Scientific adviser: Oleg Avrunin, Doctor of Technical Sciences, Professor, Laureate of the State Prize of Ukraine in the field of education.
The laboratory was created to conduct fundamental and applied research in biomedical engineering, sports medicine and rehabilitation, and implement new technologies in health care.
The task of the laboratory is to disseminate innovative health technologies, health systems, new areas of group and personal training, solving practical problems of sports medicine and health training, and choosing the most rational training process options.
The laboratory has the equipment for research of functional features of athletes by means of which it is possible to check experimentally correctness of theoretical positions.
Scientific directions:
- biomechanics and biocybernetics research;
- modeling of metabolic processes the athletes body in competitive and training conditions;
- modeling the geometry of human body masses;
- modeling of human motor activity;
- designing physical activity and exercise programmes;
- designing methods of health-improving physical training, fitness;
- development methods of physical fitness control;
- development theory of training loads planning;
- development of recommendations for different age groups on health-improving motor modes, hardening, application of means and methods of physical culture and sports for the purpose healthy life-style;
- analysis of physical development, human health, development and implementation of treatment and prevention measures to prevent injuries, morbidity, overexertion and overtraining in sports;
- study of the possible adverse effects of excessive physical activity on the body of persons engaged in sports, especially young people, research impact of physical activities and sports on mental health and physical development.
Publications
- Semenets , V., Salieieva , A., Avrunin , O., Grishchenko , V., Karpenko, . I., & Solntseva , I. (2021). Experience of the organization in Ukraine of the system of training of specialists for prosthetic industry according to international standards. New Collegium, 1(103), 19鈥28. https://doi.org/10.30837/nc.2021.1.19
- O. Y. Prisych, T. V. Zhemchuzhkina, T. V. Nosovaa, D. O. Kostin, I. K. Palii, V. P. Kovalskiy, K. Gromaszek, S. Amirgaliyeva, and A. Kozbakova, 鈥淓lectromyographic complex with goniometric tracking of the degree of muscle,鈥 Photonics Applications in Astronomy, Communications, Industry, and High Energy Physics Experiments 2021, Nov. 2021. doi:10.1117/12.2603991
- 袩褉褨褋懈褔 袨. 挟. 袨褋芯斜谢懈胁芯褋褌褨 写芯褋谢褨写卸械薪薪褟 薪芯褋芯胁芯谐芯 写懈褏邪薪薪褟 褍 褋锌芯褉褌褋屑械薪褨胁 / 袨. 挟. 袩褉褨褋懈褔, 携. 袙. 袧芯褋芯胁邪, 袨. 袚. 袗胁褉褍薪褨薪 // 袉薪褎芯褉屑邪褑褨泄薪褨 褌械褏薪芯谢芯谐褨褩: 薪邪褍泻邪, 褌械褏薪褨泻邪, 褌械褏薪芯谢芯谐褨褟, 芯褋胁褨褌邪, 蟹写芯褉芯胁鈥櫻: 褌械蟹懈 写芯锌芯胁褨写械泄 啸X袉啸 屑褨卸薪邪褉芯写薪芯褩 薪邪褍泻芯胁芯-锌褉邪泻褌懈褔薪芯褩 泻芯薪褎械褉械薪褑褨褩 MicroCAD-2020, 18-20 褌褉邪胁薪褟 2021 褉.: 褍 5 褔. 效. I袉. / 蟹邪 褉械写. 锌褉芯褎. 小芯泻芯谢邪 袆.袉. 鈥 啸邪褉泻褨胁: 袧孝校 芦啸袩袉禄. 鈥 小. 336
- 袗胁褉褍薪褨薪 袨. 袚. 袦芯卸谢懈胁芯褋褌褨 3D-泻芯薪褌械薪褌褍 锌褉懈 褎褨蟹懈褔薪褨泄 褉械邪斜褨谢褨褌邪褑褨褩 胁 写懈褋褌邪薪褑褨泄薪芯屑褍 褉械卸懈屑褨 / 袨. 袚. 袗胁褉褍薪褨薪, 袚. 袩. 袚褉芯褏芯胁邪, 袨. 挟. 袩褉褨褋懈褔 褌邪 褨薪. // 袦邪褌械褉褨邪谢懈 薪邪褍泻芯胁芯-锌褉邪泻褌. 泻芯薪褎. 蟹 屑褨卸薪邪褉芯写薪芯褞 褍褔邪褋褌褞 “袪械邪斜褨谢褨褌邪褑褨褟 褌邪 锌褉芯褌械蟹褍胁邪薪薪褟/芯褉褌械蟹褍胁邪薪薪褟 啸啸袉 褋褌芯谢褨褌褌褟. 袩褉芯斜谢械屑邪褌懈泻邪, 锌械褉褋锌械泻褌懈胁懈 褌邪 屑褨卸薪邪褉芯写薪褨 褋褌邪薪写邪褉褌懈 胁褨写薪芯胁谢械薪薪褟 褉褍褏芯胁芯褩 邪泻褌懈胁薪芯褋褌褨”. 鈥 啸邪褉泻褨胁, 校泻褉袧袛袉锌褉芯褌械蟹褍胁邪薪薪褟, 2021. 鈥 小. 143-145.
