Comparative analysis of foot support-spring indicators of primary school age children with weak eyesight in physical education process
DOI:
https://doi.org/10.15561/18189172.2016.0209Keywords:
primary school pupil, eyesight, weakened, footAbstract
Purpose: to fulfill comparative analysis of foot support-spring indicators of schoolchildren with weak eyesight. Material: in the research 7-10 years’ age children (n=76) with weak eyesight participated. The children learn in specialized boarding school. Results: we found statistically confident differences between some foot support-spring indicators of primary school children with weak eyesight and their practically healthy children. It was registered that primary school children had weaker muscles and ligaments of lower limbs. The reason can be insufficient motor functioning and muscles’ stiffening in moving in space as well as the absence of exercises for prophylaxis of foot functional disorders. Conclusions: we determined that there is demand in working out and implementation of practical recommendations in physical education process of schoolchildren with weak eyesight. Physical education process shall be oriented on educational aims, on application of health related correcting and compensatory-prophylaxis physical exercises. Such approach will positively influence on correction of foot support-spring disorders.Downloads
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References
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<p>19. Iurchenko OA. <i>Osoblivosti fizichnogo rozvitku ditej molodshogo shkil'nogo viku z vadami zoru </i>[Peculiar features of physical condition of primary school age children with eyesight problems]. Sportivnij visnik Pridniprov’ia, 2011;2:66–69.</p>
<p>20. Iurchenko OA. Korekciia porushen' statodinamichnoi postavi ditej molodshogo shkil'nogo viku z poslablenim zorom u procesi fizichnogo vikhovannia [Correction of static-dynamic carriage disorders of primary school age children with weak eyesight in process of physical education], <em>Pedagogics, psychology, medical-biological problems of physical training and sports</em>, 2012;10:80–83.</p>
<p>21. Makarova OV. Quantitative estimation of the state of vault feet gymnasts on the different stages of the long-term training. <em>Physical Education of Students</em>, 2013;5:69-72. doi:10.6084/m9.figshare.771119</p>
<p>22. Valcevich AV, Bychuk AI. Influence of the programs of prophylaxis of violations of vaults of foot on the sagital type of foot of the children of junior school age. <i>Physical Education of Students</i>, 2012;4:28-32.</p>
<p>23. Valkevich AV. Influence of the program of prophylaxis of violations of vaults of foot on physical preparedness of children of junior school age. <i>Physical Education of Students</i>, 2012;3:19-23.</p>
<p>24. Vykhliaiev YM, Ardasheva OE. Physical rehabilitation of functional violations and deformations of children foot. <em>Pedagogics, psychology, medical-biological problems of physical training and sports</em>, 2014;5:3-8. doi:10.6084/m9.figshare.971025</p>
<p>25. Stroganov SV. Features force between the foot and performance of special-based tests young basketball players. <em>Pedagogics, psychology, medical-biological problems of physical training and sports</em><i>,</i> 2013;12:82-86. doi:10.6084/m9.figshare.880632</p>
<p>26. Valkevich AV. Influence of the program of prophylaxis of violations of vaults of foot on physical preparedness of children of midchildhood. <i>Pedagogics, Psychology, Medical-Biological Problems of Physical Training and Sports</i>, 2012;5:22-26.</p>
<p>27. Guo J, Wang L, Mo Z, Chen W, Fan Y. Biomechanical behavior of valgus foot in children with cerebral palsy: A comparative study<i>. Journal of Biomechanics</i>. 2015;48(12):3170–7.</p>
<p>28. Maas JC, Huijing PA, Dallmeijer AJ, Harlaar J, Jaspers RT, Becher JG. Decrease in ankle–foot dorsiflexion range of motion is related to increased knee flexion during gait in children with spastic cerebral palsy. <i>Journal of Electromyography and Kinesiology</i>. 2015;25(2):339–46.</p>
<p>29. Pau M, Corona F, Leban B, Pau M. Effects of backpack carriage on foot–ground relationship in children during upright stance. <i>Gait & Posture</i>. 2011;33(2):195–9.</p>
<p>30. Pothrat C, Authier G, Viehweger E, Berton E, Rao G. One- and multi-segment foot models lead to opposite results on ankle joint kinematics during gait: Implications for clinical assessment. <i>Clinical Biomechanics.</i> 2015;30(5):493–9.</p>
