Comparison of in-shoe foot loading patterns on natural grass and synthetic turf
Ford KR, Manson NA, Evans BJ, Myer GD, Gwin RC, Heidt RS, Hewett TE
Journal of science and medicine in sport · 61 citations
How it was studied
- Design
- Controlled clinical trial (indexed by PubMed)
- Studied in
- People
- Main outcome
- Health markers and function
Who paid for it
- Funding
- Independent funding
- University or hospital
- Hospital Research Foundation
- Government
- National Institutes of Health
- Government
- National Institute of Arthritis and Musculoskeletal and Skin Diseases
- Government
- NIAMS NIH HHS
- Grants
- National Institute of Arthritis and Musculoskeletal and Skin Diseases (R101-AR049735-01A1)
Based on 4 listed funder(s).
Publication
- Published
- 2006-05-05 · J Sci Med Sport · vol. 9 · issue 6 · pp. 433–440
- Publisher
- Elsevier BV
- Cited
- 131 citations · more than 92% of similar papers · 3.5× the field average
- Impact
- Top 10% most cited in its field
- References
- 23 works
- Access
- Paywalled
- Research areas
- Lower Extremity Biomechanics and Pathologies · Sports injuries and prevention · Sports Dynamics and Biomechanics
- Keywords
- Foot (prosody), Natural (archaeology), Environmental science, Biology, Art
- MeSH
- foot, humans, poaceae, athletic injuries, friction, pressure, shoes, male, biomechanical phenomena
7 authors
From US, AU
- Kevin Ray Ford · correspondingCincinnati Children's Hospital Medical Center; Hospital Research Foundation
- Neil A. Manson
- Blake EvansCincinnati Children's Hospital Medical Center
- Gregory D. MyerCincinnati Children's Hospital Medical Center
- Richelle C. Gwin
- Robert S. Heidt
Abstract
Synthetic playing surfaces with rubber or sand infill are now used on many athletic fields such as soccer, football and rugby. Although these surfaces may come closer to the mechanical characteristics of a true grass playing surface than the older turf designs, their potential effects on lower extremity biomechanics and related injury rates necessitate further study. The purpose of this study was to examine the effects of two surfaces (natural grass versus turf) on in-shoe foot loading patterns during cutting. Seventeen male football players were tested on a slalom course. An in-shoe pressure distribution measurement insole was used in the right shoe (14 stud, molded cleat) of each athlete. Individual cutting steps were extracted from each slalom trial and peak pressure and relative load calculated in nine distinct plantar regions of the foot. The turf condition had significantly higher peak pressures within the central forefoot (turf: 646.6+/-172.6 kPa, grass: 533.3+/-143.4 kPa, P=0.017) and lesser toes (turf: 429.3+/-200.9 kPa, grass: 348.1+/-119.0 kPa, P=0.043) compared to grass. In contrast, the relative load within the medial forefoot (turf: 27.2+/-5.3%, grass: 30.2+/-6.6%, P=0.031) and lateral midfoot (turf: 3.4+/-1.8%, grass: 4.1+/-2.3%, P=0.029) were higher during the grass condition. No differences between the grass and turf were found in maximal effort sprint times performed prior to the testing trials. This study demonstrates that playing surface significantly affects plantar loading during sport related activities. Further epidemiological investigation is warranted to determine the effects of playing surfaces on sport specific injury mechanisms.
Abstract via Europe PMC. Copyright remains with the authors or publisher.
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