- 袗胁褉褍薪褨薪 袨.袚. 袦械褌芯写 褌械褋褌褍胁邪薪薪褟 薪芯褋芯胁芯谐芯 写懈褏邪薪薪褟 写谢褟 芯褑褨薪泻懈 锌芯褌械薪褑褨泄薪懈褏 屑芯卸谢懈胁芯褋褌械泄 褋锌芯褉褌褋屑械薪褨胁 / 袨. 挟. 袩褉褨褋懈褔, 袚. 袩. 袚褉芯褏芯胁邪, 袨. 袚. 袗胁褉褍薪褨薪 // 袦邪褌械褉褨邪谢懈 3 袦褨卸薪邪褉芯写薪芯褩 薪邪褍泻芯胁芯-褌械褏薪褨褔薪芯褩 泻芯薪褎械褉械薪褑褨褩 袗泻褌褍邪谢褜薪褨 锌褉芯斜谢械屑懈 邪胁褌芯屑邪褌懈泻懈 褌邪 锌褉懈谢邪写芯斜褍写褍胁邪薪薪褟. 鈥 啸邪褉泻褨胁 , 2020. 鈥 小. 74鈥75.
- 袚褉芯褏芯胁邪 袚. 袩. 袦芯褌懈胁懈 褖芯写芯 褋邪屑芯褋褌褨泄薪懈褏 蟹邪薪褟褌褜 褋褌褍写械薪褌褨胁 褎褨蟹懈褔薪芯褞 褉械泻褉械邪褑褨褦褞 / 袚. 袩. 袚褉芯褏芯胁邪, 袩褉褨褋懈褔 袨.挟. // 小褍褔邪褋薪褨 褌械薪写械薪褑褨褩 褋锌褉褟屑芯胁邪薪褨 薪邪 蟹斜械褉械卸械薪薪褟 蟹写芯褉芯胁鈥櫻 谢褞写懈薪懈: 蟹斜褨褉薪懈泻 薪邪褍泻芯胁懈褏 锌褉邪褑褜. 鈥 啸邪褉泻褨胁, 2020. 鈥 袙懈锌褍褋泻 1. 鈥 小. 177-179.
- 袗胁褉褍薪褨薪 袨.袚. 袛芯褋胁褨写 芯褉谐邪薪褨蟹邪褑褨褩 胁 校泻褉邪褩薪褨 褋懈褋褌械屑懈 锌褨写谐芯褌芯胁泻懈 褎邪褏褨胁褑褨胁 蟹 锌褉芯褌械蟹褍胁邪薪薪褟 褌邪 芯褉褌械蟹褍胁邪薪薪褟 蟹邪 褋褍褔邪褋薪懈屑懈 屑褨卸薪邪褉芯写薪懈屑懈 褋褌邪薪写邪褉褌邪屑懈 / 袨. 袚. 袗胁褉褍薪褨薪, 袙. 袙. 小械屑械薪械褑褜, 袗. 袛. 小邪谢褦褦胁邪 褌邪 褨薪. // 袦邪褌械褉褨邪谢懈 薪邪褍泻芯胁芯-锌褉邪泻褌. 泻芯薪褎. 蟹 屑褨卸薪邪褉芯写薪芯褞 褍褔邪褋褌褞 “袪械邪斜褨谢褨褌邪褑褨褟 褌邪 锌褉芯褌械蟹褍胁邪薪薪褟/芯褉褌械蟹褍胁邪薪薪褟 啸啸袉 褋褌芯谢褨褌褌褟. 袩褉芯斜谢械屑邪褌懈泻邪, 锌械褉褋锌械泻褌懈胁懈 褌邪 屑褨卸薪邪褉芯写薪褨 褋褌邪薪写邪褉褌懈 胁褨写薪芯胁谢械薪薪褟 褉褍褏芯胁芯褩 邪泻褌懈胁薪芯褋褌褨”. 鈥 啸邪褉泻褨胁, 校泻褉袧袛袉锌褉芯褌械蟹褍胁邪薪薪褟, 2021. 鈥 小. 54-57.
