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Semiautomatic marker tracking of tongue positions captured by videofluoroscopy during primate feeding

机译:灵长类动物进食期间通过视频荧光透视术捕获的舌头位置的半自动标记跟踪

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摘要

Videofluoroscopy (VF) is one of the most commonly used tools to assess oropharyngeal dysphagia as well as to visualize musculoskeletal structures of humans and animals engaged in various behaviors, including feeding. Despite its importance in clinical and scientific use, processing VF data has historically been extremely tedious because it is performed using manual frame-by-frame methods. With recent technological advances, the frame rate for scientific use has been increasing along with the use of high speed data capture systems. In the current study, we used non-human primates as a model animal to study human feeding behaviors to capture tongue movement based on markers implanted into the tongue. Here, we introduce a semi-automatic marker tracking algorithm that yields high tracking accuracy (> 90%) and dramatic speed improvements (faster than real time labeling). Furthermore, we quantify the sources of tracking errors and the tracking performance as a function of marker speeds. Our results indicate that there is more room for methodological improvements both in detection and prediction of marker positions. Moreover, correspondingly faster frame rates will be required to capture faster kinematic behaviors such as those of mice, which are extensively used to study both control and pathological conditions.
机译:荧光透视检查(VF)是评估口咽吞咽困难以及可视化人类和动物各种行为(包括进食)的肌肉骨骼结构的最常用工具之一。尽管VF数据在临床和科学应用中具有重要意义,但由于使用手动逐帧方法执行VF数据,历史上一直非常繁琐。随着最新技术的发展,随着高速数据捕获系统的使用,用于科学用途的帧速率一直在增加。在当前的研究中,我们使用非人类灵长类动物作为模型动物来研究人类的进食行为,以基于植入舌头的标记来捕捉舌头的运动。在这里,我们介绍了一种半自动标记跟踪算法,该算法可产生较高的跟踪精度(> 90%)并显着提高速度(比实时标记更快)。此外,我们将跟踪误差的来源和跟踪性能作为标记速度的函数进行量化。我们的结果表明,在标记物位置的检测和预测中,方法学都有更大的改进空间。此外,将需要相应的更快的帧速率来捕获更快的运动学行为,例如小鼠的运动学行为,这被广泛用于研究控制和病理状况。

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