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Effectiveness of an Automatic Tracking Software in Underwater Motion Analysis

机译:自动跟踪软件在水下运动分析中的有效性

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摘要

Tracking of markers placed on anatomical landmarks is a common practice in sports science to perform the kinematic analysis that interests both athletes and coaches. Although different software programs have been developed to automatically track markers and/or features, none of them was specifically designed to analyze underwater motion. Hence, this study aimed to evaluate the effectiveness of a software developed for automatic tracking of underwater movements (DVP), based on the Kanade-Lucas-Tomasi feature tracker. Twenty-one video recordings of different aquatic exercises (n = 2940 markers’ positions) were manually tracked to determine the markers’ center coordinates. Then, the videos were automatically tracked using DVP and a commercially available software (COM). Since tracking techniques may produce false targets, an operator was instructed to stop the automatic procedure and to correct the position of the cursor when the distance between the calculated marker’s coordinate and the reference one was higher than 4 pixels. The proportion of manual interventions required by the software was used as a measure of the degree of automation. Overall, manual interventions were 10.4% lower for DVP (7.4%) than for COM (17.8%). Moreover, when examining the different exercise modes separately, the percentage of manual interventions was 5.6% to 29.3% lower for DVP than for COM. Similar results were observed when analyzing the type of marker rather than the type of exercise, with 9.9% less manual interventions for DVP than for COM. In conclusion, based on these results, the developed automatic tracking software presented can be used as a valid and useful tool for underwater motion analysis.Key Points class="unordered" style="list-style-type:disc">The availability of effective software for automatic tracking would represent a significant advance for the practical use of kinematic analysis in swimming and other aquatic sports.An important feature of automatic tracking software is to require limited human interventions and supervision, thus allowing short processing time.When tracking underwater movements, the degree of automation of the tracking procedure is influenced by the capability of the algorithm to overcome difficulties linked to the small target size, the low image quality and the presence of background clutters.The newly developed feature-tracking algorithm has shown a good automatic tracking effectiveness in underwater motion analysis with significantly smaller percentage of required manual interventions when compared to a commercial software.
机译:跟踪放置在解剖地标上的标记是体育科学中进行运动员和教练都感兴趣的运动学分析的一种常见实践。尽管已经开发了不同的软件程序来自动跟踪标记和/或功能,但是没有一个软件专门设计用于分析水下运动。因此,本研究旨在评估基于Kanade-Lucas-Tomasi特征跟踪器开发的用于自动跟踪水下运动(DVP)的软件的有效性。手动跟踪了21种不同水上运动的录像(n = 2940个标记的位置),以确定标记的中心坐标。然后,使用DVP和市售软件(COM)自动跟踪视频。由于跟踪技术可能会产生错误的目标,因此,当计算出的标记坐标与参考坐标之间的距离大于4个像素时,会指示操作员停止自动过程并校正光标的位置。该软件所需的手动干预比例用作自动化程度的度量。总体而言,DVP的人工干预(7.4%)比COM(17.8%)低10.4%。此外,当分别检查不同的运动模式时,DVP的手动干预百分比比COM降低了5.6%至29.3%。分析标记物的类型而非运动类型时,观察到相似的结果,DVP的手动干预比COM少9.9%。总之,基于这些结果,所开发的自动跟踪软件可以用作水下运动分析的有效和有用工具。要点 class =“ unordered” style =“ list-style-type:disc”> < !-list-behavior =无序前缀= word-mark-type = disc max-label-size = 0-> 自动跟踪的有效软件的可用性代表了运动学分析的实际应用的重大进步在游泳和其他水上运动中。 自动跟踪软件的一个重要功能是需要有限的人工干预和监督,从而可以缩短处理时间。 在跟踪水下运动时,该算法能够克服与目标尺寸小,图像质量低以及背景杂波的存在有关的困难,从而影响了跟踪过程的自动化程度。 新开发的特征跟踪算法具有表现出良好的自动跟踪效果与商用软件相比,水下运动分析中的有效性大大降低,所需的人工干预比例大大降低。

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