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Showing 2 results for System
Khatereh Farokhmanesh, Mohammad Sadegh Ghasemi, Hasan Saeedi, Masoud Roudbari, Reza Emadifar, Volume 6, Issue 2 (11-2012)
Abstract
Background and Aim: According to clinical observation, foot hyperpronation is very prevalent and may cause malalignment of the lower extremity in which can lead to structural and functional deficits in standing and walking. The aim of this study was to investigate of foot hyperpronation effect on spine alignment in standing position.
Material and Method: Thirty-five healthy male ranging 18 - 30 years old were participated in this study. Evaluation was performed with two examiner in four standing positions (on the floor, on the wedges angled at 10, 15 and 20 degrees) using motion analysis system (zebris) and each one of measurement methods repeated three times. SPSS version 17.0 and paired t- test and repeated measures were used for statistical analysis.
Results: Significant difference was seen between all modes in sacral angle, pelvic inclination, lumbar lordosis and thoracic kyphosis variables (except between the first and second mode. Finally, with increasing wedge angle, a positive correlation obtained for the examiners and all variables.
Conclusions: The results of this study showed with increasing bilateral foot pronation, sacral angle, pelvic inclination, lumbar lordosis and thoracic kyphosis were increased. In fact, each one of them considered a compensatory phenomenon.
Shervin Amiri, Azadeh Shadmehr, Zeinat Ashnagar, Shohreh Jalaei, Volume 6, Issue 2 (11-2012)
Abstract
Background and Aim: Measurement of reaction time and anticipation skill are used widely in therapeutic exercises or sport programs. Improvement of anticipation skill and reaction time in any exercise or activity that need fast and correct reaction time for deciding and doing a suitable movement, can improve the motor control and its strategies as well as central processing. There is a need for an easy-to-use program that can run reaction time tasks and anticipation skills with no special experiments. There is no system for objective measurement of above variables in our country, so designing and construction of a system for reaction time test and anticipation skill estimation was carried out.
Materials and Methods: A system that consist of software, lap top, LCD and key board was designed. The software of the system had two subsystems for measuring reaction time and estimating anticipation skill.
Results: By use of the above equipments, 6 tests of video choice reaction time, audio choice reaction time, video complex choice reaction time, audio complex choice reaction time, high speed anticipation skill and low speed anticipation skill were performed. Structural and content validity of the system was estimated very high.
Conclusion: Current system can use in many therapeutic and sport centers simply and provide basic data about motor control strategies. By use of it, there is a better judgment about effectiveness of various treatments and sport-men selection, too.
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