<p>31. Boulay C, Jacquemier M, Castanier E, Giorgi H, Authier G, Pomero V, et al. Planovalgus foot deformity in cerebral palsy corrected by botulinum toxin injection in the peroneus longus: Clinical and radiological evaluations in young children. <i>Annals of Physical and Rehabilitation Medicine</i>. 2015;58(6):316–21.</p>
<p>2. Bondar' EM. <i>Korrekciia funkcional'nykh narushenij oporno-dvigatel'nogo apparata detej 5-6 let s uchetom prostranstvennoj organizacii ikh tela. Cand. Diss.</i> [Correction of muscular-skeletal apparatus functional disorders in 5-6 years’ age children, considering space organization of their bodies. Cand. Diss.], Kiev; 2009. (in Russian) </p>
<p>3. Vinnik Dzhozef P. <i>Adaptivnoe fizicheskoe vospitanie i sport</i> [Adaptive physical education and sports], Kiev: Olympic Literature; 2010. (in Russian) </p>
<p>4. D'iachenko AA. Morfo-biomekhanicheskie kharakteristiki stopy slabovidiashchikh detej mladshego shkol'nogo vozrasta [Morphological bio-mechanical characteristics of feet of primary school age children’s feet]. <i>Visnik Chernigivs'kogo derzhavnogo pedagogichnogo universitetu</i>, 2008;54:90–93. (in Russian) </p>
<p>5. D'iachenko AA. Osobennosti oporno-ressornykh svojstv stopy slabovidiashchikh detej mladshego shkol'nogo vozrasta [Peculiarities of foot support-spring properties of primary school age children with weak eyesight]. <i>I Mezhdunarodnaia nauchno-prakticheskaia konferenciia “Biomekhanika stopy cheloveka“, Grodno</i> [I International scientific-practical conference “Bio-mechanic of human foot”, Grodno], Grodno; 2008. P. 112-114. (in Russian) </p>
<p>6. Evseev SP. <i>Teoriia i organizaciia adaptivnoj fizicheskoj kul'tury</i> [Theory and organization of adaptive physical culture], Moscow; 2007. (in Russian) </p>
<p>7. Kashuba VA. <i>Biomekhanika osanki</i> [Bio-mechanic of carriage], Kiev: Olympic Literature; 2003. (in Russian)</p>
<p>8. Kashuba VA, Adel' Ben Zheddu Ben Larbi. <i>Profilaktika i korrekciia narushenij prostranstvennoj organizacii tela cheloveka v processe fizicheskogo vospitaniia</i> [Prophylaxis and correction of disorders in space organization of human body in the process of physical education], Kiev: Knowledge; 2005. (in Russian)</p>
<p>9. Nosova NL. <i>Kontrol' prostorovoi organizacii tila shkoliariv u procesi fizichnogo vikhovannia. Cand. Diss.</i> [Control over space organization of schoolchildren’s bodies in process of physical education. Cand. Diss.], Kiev; 2008. (in Russian)</p>
<p>10. Solodnikov AV. <i>Metodika ozdorovitel'noj gimnastiki dlia profilaktiki i korrekcii narushenij zreniia u shkol'nikov sel'skikh obshcheobrazovatel'nykh shkol. Cand. Diss</i>. [Methodic of health related gymnastic for prophylaxis and correction of eyesight disorders in schoolchildren of countryside comprehensive schools. Cand. Diss.], Smolensk, 2014. (in Russian)</p>
<p>11. Sergiienko KN. <i>Kontrol' i profilaktika narushenij oporno-ressornykh svojstv stopy shkol'nikov v processe fizicheskogo vospitaniia. Cand. Diss.</i> [Control and prophylaxis of foot support-spring properties’ disorders of schoolchildren in the process of physical education. Cand. Diss.], Kiev; 2003. (in Russian)</p>
<p>12. Sergiienko KM, Dzhukha Khabib, Pisarenko GA. <i>Osoblivosti oporno-resornikh vlastivostej stopi ditej z poslablenim zorom </i>[Peculiarities of foot support-spring properties of children with weak eyesight]. Fizichna kul'tura, sport ta zdorov’ia nacii, 2015;1:397-401. (in Ukrainian)</p>
<p>13. Furman Iu. Analiz pidkhodiv ta program shchodo korekcii vidstaiuchikh nedolikiv slabkozorikh molodshikh shkoliariv u procesi fizichnogo vikhovannia [Analysis of approaches and correcting programs of primary school pupils’ with weak eyesight in process of physical education]. <i>Molodizhnij naukovij visnik</i>, 2012; 1:41-43. (in Ukrainian)</p>
<p>14. Chudnaia RV. <i>Teoriia adaptivnogo fizichnogo vikhovannia</i> [Theory of adaptive physical education], Kiev, Scientific opinion; 2003. (in Russian)</p>
<p>15. Chudna RV. <i>Adaptivne fizichne vikhovannia ditej z vadami rozvitku</i> [Adaptive physical education of children with physical condition problems], Donetsk: North-Press; 2011. (in Russian)</p>
<p>16. Shapkova LV. <i>Adaptivna fizichna kul'tura: metodologiia ta rozvitok v sferi vishchoi profesijnoi osviti. Doct. Diss. </i>[Adaptive physical culture: methodology and development in sphere of higher vocational education. Doct. Diss.], Sankt Petersburg; 2003. (in Ukrainian)</p>
