Centre for Biomechanics and Rehabilitation Technologies, Staffordshire University, Leek Road, Stoke on Trent, ST4 2DF, UK.
Centre for Biomechanics and Rehabilitation Technologies, Staffordshire University, Leek Road, Stoke on Trent, ST4 2DF, UK.
Foot (Edinb). 2020 Sep;44:101678. doi: 10.1016/j.foot.2020.101678. Epub 2020 Mar 7.
Vector coding is a non-linear data analysis technique that quantifies inter-segmental coordination and coordination variability. The traditional approach of reporting time-series data from vector coding can be problematic when overlaying multiple trials on the same illustration. The objective of this study was to describe and present novel data visualisations for displaying the coordination pattern, segmental dominancy, range of motion on an angle-angle diagram, and coordination variability. This allows for a comparison of data across multiple participants with a focus on single subject analysis.
Novel data visualisation techniques that involve the use of colour and data bars to map and profile coordination pattern and coordination variability data. The introduction and profiling of inter-data point range of motion quantifies range of motion of the dominant segment on an angle-angle plot and illustrates patterns of movement control. As an example, the dataset used the Istituto Ortopedico Rizzoli foot model to describe rearfoot-forefoot and shank-foot coordination during stance.
The use of colour mapping provides the option to inspect an entire dataset and to compare data across multiple participants, groups, and segment couplings. Combining coupling angle mapping with segmental dominancy profiling offers an intuitive and instant summary on coupling angle distribution. The novel inclusion of inter-data point range of motion profiling provides meaning to the interpretation of segmental dominancy data and demonstrates distinct patterns of movement control.
The use of colour mapping and profiling techniques highlighted differences in coordination pattern and coordination variability data across several participants that questions the interpretation and relevance of reporting group data. Colour mapping and profiling techniques are ideal reporting methods to compliment prospective multiple single-subject design studies and to classify commonalities and differences in patterns of coordination and patterns of control between individuals or trials. The data visualisation approaches in the current study may provide further insight on overuse injuries, exercise prescription and rehabilitation interventions.
向量编码是一种非线性数据分析技术,可量化节段间的协调性和协调性变化。当在同一张插图上叠加多个试验时,从向量编码报告时序列数据的传统方法可能会出现问题。本研究的目的是描述和呈现新颖的数据可视化方法,以显示协调模式、节段优势、角度-角度图上的运动范围和协调性变化。这允许在多个参与者之间比较数据,并侧重于单个主题分析。
新颖的数据可视化技术涉及使用颜色和数据条来映射和分析协调模式和协调性变化数据。引入并分析数据点之间的运动范围,量化主导节段在角度-角度图上的运动范围,并说明运动控制模式。例如,该数据集使用 Istituto Ortopedico Rizzoli 足部模型来描述站立时后足-前足和小腿-足部的协调。
颜色映射的使用提供了检查整个数据集的选项,并允许在多个参与者、组和节段耦合之间比较数据。将耦合角度映射与节段优势分析相结合,提供了耦合角度分布的直观和即时总结。新颖的包括数据点之间的运动范围分析,为节段优势数据的解释提供了意义,并展示了运动控制的不同模式。
颜色映射和分析技术突出了几个参与者之间协调模式和协调性变化数据的差异,这对报告组数据的解释和相关性提出了质疑。颜色映射和分析技术是补充前瞻性多个单一主题设计研究以及分类个体或试验之间协调模式和控制模式的常见性和差异性的理想报告方法。当前研究中的数据可视化方法可能会为过度使用损伤、运动处方和康复干预提供进一步的见解。