Valevicius Aïda M, Jun Peter Y, Hebert Jacqueline S, Vette Albert H
Department of Biomedical Engineering, University of Alberta, 1098 Research Transition Facility, Edmonton, Alberta T6G 2V2, Canada.
Faculty of Rehabilitation Medicine, University of Alberta, 3-48 Corbett Hall, Edmonton, Alberta T6G 2G4, Canada.
J Electromyogr Kinesiol. 2018 Jun;40:1-15. doi: 10.1016/j.jelekin.2018.02.011. Epub 2018 Feb 23.
Quantifying three-dimensional upper body kinematics can be a valuable method for assessing upper limb function. Considering that kinematic model characteristics, performed tasks, and reported outcomes are not consistently standardized and exhibit significant variability across studies, the purpose of this review was to evaluate the literature investigating upper body kinematics in non-disabled individuals via optical motion capture. Specific objectives were to report on the kinematic model characteristics, performed functional tasks, and kinematic outcomes, and to assess whether kinematic protocols were assessed for validity and reliability. Five databases were searched. Studies using anatomical and/or cluster marker sets, along with optical motion capture, and presenting normative data on upper body kinematics were eligible for review. Information extracted included model characteristics, performed functional tasks, kinematic outcomes, and validity or reliability testing. 804 publication records were screened and 20 reviewed based on the selection criteria. Thirteen studies described their kinematic protocols adequately for reproducibility, and 8 studies followed International Society of Biomechanics standards for quantifying upper body kinematics. Six studies assessed their protocols for validity or reliability. While a substantial number of studies have adequately reported their protocols, more systematic work is needed to evaluate the validity and reliability of existing protocols.
量化三维上身运动学可以成为评估上肢功能的一种有价值的方法。鉴于运动学模型特征、执行的任务以及报告的结果在各研究中并未始终得到标准化,且存在显著差异,本综述的目的是评估通过光学动作捕捉研究非残疾个体上身运动学的文献。具体目标是报告运动学模型特征、执行的功能任务和运动学结果,并评估运动学方案是否经过有效性和可靠性评估。检索了五个数据库。使用解剖学和/或聚类标记集以及光学动作捕捉,并呈现上身运动学规范数据的研究符合纳入综述的条件。提取的信息包括模型特征、执行的功能任务、运动学结果以及有效性或可靠性测试。筛选了804条出版物记录,并根据选择标准对20篇进行了综述。13项研究充分描述了其运动学方案以确保可重复性,8项研究遵循国际生物力学学会的标准来量化上身运动学。6项研究评估了其方案的有效性或可靠性。虽然大量研究已充分报告了其方案,但仍需要更系统的工作来评估现有方案的有效性和可靠性。