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一种预测肘关节活动范围的计算模型的评估

Evaluation of a computational model to predict elbow range of motion.

作者信息

Willing Ryan T, Nishiwaki Masao, Johnson James A, King Graham J W, Athwal George S

机构信息

Bioengineering Research Laboratory, The Hand and Upper Limb Centre, Lawson Health Research Institute, St. Joseph's Health Care London , London , Ontario .

出版信息

Comput Aided Surg. 2014;19(4-6):57-63. doi: 10.3109/10929088.2014.886083. Epub 2014 May 19.

Abstract

Computer models capable of predicting elbow flexion and extension range of motion (ROM) limits would be useful for assisting surgeons in improving the outcomes of surgical treatment of patients with elbow contractures. A simple and robust computer-based model was developed that predicts elbow joint ROM using bone geometries calculated from computed tomography image data. The model assumes a hinge-like flexion-extension axis, and that elbow passive ROM limits can be based on terminal bony impingement. The model was validated against experimental results with a cadaveric specimen, and was able to predict the flexion and extension limits of the intact joint to 0° and 3°, respectively. The model was also able to predict the flexion and extension limits to 1° and 2°, respectively, when simulated osteophytes were inserted into the joint. Future studies based on this approach will be used for the prediction of elbow flexion-extension ROM in patients with primary osteoarthritis to help identify motion-limiting hypertrophic osteophytes, and will eventually permit real-time computer-assisted navigated excisions.

摘要

能够预测肘关节屈伸活动范围(ROM)极限的计算机模型,将有助于外科医生改善肘关节挛缩患者的手术治疗效果。我们开发了一种简单且可靠的基于计算机的模型,该模型利用从计算机断层扫描图像数据计算得出的骨骼几何形状来预测肘关节ROM。该模型假定存在类似铰链的屈伸轴,并且肘关节被动ROM极限可基于终末骨撞击。该模型通过对一具尸体标本的实验结果进行了验证,能够分别将完整关节的屈伸极限预测到0°和3°。当在关节中插入模拟骨赘时,该模型还能够分别将屈伸极限预测到1°和2°。基于此方法的未来研究将用于预测原发性骨关节炎患者的肘关节屈伸ROM,以帮助识别限制活动的肥大性骨赘,并最终实现实时计算机辅助导航切除。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/804d/4269151/b94af00a4dfc/CSU-19-57-g001.jpg

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