Center for Language and Cognition, University of Groningen, the Netherlands.
Department of Cognitive Science, Macquarie University, Macquarie Park, New South Wales, Australia.
J Speech Lang Hear Res. 2021 Jul 16;64(7):2637-2667. doi: 10.1044/2021_JSLHR-20-00394. Epub 2021 Jun 21.
Purpose This study compares two electromagnetic articulographs manufactured by Northern Digital, Inc.: the NDI Wave System (from 2008) and the NDI Vox-EMA System (from 2020). Method Four experiments were completed: (a) comparison of statically positioned sensors, (b) tracking dynamic movements of sensors manipulated using a motor-driven LEGO apparatus, (c) tracking small and large movements of sensors mounted in a rigid bar manipulated by hand, and (d) tracking movements of sensors rotated on a circular disc. We assessed spatial variability for statically positioned sensors, variability in the transduced Euclidean distances between sensor pairs, and missing data rates. For sensors tracking circular movements, we compared the fit between fitted ideal circles and actual trajectories. Results The average sensor pair tracking error (i.e., the standard deviation of the Euclidean distances) was 1.37 mm for the WAVE and 0.12 mm for the VOX during automated trials at the fastest speed, and 0.35 mm for the WAVE and 0.14 mm for the VOX during the tracking of large manual movements. The average standard deviation of the fitted circle radii charted by manual circular disc movements was 0.72 mm for the WAVE sensors and 0.14 mm for the VOX sensors. There was no significant difference between the WAVE and the VOX in the number of missing frames. Conclusions In general, the VOX system significantly outperformed the WAVE on measures of both static precision and dynamic accuracy (automated and manual). For both systems, positional precision and spatial variability were influenced by the sensors' position relative to the field generator unit (worse when further away). Supplemental Material https://doi.org/10.23641/asha.14787846.
目的 本研究比较了两家由 Northern Digital, Inc. 生产的电磁式发音动作描记器:NDI Wave 系统(2008 年)和 NDI Vox-EMA 系统(2020 年)。
方法 完成了四项实验:(a)静态定位传感器的比较,(b)使用电机驱动的乐高设备操纵传感器的动态运动的跟踪,(c)在刚性杆上安装传感器并手动操纵小和大运动的跟踪,以及(d)在圆形盘上旋转传感器的运动跟踪。我们评估了静态定位传感器的空间变异性、传感器对之间的感应欧几里得距离的变异性以及缺失数据率。对于跟踪圆形运动的传感器,我们比较了拟合理想圆与实际轨迹之间的拟合情况。
结果 在最快速度下,自动试验中,WAVE 和 VOX 的平均传感器对跟踪误差(即欧几里得距离的标准差)分别为 1.37mm 和 0.12mm,而在大手动运动的跟踪中,WAVE 和 VOX 的平均传感器对跟踪误差分别为 0.35mm 和 0.14mm。手动圆盘运动所绘制的拟合圆半径的平均标准差分别为 WAVE 传感器的 0.72mm 和 VOX 传感器的 0.14mm。在缺失帧数方面,WAVE 和 VOX 之间没有显著差异。
结论 总体而言,在静态精度和动态精度(自动和手动)方面,VOX 系统均明显优于 WAVE 系统。对于这两个系统,位置精度和空间变异性都受到传感器相对于场发生器单元位置的影响(距离越远越差)。