首页> 外文期刊>Journal of biomechanical engineering. >A Direct Method for Mapping the Center of Pressure Measured by an Insole Pressure Sensor System to the Shoe's Local Coordinate System
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A Direct Method for Mapping the Center of Pressure Measured by an Insole Pressure Sensor System to the Shoe's Local Coordinate System

机译:将鞋垫压力传感器系统测得的压力中心映射到鞋子的局部坐标系的直接方法

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摘要

A direct method to express the center of pressure (CoP) measured by an insole pressure sensor system (IPSS) into a known coordinate system measured by motion tracking equipment is presented. A custom probe was constructed with reflective markers to allow its tip to be precisely tracked with motion tracking equipment. This probe was utilized to activate individual sensors on an IPSS that was placed in a shoe fitted with reflective markers used to establish a local shoe coordinate system. When pressed onto the IPSS the location of the probe's tip was coincident with the CoP measured by the IPSS (IPSS-CoP). Two separate pushes (i.e., data points) were used to develop vectors in each respective coordinate system. Simple vector mathematics determined the rotational and translational components of the transformation matrix needed to express the IPSS-CoP into the local shoe coordinate system. Validation was performed by comparing IPSS-CoP with an embedded force plate measured CoP (FP-CoP) from data gathered during kinematic trials. Six male subjects stood on an embedded FP and performed anterior/posterior (AP) sway, internal rotation, and external rotation of the body relative to a firmly planted foot. The IPSS-CoP was highly correlated with the FP-CoP for all motions, root mean square errors (RMSRRs) were comparable to other research, and there were no statistical differences between the displacement of the IPSS-CoP and FP-CoP for both the AP and medial/lateral (ML) axes, respectively. The results demonstrated that this methodology could be utilized to determine the transformation variables need to express IPSS-CoP into a known coordinate system measured by motion tracking equipment and that these variables can be determined outside the laboratory anywhere motion tracking equipment is available.
机译:提出了一种直接方法,将鞋垫压力传感器系统(IPSS)测量的压力中心(CoP)表示为运动跟踪设备测量的已知坐标系。定制的探头带有反射标记,可以用运动跟踪设备精确跟踪其尖端。该探针用于激活IPSS上的各个传感器,该传感器放置在装有反射标记的鞋子中,该反射标记用于建立本地鞋子坐标系。当按压到IPSS上时,探头尖端的位置与IPSS(IPSS-CoP)测量的CoP一致。使用两个单独的推动(即数据点)在每个各自的坐标系中生成矢量。简单的矢量数学确定了将IPSS-CoP表示为本地鞋子坐标系所需的变换矩阵的旋转和平移分量。通过比较IPSS-CoP与嵌入式测力板测得的CoP(FP-CoP),从运动学试验期间收集的数据中进行验证。六名男性受试者站在嵌入式FP上,相对于牢固种植的脚进行了身体的前/后(AP)摇摆,内部旋转和外部旋转。 IPSS-CoP与FP-CoP在所有运动中都高度相关,均方根误差(RMSRR)与其他研究相当,并且IPSS-CoP和FP-CoP的位移之间没有统计学差异。 AP和内侧/外侧(ML)轴。结果表明,该方法可用于确定将IPSS-CoP表达到运动跟踪设备测量的已知坐标系中所需的转换变量,并且这些变量可以在有运动跟踪设备可用的实验室之外确定。

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