<p>17. Shapkova LV. <i>Chastnye metodiki adaptivnoj fizicheskoj kul'tury</i> [Special methodic of adaptive physical culture], Moscow: Soviet sport; 2007. (in Russian)</p>
<p>18. Iurchenko OA. <i>Korekciia porushen' prostorovoi organizacii tila ditej molodshogo shkil'nogo viku z poslablenim zorom u procesi fizichnogo vikhovannia. Cand. Diss.</i> [Correction of body space organization disorders of primary school age children with weak eyesight in process of physical education. Cand. Diss.], Kiev; 2013. (in Russian)</p>
<p>19. Iurchenko OA. <i>Osoblivosti fizichnogo rozvitku ditej molodshogo shkil'nogo viku z vadami zoru </i>[Peculiar features of physical condition of primary school age children with eyesight problems]. Sportivnij visnik Pridniprov’ia, 2011;2:66–69.</p>
<p>20. Iurchenko OA. Korekciia porushen' statodinamichnoi postavi ditej molodshogo shkil'nogo viku z poslablenim zorom u procesi fizichnogo vikhovannia [Correction of static-dynamic carriage disorders of primary school age children with weak eyesight in process of physical education], <em>Pedagogics, psychology, medical-biological problems of physical training and sports</em>, 2012;10:80–83.</p>
<p>21. Makarova OV. Quantitative estimation of the state of vault feet gymnasts on the different stages of the long-term training. <em>Physical Education of Students</em>, 2013;5:69-72. doi:10.6084/m9.figshare.771119</p>
<p>22. Valcevich AV, Bychuk AI. Influence of the programs of prophylaxis of violations of vaults of foot on the sagital type of foot of the children of junior school age. <i>Physical Education of Students</i>, 2012;4:28-32.</p>
<p>23. Valkevich AV. Influence of the program of prophylaxis of violations of vaults of foot on physical preparedness of children of junior school age. <i>Physical Education of Students</i>, 2012;3:19-23.</p>
<p>24. Vykhliaiev YM, Ardasheva OE. Physical rehabilitation of functional violations and deformations of children foot. <em>Pedagogics, psychology, medical-biological problems of physical training and sports</em>, 2014;5:3-8. doi:10.6084/m9.figshare.971025</p>
<p>25. Stroganov SV. Features force between the foot and performance of special-based tests young basketball players. <em>Pedagogics, psychology, medical-biological problems of physical training and sports</em><i>,</i> 2013;12:82-86. doi:10.6084/m9.figshare.880632</p>
<p>26. Valkevich AV. Influence of the program of prophylaxis of violations of vaults of foot on physical preparedness of children of midchildhood. <i>Pedagogics, Psychology, Medical-Biological Problems of Physical Training and Sports</i>, 2012;5:22-26.</p>
<p>27. Guo J, Wang L, Mo Z, Chen W, Fan Y. Biomechanical behavior of valgus foot in children with cerebral palsy: A comparative study<i>. Journal of Biomechanics</i>. 2015;48(12):3170–7.</p>
<p>28. Maas JC, Huijing PA, Dallmeijer AJ, Harlaar J, Jaspers RT, Becher JG. Decrease in ankle–foot dorsiflexion range of motion is related to increased knee flexion during gait in children with spastic cerebral palsy. <i>Journal of Electromyography and Kinesiology</i>. 2015;25(2):339–46.</p>
<p>29. Pau M, Corona F, Leban B, Pau M. Effects of backpack carriage on foot–ground relationship in children during upright stance. <i>Gait & Posture</i>. 2011;33(2):195–9.</p>
<p>30. Pothrat C, Authier G, Viehweger E, Berton E, Rao G. One- and multi-segment foot models lead to opposite results on ankle joint kinematics during gait: Implications for clinical assessment. <i>Clinical Biomechanics.</i> 2015;30(5):493–9.</p>
<p>31. Boulay C, Jacquemier M, Castanier E, Giorgi H, Authier G, Pomero V, et al. Planovalgus foot deformity in cerebral palsy corrected by botulinum toxin injection in the peroneus longus: Clinical and radiological evaluations in young children. <i>Annals of Physical and Rehabilitation Medicine</i>. 2015;58(6):316–21.</p>
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2016-04-28
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Juha H, Yurchenko A, Sergіenko K. Comparative analysis of foot support-spring indicators of primary school age children with weak eyesight in physical education process. Pedagogics, psychology, medical-biological problems of physical training and sports. 2016;20(2):59-65. https://doi.org/10.15561/18189172.2016.0209
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