Test Control of Inclusive Physical Education: Assessment Using the Newest Electronics

O. Blavt, G. Iedynak, Lesia Galamanzhuk, Evelina Zhygulova, Yulia Mykhalskа, Anatolii Khomych, Dmytro Sovtysik
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Abstract

The purpose of the study was to determine the effectiveness of a device developed based on the latest electronics to control the coordination of movements of the lower limbs of students with disabilities. Materials and methods. 34 students with disabilities were involved in the study. At the time of the experiment, they had functional disorders of the lower limbs as a result of injuries and received a doctor’s permission to participate in the experiment. The research was conducted at the theoretical and empirical levels, using the following methods: analysis, synthesis, systematization, generalization, technical modeling, pedagogical testing, and mathematical statistics. Results. In the research process, a device was used, which was developed as part of the conducted research. The device consists of two rubber mats in which capacitive proximity sensors are placed. The test task involves recording the number of touches of rubber mats in 20 seconds. The information received from the sensors during the student’s performance of the test task, namely the alternate touching of the rubber mat with the big toe, is sent to the microcontroller via an infrared communication line. The development uses a high-performance microcontroller ATMega 328P, which can support a wide range of sensors and generate information about the time and frequency of leg movements. The signals of the student’s toes touching the rubber mats, received by capacitive sensors, are processed by a microcontroller and displayed on a PC through a serial connection and using the Arduino software, which allows reading the received information about the execution of movements. Under the conditions of the pedagogical experiment, we tried to determine the quality of the measurement results. According to the obtained numerical indicators, the numerical values of the test authenticity obtained by the traditional method of fixing the results by a specialist correspond to the value “low”. The results of the validity calculations showed that the correlation between the test measurement results and the evaluation results using the developed device was optimal with a correlation coefficient greater than 0.6. Conclusions. The importance of a high level of development of the coordination of movements of the lower limbs of students with disabilities is determined by the need to develop this quality to ensure the effectiveness of their rehabilitation in the process of inclusive PE. The analysis of the obtained material allows us to state that the practical application of the inclusive PE device developed based on the latest electronics will allow scientifically based optimization of this process to ensure its effectiveness.
全纳体育的测试控制:使用最新电子设备进行评估
本研究的目的是确定一种基于最新电子技术开发的装置在控制残疾学生下肢动作协调方面的有效性。材料和方法34 名残疾学生参与了研究。实验时,他们因受伤导致下肢功能障碍,并获得了医生的许可参加实验。研究从理论和实证两个层面进行,采用了以下方法:分析、综合、系统化、概括、技术建模、教学测试和数理统计。研究结果在研究过程中,使用了作为研究一部分而开发的一种装置。该装置由两个橡胶垫组成,橡胶垫上放置了电容式接近传感器。测试任务包括记录 20 秒内橡胶垫的触碰次数。在学生完成测试任务期间,传感器接收到的信息,即用大脚趾交替触碰橡胶垫的信息,将通过红外通信线路发送到微控制器。此次开发使用的是高性能微控制器 ATMega 328P,它可支持多种传感器,并能生成有关腿部运动时间和频率的信息。电容式传感器接收到的学生脚趾接触橡胶垫的信号由微控制器进行处理,并通过串行连接和使用 Arduino 软件在个人电脑上显示,该软件可以读取接收到的有关执行动作的信息。在教学实验的条件下,我们试图确定测量结果的质量。根据所获得的数值指标,通过传统的由专家确定结果的方法所获得的测试真实性数值对应于 "低 "值。有效性计算的结果表明,测试测量结果与使用所开发设备的评估结果之间的相关性最佳,相关系数大于 0.6。结论残疾学生下肢动作协调能力的高水平发展的重要性是由发展这一素质的需要决定的,以确保他们在全纳体育过程中康复的有效性。通过对所获材料的分析,我们可以说,基于最新电子技术开发的全纳体育设备的实际应用将使这一过程得到科学的优化,从而确保其有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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