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基于模型的使用急动最优准则的颌运动运动学分析:人类咀嚼周期的模拟

Model-based analysis of jaw-movement kinematics using jerk-optimal criterion: simulation of human chewing cycles.

作者信息

Yashiro Kohtaro, Takada Kenji

机构信息

Department of Orthodontics and Dentofacial Orthopedics, Graduate School of Dentistry, Osaka University, 1-8 Yamadaoka, Suita, Osaka 565-0871, Japan.

出版信息

J Electromyogr Kinesiol. 2005 Oct;15(5):516-26. doi: 10.1016/j.jelekin.2004.11.005. Epub 2005 Feb 1.

Abstract

Large intra- and/or inter-individual variability in human masticatory motor behaviors may reduce objectivity in assessing normality/abnormality for jaw movements. Analytical simulation by kinematic modeling based on a universally accepted objective criterion is a potentially useful clinical tool for credible diagnostic quantification of jaw motion. This study aimed to test whether a minimum-jerk (maximum-smoothness) model could accurately simulate the kinematics in each separate gum-chewing cycle of 10 healthy adults, and if so, to examine whether simulation errors reflected an extent of abnormality for chewing movements for 10 patients caused by temporomandibular joint disorders (TMD). The model predicted the lower incisor-point movements of the control group with reasonable accuracy. Overall, the prediction errors for the patients group were greater than the control group, demonstrating that prediction errors for jaw opening velocity were sensitive to the criteria for joint disorders. It was concluded that the present simulation emerged as being capable of scaling the not so smooth masticatory jaw movements performed in the presence of TMD.

摘要

人类咀嚼运动行为存在较大的个体内和/或个体间变异性,这可能会降低评估下颌运动正常/异常的客观性。基于普遍接受的客观标准,通过运动学建模进行分析模拟,是一种用于可靠诊断定量下颌运动的潜在有用临床工具。本研究旨在测试最小冲击(最大平滑度)模型是否能够准确模拟10名健康成年人每个单独咀嚼周期的运动学,如果可以,则检查模拟误差是否反映了10名颞下颌关节紊乱病(TMD)患者咀嚼运动的异常程度。该模型以合理的准确性预测了对照组下切牙点的运动。总体而言,患者组的预测误差大于对照组,表明下颌开口速度的预测误差对关节紊乱标准敏感。得出的结论是,目前的模拟能够对TMD患者不那么平滑的咀嚼下颌运动进行量化。

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