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논문 기본 정보

자료유형
학술저널
저자정보
Sunghe Ha (Yonsei University) Sihyun Ryu (Korea National Sport University) Ho Jong Gil (FILA)
저널정보
대한인간공학회 대한인간공학회지 대한인간공학회지 제39권 제2호
발행연도
2020.4
수록면
99 - 108 (10page)
DOI
10.5143/JESK.2020.39.2.99

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초록· 키워드

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Objective: The purpose of this study is to examine the relation between the mechanical properties of midsole and stabilization strategies for lower extremity during running.

Background: Since stabilization strategies for a human body are to be adjusted according to the mechanical properties of the shoes, such properties of shoes that a runner wears need to be taken into consideration.

Method: Mechanical characteristics regarding the midsole cushioning properties (thickness [mm], dwell time [ms], peak acceleration [g], and energy return [%]) of each shoe were investigated by means of an impact tester. Twelve-male participated in the biomechanical experiment. They wore 12 different shoes and ran on the treadmill. To examine the relation between the mechanical properties of midsole and biomechanical variables during running, Pearson"s correlation coefficient was referenced.

Results: It turned out that the shoe thickness, dwell time, and peak acceleration were in correlation with one another. During running, the initial maximum vertical ground reaction force (GRF), the Initial peak time of vertical GRF, the loading rate, the cross timing of the braking and propulsion were in correlation with mechanical properties of midsole. The inversion-eversion angle of the ankle joint at the moment of toe off was in correlation with the thickness. The internal rotation-external rotation angle of the knee joint at heel contact was in correlation with the dwell time.

Conclusion: While the thickness and dwell time of midsole play positive roles in reducing shock on a human body, there is a significant possibility that they affect the stabilization of the joint of the lower extremity negatively.

Application: Midsole thickness and dwell time may reduce the impact on the lower extremity.

목차

1. Introduction
2. Methods
3. Results
4. Discussion
5. Conclusion
References

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