Pelvis and lower limb anatomical landmark calibration precision and its propagation to bone geometry and joint angles

被引:180
作者
Della Croce, U [1 ]
Cappozzo, A
Kerrigan, DC
机构
[1] Univ Sassari, Dipartimento Sci Biomed, I-07100 Sassari, Italy
[2] Harvard Univ, Sch Med, Dept Phys Med & Rehabil, Boston, MA USA
[3] Spaulding Rehabil Hosp, Boston, MA USA
关键词
movement analysis; stereophotogrammetry; anatomical landmarks; bone geometry; anatomical landmark calibration; precision; joint kinematics;
D O I
10.1007/BF02513282
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
Human movement analysis using stereophotogrammetry is based on the reconstruction of the instantaneous laboratory position of selected bony anatomical landmarks (AL). For this purpose, knowledge of an AL's position in relevant bone-embedded frames is required. Because ALs are not points but relatively large and curved areas, their identification by palpation or other means is subject to both intra- and inter-examiner variability. In addition, the local position of ALs, as reconstructed using an ad hoc experimental procedure (AL calibration), is affected by photogrammetric errors. The intra- and inter-examiner precision with which local positions of pelvis and lower limb palpable bony ALs can be identified and reconstructed were experimentally assessed. Six examiners and two subjects participated in the study. Intra- and inter-examiner precision (RMS distance from the mean position) resulted in the range 6-21 mm and 13-25 mm, respectively. Propagation of the imprecision of ALs to the orientation of bone-embedded anatomical frames and to hip, knee and ankle joint angles was assessed. Results showed that this imprecision may cause distortion in joint angle against lime functions to the extent that information relative to angular movements in the range of 10 degrees or lower may be concealed. Bone geometry parameters estimated using the same data showed that the relevant precision does not allow for reliable bone geometry description. These findings, together with those relative to skin movement artefacts reported elsewhere, assist the human movement analyst's consciousness of the possible limitations involved in 3D movement analysis using stereophotogrammetry and call for improvements of the relevant experimental protocols.
引用
收藏
页码:155 / 161
页数:7
相关论文
共 29 条
[1]  
[Anonymous], 3 DIMENSIONAL ANAL H
[2]  
BACKMAN S, 1957, ACTA RADIOL S, V146
[3]   A COMPARISON OF THE ACCURACY OF SEVERAL HIP CENTER LOCATION PREDICTION METHODS [J].
BELL, AL ;
PEDERSEN, DR ;
BRAND, RA .
JOURNAL OF BIOMECHANICS, 1990, 23 (06) :617-621
[4]  
BENEDETTI MG, 1994, 2 CAMARC
[5]   AN ALGORITHM FOR 3-D AUTOMATIC MOVEMENT DETECTION BY MEANS OF STANDARD TV CAMERAS [J].
BORGHESE, NA ;
FERRIGNO, G .
IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERING, 1990, 37 (12) :1221-1225
[6]   Multiple anatomical landmark calibration for optimal bone pose estimation [J].
Cappello, A ;
Cappozzo, A ;
LaPalombara, PF ;
Lucchetti, L ;
Leardini, A .
HUMAN MOVEMENT SCIENCE, 1997, 16 (2-3) :259-274
[7]   GAIT ANALYSIS METHODOLOGY [J].
CAPPOZZO, A .
HUMAN MOVEMENT SCIENCE, 1984, 3 (1-2) :27-50
[8]   Surface-marker cluster design criteria for 3-D bone movement reconstruction [J].
Cappozzo, A ;
Cappello, A ;
DellaCroce, U ;
Pensalfini, F .
IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERING, 1997, 44 (12) :1165-1174
[9]   POSITION AND ORIENTATION IN-SPACE OF BONES DURING MOVEMENT - ANATOMICAL FRAME DEFINITION AND DETERMINATION [J].
CAPPOZZO, A ;
CATANI, F ;
DELLA CROCE, U ;
LEARDINI, A .
CLINICAL BIOMECHANICS, 1995, 10 (04) :171-178
[10]   Position and orientation in space of bones during movement: Experimental artefacts [J].
Cappozzo, A ;
Catani, F ;
Leardini, A ;
Benedetti, MG ;
DellaCroce, U .
CLINICAL BIOMECHANICS, 1996, 11 (02) :90-100