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Superpixels based marker tracking vs. hue thresholding in rodent biomechanics application

机译:在啮齿动物生物力学应用中基于超像素的标记跟踪与色相阈值

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Examining locomotion has improved our basic understanding of motor control and aided in treating motor impairment. Mice and rats are premier models of human disease and increasingly the model systems of choice for basic neuroscience. High frame rates (250 Hz) are needed to quantify the kinematics of these running rodents. Manual tracking, especially for multiple markers, becomes time-consuming and impossible for large sample sizes. Therefore, the need for automatic segmentation of these markers has grown in recent years. We propose two methods to segment and track these markers: first, using SLIC superpixels segmentation with a tracker based on position, speed, shape, and color information of the segmented region in the previous frame; second, using a thresholding on hue channel following up with the same tracker. The comparison showed that the SLIC superpixels method was superior because the segmentation was more reliable and based on both color and spatial information.
机译:检查运动可以增进我们对运动控制的基本了解,并有助于治疗运动障碍。小鼠和大鼠是人类疾病的主要模型,并且越来越成为基础神经科学选择模型的系统。需要高帧频(250 Hz)来量化这些正在运行的啮齿动物的运动学。手动跟踪(尤其是针对多个标记物)的手动跟踪非常耗时,并且对于大样本量来说是不可能的。因此,近年来对这些标记物的自动分割的需求不断增长。我们提出了两种方法来分割和跟踪这些标记:首先,根据前一帧中分割区域的位置,速度,形状和颜色信息,使用带有跟踪器的SLIC超像素分割;第二,在色相通道上使用阈值,并跟进相同的跟踪器。比较表明,SLIC超像素方法具有优越性,因为分割更加可靠,并且基于颜色和空间信息。

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