Validation of a new model-based tracking technique for measuring three-dimensional, in vivo glenohumeral joint kinematics

被引:232
作者
Bey, Michael J. [1 ]
Zauel, Roger [1 ]
Brock, Stephanie K. [1 ]
Tashman, Scott [1 ]
机构
[1] Henry Ford Hlth Syst, Dept Orthopaed & Rehabil, Ctr Bone & Joint, Detroit, MI 48202 USA
来源
JOURNAL OF BIOMECHANICAL ENGINEERING-TRANSACTIONS OF THE ASME | 2006年 / 128卷 / 04期
关键词
shoulder; kinematics; accuracy; glenohumeral joint; rotator cuff;
D O I
10.1115/1.2206199
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Shoulder motion is complex and significant research efforts have focused on measuring glenohumeral joint motion. Unfortunately, conventional motion measurement techniques are unable to measure glenohumeral joint kinematics during dynamic shoulder motion to clinically significant levels of accuracy. The purpose of this study was to validate the accuracy of a new model-based tracking technique for measuring three-dimensional, in vivo glenohumeral joint kinematics. We have developed a model-based tracking technique for accurately measuring in vivo joint motion from biplane radiographic images that tracks the position of bones based on their three-dimensional shape and texture. To validate this technique, we implanted tantalum beads into the humerus and scapula of both shoulders from three cadaver specimens and then recorded biplane radiographic images of the shoulder while manually moving each specimen's arm. The position of the humerus and scapula were measured using the model-based tracking system and with a previously validated dynamic radiostereometric analysis (RSA) technique. Accuracy was reported in terms of measurement bias, measurement precision, and overall dynamic accuracy by comparing the model-based tracking results to the dynamic RSA results. The model-based tracking technique produced results that were in excellent agreement with the RSA technique. Measurement bias ranged from -0.126 to 0.199 mm for the scapula and ranged from -0.022 to 0.079 mm for the humerus. Dynamic measurement precision was better than 0.130 mm for the scapula and 0.095 mm for the humerus. Overall dynamic accuracy indicated that rms errors in any one direction were less than 0.385 mm for the scapula and less than 0.374 mm for the humerus. These errors correspond to rotational inaccuracies of approximately 0.25 deg for the scapula and 0.47 deg for the humerus. This new model-based tracking approach represents a non-invasive technique for accurately measuring dynamic glenohumeral joint motion under in vivo conditions. The model-based technique achieves accuracy levels that far surpass all previously reported non-invasive techniques for measuring in vivo glenohumeral joint motion. This technique is supported by a rigorous validation study that provides a realistic simulation of in vivo conditions and we fully expect to achieve these levels of accuracy with in vivo human testing. Future research will use this technique to analyze shoulder motion under a variety of testing conditions and to investigate the effects of conservative and surgical treatment of rotator cuff tears on dynamic joint stability.
引用
收藏
页码:604 / 609
页数:6
相关论文
共 63 条
[1]   3-DIMENSIONAL KINEMATICS OF GLENOHUMERAL ELEVATION [J].
AN, KN ;
BROWNE, AO ;
KORINEK, S ;
TANAKA, S ;
MORREY, BF .
JOURNAL OF ORTHOPAEDIC RESEARCH, 1991, 9 (01) :143-149
[2]  
ASTM, 1996, STAND PRACT US TERMS
[3]   Glenohumeral joint kinematics related to minor anterior instability of the shoulder at the end of the late preparatory phase of throwing [J].
Baeyens, JP ;
Van Roy, P ;
De Schepper, A ;
Declercq, G ;
Clarijs, JP .
CLINICAL BIOMECHANICS, 2001, 16 (09) :752-757
[4]   The measurement of three dimensional scapulohumeral kinematics - a study of reliability [J].
Barnett, ND ;
Duncan, RDD ;
Johnson, GR .
CLINICAL BIOMECHANICS, 1999, 14 (04) :287-290
[5]   Biomechanics of windmill softball pitching with implications about injury mechanisms at the shoulder and elbow [J].
Barrentine, SW ;
Fleisig, GS ;
Whiteside, JA ;
Escamilla, RF ;
Andrews, JR .
JOURNAL OF ORTHOPAEDIC & SPORTS PHYSICAL THERAPY, 1998, 28 (06) :405-414
[6]   Glenohumeral relationships during physiologic shoulder motion and stress testing: Initial experience with open MR imaging and active imaging-plane registration [J].
Beaulieu, CF ;
Hodge, DK ;
Bergman, AG ;
Butts, K ;
Daniel, BL ;
Napper, CL ;
Darrow, RD ;
Dumoulin, CL ;
Herfkens, RJ .
RADIOLOGY, 1999, 212 (03) :699-705
[7]   Comparison of scapular kinematics between elevation and lowering of the arm in the scapular plane [J].
Borstad, JD ;
Ludewig, PM .
CLINICAL BIOMECHANICS, 2002, 17 (9-10) :650-659
[8]   Glenohumeral kinematics and capsule-ligamentous strain resulting from laxity exams [J].
Brenneke, SL ;
Reid, J ;
Ching, RP ;
Wheeler, DL .
CLINICAL BIOMECHANICS, 2000, 15 (10) :735-742
[9]  
BURKHART SS, 1992, CLIN ORTHOP RELAT R, P144
[10]  
Cardinal E, 1996, CAN ASSOC RADIOL J, V47, P44