spatial parameters. Vertices on the acetabular rim were manually extracted as an eigenpoint set after 3D models were imported into the software. A reliable PCS consisting of the anterior pelvic plane, midsagittal pelvic plane, and transverse pelvic plane was then computed by iteration on mesh data. A spatial circle was fitted as a succinct description of the acetabular rim. Finally, a series of mutual spatial parameters between the pelvis and acetabulum were determined semi-automatically, including the center of rotation, radius, and acetabular orientation. Pelvic models were reconstructed based on high-resolution computed tomography images. Inter- and intra-rater correlations for measurements of mutual spatial parameters were almost perfect, showing our method affords very reproducible measurements. The approach will thus be useful for analyzing anatomic data and has potential applications for preoperative planning in individuals receiving total hip arthroplasty.

Original languageEnglish
Pages (from-to)22-30
Number of pages9
JournalMedical Engineering and Physics
Volume52
Early online date18 Dec 2017
DOIs
Publication statusPublished - Feb 2018

Keywords

  • Acetabulum
  • computer assisted surgery
  • pelvic coordinate system
  • surface-based
  • total hip arthroplasty

Fingerprint

Dive into the research topics of 'A surface-based approach to determine key spatial parameters of the acetabulum in a standardized pelvic coordinate system'. Together they form a unique fingerprint.

Cite this