电子技术在全纳体育教学过程中动态平衡控制中的应用效果

Q2 Social Sciences Teoria ta Metodika Fizicnogo Vihovanna Pub Date : 2023-10-30 DOI:10.17309/tmfv.2023.5.16
Oksana Blavt, Rostyslav Chaplinskyі, Mykola Prozar, Maryan Pityn, Tetiana Helzhynska, Vitalii Dmytruk, Oleh Hrebik, Volodymyr Kovalchuk
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引用次数: 0

摘要

研究的目的是根据现代残疾学生电子设备领域的发展趋势开发的动平衡控制装置的真实性。材料和方法。按照自愿、匿名的原则,选择32名经医生同意参加测试、年龄在18-24岁、学龄1 - 3岁且患有前庭功能障碍的残疾学生作为研究样本。采用了收集理论资料的一般科学方法、技术建模方法、教学测试方法和数理统计方法。结果。动态平衡控制装置是在最先进的电子设备和编程的基础上开发的。该器件由集成电子单元、可编程微控制器系统单元和PC机组成。在学生执行测试任务期间,放置在集成电子单元单元中的电容式传感器接收到的信息在可编程微控制器系统单元中进行处理,并通过非接触式红外通信线路传输到PC机,PC机以图形方式呈现。为了建立使用开发的设备测试的真实性,确定了信度和效度系数,其数值达到了“高”水平,与教师直接记录的测试结果相比,数值对应于“低”和“中”的极限。结论。本文提出的动平衡控制装置是采用最先进的电子设备和编程设计的。考虑到消除前庭功能障碍和相关动态平衡障碍对残疾学生的重要性,在包容性体育实践中使用所提出的控制装置的开发旨在确保这一过程的有效性。将基于当前电子设备领域发展趋势开发的控制装置整合到残障学生的全纳体育教学中,是开发基于客观评价的动平衡测试过程新方法的基础。
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The Efficiency of the Application of Electronic Techniques in the Control of Dynamic Balance in the Process of Inclusive Physical Education
The purpose of the study was to determine the authenticity of the dynamic balance control device developed on the basis of modern trends in the field of electronic equipment for students with disabilities. Materials and methods. 32 students with disabilities, aged 18–24 years, I–III years of study, who received a doctor’s permission to participate in testing and had vestibular disorders, were selected for the studied sample, in accordance with the provisions of voluntariness and anonymity. General scientific methods of gathering theoretical information, the method of technical modeling, pedagogical testing and methods of mathematical statistics were used. Results. A dynamic balance control device was developed on the basis of the most up-to-date electronic equipment and programming. The device consists of an integrated electronic unit, a programmable microcontroller system unit, and a PC. The information received by the capacitive sensors placed in the unit of the integrated electronic unit during the student’s performance of the test task is processed in the unit of the programmable microcontroller system and transmitted via non-contact infrared communication lines to the PC where it is graphically presented. To establish the authenticity of testing using the developed device, reliability and validity coefficients were determined, which in numerical values reached a “high” level, in contrast to the test the results of which were recorded directly by the teacher and numerically corresponded to the limits of “low” and “medium”. Conclusions. The dynamic balance control device presented in the work is designed using the most up-to-date electronic equipment and programming. Considering the importance of eliminating vestibular disorders and related dynamic balance disorders in students with disabilities, the use of the presented development of the control device in the practice of inclusive PE is aimed at ensuring the effectiveness of this process. The integration of a control device developed based on current trends in the field of electronic equipment into the inclusive physical education of students with disabilities is the basis for the development of new approaches in the process of dynamic balance testing based on objective assessment.
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来源期刊
Teoria ta Metodika Fizicnogo Vihovanna
Teoria ta Metodika Fizicnogo Vihovanna Health Professions-Physical Therapy, Sports Therapy and Rehabilitation
CiteScore
2.20
自引率
0.00%
发文量
63
审稿时长
15 weeks
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