Future trends in the use of X-ray fluoroscopy for the measurement and modelling of joint motion

被引:10
作者
Ackland, D. C. [1 ]
Keynejad, F. [1 ]
Pandy, M. G. [1 ]
机构
[1] Univ Melbourne, Dept Mech Engn, Melbourne, Vic, Australia
关键词
human movement; gait analysis; soft tissue artefact; knee joint; computed tomography; magnetic resonance; imaging; musculoskeletal model; CARTILAGE CONTACT DEFORMATION; SKIN MOVEMENT ARTIFACT; IN-VIVO DETERMINATION; SOFT-TISSUE ARTIFACT; KNEE KINEMATICS; CAMERA CALIBRATION; IMAGE REGISTRATION; VALIDATION; MUSCLE; CT;
D O I
10.1177/0954411911422840
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Knowledge of three-dimensional skeletal kinematics during functional activities such as walking, is required for accurate modelling of joint motion and loading, and is important in identifying the effects of injury and disease. For example, accurate measurement of joint kinematics is essential in understanding the pathogenesis of osteoarthritis and its symptoms and for developing strategies to alleviate joint pain. Bi-plane X-ray fluoroscopy has the capacity to accurately and non-invasively measure human joint motion in vivo. Joint kinematics obtained using bi-plane X-ray fluoroscopy will aid in the development of more complex musculoskeletal models, which may be used to assess joint function and disease and plan surgical interventions and post-operative rehabilitation strategies. At present, however, commercial C-arm systems constrain the motion of the subject within the imaging field of view, thus precluding recording of motions such as overground gait. These fluoroscopy systems also operate at low frame rates and therefore cannot accurately capture high-speed joint motion during tasks such as running and throwing. In the future, bi-plane fluoroscopy systems may include computer-controlled tracking for the measurement of joint kinematics over entire cycles of overground gait without constraining motion of the subject. High-speed cameras will facilitate measurement of high-impulse joint motions, and computationally efficient pose-estimation software may provide a fast and fully automated process for quantification of natural joint motion.
引用
收藏
页码:1136 / 1148
页数:13
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