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논문 기본 정보

자료유형
학술대회자료
저자정보
Seunghoon Lee (POSTECH) Seikwon Park (Korea Air Force Academy) Daehan Jung (Korea Air Force Academy) Eunjin Jeon (Kyungpook National University) Hee-Eun Kim (Kyungpook National University) Sungho Kim (POSTECH) Wonsup Lee (POSTECH) Heecheon You (POSTECH)
저널정보
대한인간공학회 대한인간공학회 학술대회논문집 대한인간공학회 2014 추계학술대회
발행연도
2014.11
수록면
318 - 324 (7page)

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초록· 키워드

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Objective: The objective of this study is to summarize and collate the techniques for measuring and optimizing the biomechanical performance of hip protectors for constructing experimental design in systematic reviews. Background: Hip fracture in older people usually results from a fall on the hip. Hip protectors have been advocated as a means to reduce the risk of hip fracture. However, there is a lack of standards test method for such laboratory tests, and there are conflicting reports on the force attenuation provided by specific devices from researchers using fundamentally different test systems Method: The literature was searched on Science direct databases with keywords (e.g., hip protector, fracture, testing) in the searching areas of titles, keywords, abstracts and full texts. We selected 24 relevant literatures through 5-step (S1: keyword search, S2: title screening, S3: abstract screening, S4: full paper screening, S5: relevance evaluation). Results: The performance of hip protectors can be represented as peak force at the femoral neck and percent reduction in peak force provided by a given hip protector, when compared with unpadded conditions. To provide reasonable results, the test system should accurately simulate pelvic anatomy and the impact velocity (3.4 m/s), pelvic stiffness (39-55 kN/m), and impact mass (22-33 kg) during impact. Conclusion & Application: This study can be used in measuring and optimizing the biomechanical performance of hip protectors. Also, it can contribute to building a standard test method for hip protector.

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ABSTRACT
1. Introduction
2. Method
3. Results
4. Discussion
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UCI(KEPA) : I410-ECN-0101-2016-530-002489994