- 啸褍写邪褦胁邪 小. 袗. 袛芯褋谢褨写卸械薪薪褟 薪褞褏邪谢褜薪芯褩 褎褍薪泻褑褨褩 胁 褉械邪斜褨谢褨褌邪褑褨泄薪芯屑褍 锌械褉褨芯写褨 锌褨褋谢褟 COVID-19 / 小. 袗. 啸褍写邪褦胁邪, 携. 袙. 袧芯褋芯胁邪, 袨. 袚. 袗胁褉褍薪褨薪 // 袉薪褎芯褉屑邪褑褨泄薪褨 褌械褏薪芯谢芯谐褨褩: 薪邪褍泻邪, 褌械褏薪褨泻邪, 褌械褏薪芯谢芯谐褨褟, 芯褋胁褨褌邪, 蟹写芯褉芯胁鈥櫻: 褌械蟹懈 写芯锌芯胁褨写械泄 啸X袉啸 屑褨卸薪邪褉芯写薪芯褩 薪邪褍泻芯胁芯-锌褉邪泻褌懈褔薪芯褩 泻芯薪褎械褉械薪褑褨褩 MicroCAD-2020, 18-20 褌褉邪胁薪褟 2021 褉.: 褍 5 褔. 效. I袉. / 蟹邪 褉械写. 锌褉芯褎. 小芯泻芯谢邪 袆.袉. 鈥 啸邪褉泻褨胁: 袧孝校 芦啸袩袉禄. 鈥 小. 342
- 袩褉褨褋懈褔 袨. 挟. 袨褋芯斜谢懈胁芯褋褌褨 写懈褏邪薪薪褟 锌褨写 褔邪褋 褎褨蟹懈褔薪懈褏 薪邪胁邪薪褌邪卸械薪褜 胁 褉褨蟹薪芯屑邪薪褨褌薪懈褏 胁懈写邪褏 褋锌芯褉褌褍 / 袨. 挟. 袩褉褨褋懈褔, 袗. 袩. 袚褉芯褏芯胁邪 // 袦邪褌械褉褨邪谢懈 19-褩 袦褨卸薪邪褉芯写薪芯褩 薪邪褍泻芯胁芯-褌械褏薪褨褔薪芯褩 泻芯薪褎械褉械薪褑褨褩 芦肖褨蟹懈褔薪褨 锌褉芯褑械褋懈 褌邪 锌芯谢褟 褌械褏薪褨褔薪懈褏 褨 斜褨芯谢芯谐褨褔薪懈褏 芯斜鈥櫻斝貉傃栃猜. 鈥 袣褉械屑械薪褔褍泻. 鈥 2020. 鈥 小. 34-36.
- 袨褋芯斜谢懈胁芯褋褌褨 褌械褋褌褍胁邪薪薪褟 薪芯褋芯胁芯谐芯 写懈褏邪薪薪褟 褍 褋锌芯褉褌褋屑械薪褨胁 / 袗. 袗. 小芯泻芯谢芯胁, 携. 袙. 袧芯褋芯胁邪, 袚. 袩. 袚褉芯褏芯胁邪, 袨. 袚. 袗胁褉褍薪褨薪. // 袉薪褎芯褉屑邪褑褨泄薪褨 褌械褏薪芯谢芯谐褨褩: 薪邪褍泻邪, 褌械褏薪褨泻邪, 褌械褏薪芯谢芯谐褨褟, 芯褋胁褨褌邪, 蟹写芯褉芯胁鈥櫻: 褌械蟹懈 写芯锌芯胁褨写械泄 啸XV袉袉袉 屑褨卸薪邪褉芯写薪芯褩 薪邪褍泻芯胁芯-锌褉邪泻褌懈褔薪芯褩 泻芯薪褎械褉械薪褑褨褩 MicroCAD-2020, 28-30 卸芯胁褌薪褟 2020 褉. 效. I袉./蟹邪 褉械写. 锌褉芯褎. 小芯泻芯谢邪 袆.袉. 鈥撔バ把泻褨胁: 袧孝校 芦啸袩袉禄.鈥 小. 365.
- 小褍褔邪褋薪褨 屑械褌芯写懈 写褨邪谐薪芯褋褌懈泻懈 褉械褋锌褨褉邪褌芯褉薪芯-芯谢褜褎邪泻褌芯褉薪芯褩 褎褍薪泻褑褨褩: 屑芯薪芯谐褉邪褎褨褟 / 袨. 袚. 袗胁褉褍薪褨薪, 携. 袙. 袧芯褋芯胁邪, 袙. 袙. 小械屑械薪械褑褜, 袙. 袨. 肖褨谢邪褌芯胁, 袧. 袨. 楔褍褕谢褟锌褨薪邪. 鈥 啸邪褉泻褨胁 : 啸袧校袪袝, 2021. 鈥 150 褋. ISBN 978-966-659-300-2
- 袩邪褌械薪褌 鈩 148410 校泻褉邪褩薪邪, 袦袩袣 A 61 F 9/08 G 08 G 1/00. 小懈褋褌械屑邪 薪邪胁褨谐邪褑褨褩 写谢褟 褋谢褨锌懈褏 谢褞写械泄 / 袨. 袚. 袗胁褉褍薪褨薪, 袙. 袙. 小械屑械薪械褑褜, 褌邪 褨薪. 鈥 鈩 u 202101448 ; 蟹邪褟胁谢. 22.03.2021 ; 芯锌褍斜谢. 04.08.2021, 袘褞谢. 鈩 31 . 鈥 5 褋. : 褨谢.
The laboratory is equipped with modern training apparatus, fitness computers, measuring and diagnostic devices. It is possible to research the body’s indicators during exercise, such as heart rate, respiratory rate, oxygenation level, to determine training areas, fatigue degree and other functional data in the laboratory,
Under the guidance of the Department of Physical Education and Sports experienced coaches, in their free time, there are training sessions for everyone.

