首页> 外文会议>ASME international mechanical engineering congress and exposition >ANALYSIS OF KNOB TRACES BASED ON CHANGES IN ARMRESTS LENGTH AND CENTRAL AXIS LOCATION OF GRAHAMIZER
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ANALYSIS OF KNOB TRACES BASED ON CHANGES IN ARMRESTS LENGTH AND CENTRAL AXIS LOCATION OF GRAHAMIZER

机译:基于Grahamizer扶手长度和中心轴位置变化的旋钮轨迹分析

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The hemiparalysis, which is a widely known side effect of the disease, requires consistent and accurate rehabilitation exercise treatment. The Grahamizer is a representative piece of equipment for such treatment. Because it consists of a double pivot system, under exercise, the irregularly moving pivots could create an unintended movement and malfunction. Using the Grahamizer, this study analyzed movement patterns based on changes in the armrest's length and the central axis location for a stable and accurate upper limb rehabilitation exercise. Eight healthy subjects participated in the study. The Grahamizer, which allows the length of the armrest and the central axis location to be adjusted, was used for experimental equipment. The length could be adjusted to five levels (280mm, 220mm, 160mm, 100mm, and 40mm), and the location ranged from 5 levels to 1 level based on the length of the arm support (280mm: 5positions, 220mm: 4positions, 160mm: 3positions, 100mm: 2positions, 40mm: lposition). A marker located above a knob traced the knob's movements. The experiment was conducted three times. Each subject held the knob and implemented rotational movements passively, with an angular velocity of 30°/s. After integrating the subjects' movement traces, the tendency was analyzed. A previous study provided an analysis of the elbow and shoulder joint movements under a normal upper-body rotation movement. This study on movement traces was conducted based on those results. Longer armrest lengths and greater distances between the central axis location and knob showed greater stability for the rotation movements. Remarkable results were found for changes in the axis location. However, smaller distances between the axis location and knob revealed larger movement traces. A previous study found, when a counterclockwise rotation was defined as 0°~360°, that an elbow motion of 0°~180° is flexion and 180°~360° is extension. The shoulder joint motions are similar: 0°~90°: medial rotation, 90°~180°: lateral rotation, 180°~270° medial rotation, and 270°~360°: lateral rotation. According to the previous study, with a larger trace (smaller distance between the axis location and knob), the rotation movements of the elbow and shoulder are more accurate from 0° to 180° than from 180° to 360°. The experiment confirmed that the Grahamizer's armrest axis location has an impact on movement traces, and changes in the traces prevented the intended joint exercise. Under the circumstances, the location is an important design variable when developing the Grahamizer.
机译:半瘫痪是该病的一种广为人知的副作用,需要一致而准确的康复运动治疗。 Grahamizer是用于此类处理的代表性设备。由于它由双枢轴系统组成,因此在运动中,不规则移动的枢轴可能会造成意外的运动和故障。这项研究使用Grahamizer,根据扶手长度和中心轴位置的变化分析了运动模式,以进行稳定而准确的上肢康复锻炼。八名健康受试者参加了该研究。可以调节扶手长度和中心轴位置的Grahamizer用于实验设备。长度可以调整为五个级别(280mm,220mm,160mm,100mm和40mm),根据手臂支撑的长度,位置可以从5个级别到1个级别(280mm:5个位置,220mm:4个位置,160mm: 3位置,100mm:2位置,40mm:位置)。位于旋钮上方的标记跟踪了旋钮的运动。实验进行了三次。每个受试者都握住旋钮并以30°/ s的角速度被动地进行旋转运动。在整合了受试者的运动轨迹之后,对趋势进行了分析。先前的研究分析了正常上身旋转运动下的肘关节和肩关节运动。基于这些结果进行了运动轨迹的研究。较长的扶手长度以及中心轴位置和旋钮之间的距离更大,显示出旋转运动的稳定性更高。对于轴位置的变化,发现了显着的结果。但是,轴位置和旋钮之间的距离较小,显示出较大的运动轨迹。先前的研究发现,将逆时针旋转定义为0°〜360°时,肘部运动0°〜180°是屈曲,180°〜360°是伸展。肩关节运动类似:0°〜90°:内侧旋转; 90°〜180°:外侧旋转; 180°〜270°内侧旋转;以及270°〜360°:外侧旋转。根据先前的研究,在轨迹较大(轴位置和旋钮之间的距离较小)的情况下,肘部和肩部从0°到180°的旋转运动比从180°到360°的旋转运动更准确。实验证实,Grahamizer的扶手轴位置对运动轨迹有影响,轨迹的变化阻止了预期的关节运动。在这种情况下,开发Grahamizer时,位置是重要的设计变量。

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