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Spatiotemporal Visualization of the Tongue Surface using Ultrasound and Kriging

机译:使用超声和克里金法对舌表面进行时空可视化

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Analyzing the motion of the tongue surface provides valuable information about speech and swallowing. To analyze this motion, two-dimensional ultrasound images are acquired at video frame rates, and the tongue surface is automatically extracted and tracked. Further processing and statistical analysis of the extracted contours is made difficult by: 1) arbitrary spatial shifts and data loss resulting from ultrasound transducer positioning; 2) difference in tongue lengths over time for same utterance (or swallow) and across subjects; and 3) differences in the sampling locations. To address the above shortcomings, we used kriging to extrapolate and resample the tongue surface contours. Kriging was used because it does not lead to wild oscillations associated with traditional polynomial fitting. For our kriging implementation, we used the generalized covariance function and linear drift functions that are used in thin plate splines. Further, we designed a dedicated user interface called "SURFACES" that exploits this extrapolation to visualize the contours as spatiotemporal surfaces. These spatioteniporal surfaces can be readily used for statistical comparison and visualization of tongue shapes for different utterances and swallows.
机译:分析舌头表面的运动可提供有关语音和吞咽的宝贵信息。为了分析这种运动,以视频帧速率获取二维超声图像,并自动提取和跟踪舌头表面。由于以下原因,难以对提取的轮廓进行进一步的处理和统计分析:1)超声换能器定位导致的任意空间偏移和数据丢失; 2)同一说话时间(或吞咽时间)以及跨对象的舌头长度随时间的差异; 3)采样位置的差异。为了解决上述缺点,我们使用克里金法对舌面轮廓进行外推和重新采样。使用克里金法是因为它不会导致与传统多项式拟合相关的剧烈振荡。对于我们的克里金法实现,我们使用了薄板样条中使用的广义协方差函数和线性漂移函数。此外,我们设计了一个专用的用户界面,称为“ SURFACES”,利用此外推法将轮廓可视化为时空表面。这些空腹表面可以很容易地用于统计比较和可视化不同发声和吞咽的舌头形状。

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