Molteni Luca Emanuele, Piccinini Luigi, Panzeri Daniele, Micheletti Ettore, Andreoni Giuseppe
Scientific Institute IRCCS "E.Medea", Bosisio Parini, 23842 Lecco, Italy.
Department of Design, Politecnico di Milano, 20133 Milano, Italy.
Bioengineering (Basel). 2025 Aug 23;12(9):905. doi: 10.3390/bioengineering12090905.
(1) Background: Upper limb (UL) function plays a central role in daily life, enabling essential tasks such as reaching, grasping, and eating. While numerous tools exist to evaluate UL kinematics, their application in pediatric populations is often limited by a lack of age-specific validation. This study presents a novel motion analysis protocol featuring a customized marker set, aimed at assessing UL movements in the three anatomical planes across different age groups, with a focus on pediatric applicability. (2) Materials and Methods: A SmartDX motion capture system was used, with 30 markers positioned on the upper body, referencing the trunk as the root of the kinematic chain. Ten healthy participants (mean age: 18.69 ± 12.45 years; range: 8.0-41.4) without UL impairments were recruited. The broad age range was intentionally selected to assess the protocol's transversal applicability. (3) Results: Results showed excellent intra-operator reliability for shoulder and wrist kinematics (ICC > 0.906) and good reliability for elbow movements (ICC > 0.755). Inter-operator reliability was good to excellent (shoulder ICC > 0.958; elbow ICC > 0.762; wrist ICC > 0.826) Usability, measured via the System Usability Scale, was rated as good (83.25). (4) Conclusions: The proposed protocol demonstrated strong reliability and practical usability, supporting its adoption in clinical and research settings. Its design allows for adaptability across motion capture platforms, promoting wider implementation in pediatric UL functional assessment.
(1) 背景:上肢功能在日常生活中起着核心作用,使诸如够物、抓握和进食等基本任务得以完成。虽然有许多工具可用于评估上肢运动学,但它们在儿科人群中的应用往往因缺乏针对特定年龄的验证而受到限制。本研究提出了一种新颖的运动分析方案,其具有定制的标记集,旨在评估不同年龄组在三个解剖平面上的上肢运动,重点是儿科适用性。(2) 材料和方法:使用了SmartDX运动捕捉系统,在上半身放置30个标记,以躯干作为运动链的根部进行参考。招募了10名无上肢损伤的健康参与者(平均年龄:18.69 ± 12.45岁;范围:8.0 - 41.4岁)。故意选择较宽的年龄范围以评估该方案的横向适用性。(3) 结果:结果显示,对于肩部和腕部运动学,操作者内可靠性极佳(组内相关系数ICC > 0.906),对于肘部运动,可靠性良好(ICC > 0.755)。操作者间可靠性良好至极佳(肩部ICC > 0.958;肘部ICC > 0.762;腕部ICC > 0.826)。通过系统可用性量表测量的可用性被评为良好(83.25)。(4) 结论:所提出的方案显示出强大的可靠性和实际可用性,支持其在临床和研究环境中的采用。其设计允许在不同运动捕捉平台上进行适应性调整,促进在儿科上肢功能评估中的更广泛应用。