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Torg, Joseph S.
; Quedenfeld, Theodore C.; Landau, Steven
The shoe-surface interface and its relationship to football knee injuries
Am J Sports Med
. 1974;2(5):261-269
Links
DOI:
10.1177/036354657400200502
Cited Works (4)
Year
Entry
1973
Cameron BM, Davis O. The swivel football shoe: a controlled study.
J Sports Med Phys
. January–February 1973;1(2):16-27.
1972
Bramwell ST, Requa RK, Garrick JG. High school football injuries: a pilot comparison of playing surfaces.
Med Sci Sports
. 1972;4(3):166-169.
1971
Torg JS, Quedenfeld T. Effect of shoe type and cleat length on incidence and severity of knee injuries among high school football players.
Res Quart
. 1971;42(2):203-211.
1973
Torg JS, Quedenfeld T. Knee and ankle injuries traced to shoes and cleats.
Phys Sportsmed
. September 1973:39-43.
Cited By (41)
Year
Entry
2009
Pérez-Soriano P, Llana-Belloch S, Cortell-Tormo JM, Pérez-Turpin JA. Biomechanical factors to be taken into account to prevent injuries and improve sporting performance on artificial turf.
J Hum Sport Exer
. 2009;4(2):78-92.
2011
Kent R, Forman J, Lessley D, Crandall J. Characterization of athletic shoe‐surface mechanics in situ at loads and rates relevant to game situations. In:
Proceedings of the 2011 International IRCOBI Conference on the Biomechanics of Injury
. September 14-16, 2011; Krakow, Poland.40-50.
2012
Meyer EG, Wei F, Button K, Powell JW, Haut RC. Determination of ligament strain during high ankle sprains due to excessive external foot rotation in sports. In:
Proceedings of the 2012 International IRCOBI Conference on the Biomechanics of Injury
. September 12-14, 2012; Dublin, Ireland.277-287.
1986
Andréasson G, Lindenberger U, Renström P, Peterson L. Torque developed at simulated sliding between sport shoes and an artificial turf.
Am J Sports Med
. 1986;14:225-230.
1990
Levy IM, Skovron ML, Agel J. Living with artificial grass: a knowledge update, I: basic science.
Am J Sports Med
. July 1990;18(4):406-412.
1996
Torg JS, Stilwell G, Rogers K. The effect of ambient temperature on the shoe-surface interface release coefficient.
Am J Sports Med
. 1996;24(1):79-82.
1996
Lambson RB, Barnhill BS, Higgins RW. Football cleat design and its effect on anterior cruciate ligament injuries: a three-year prospective study.
Am J Sports Med
. 1996;24(2):155-159.
1996
Heidt RS Jr, Dormer SG, Cawley PW, Scranton PE Jr, Losse G, Howard M. Differences in friction and torsional resistance in athletic shoe-turf surface interfaces.
Am J Sports Med
. 1996;24(6):834-842.
2001
Orchard J, Seward H, McGivern J, Hood S. Intrinsic and extrinsic risk factors for anterior cruciate ligament injury in Australian footballers.
Am J Sports Med
. March 2001;29(2):196-200.
2006
Livesay GA, Reda DR, Nauman EA. Peak torque and rotational stiffness developed at the shoe-surface interface: the effect of shoe type and playing surface.
Am J Sports Med
. March 2006;34(3):415-422.
2009
Villwock MR, Meyer EG, Powell JW, Fousty AJ, Haut RC. Football playing surface and shoe design affect rotational traction.
Am J Sports Med
. 2009;37(3):518-525.
2010
Dowling AV, Corazza S, Chaudhari AMW, Andriacchi TP. Shoe-surface friction influences movement strategies during a sidestep cutting task: implications for anterior cruciate ligament injury risk.
Am J Sports Med
. March 2010;38(3):478-485.
2010
Wannop JW, Worobets JT, Stefanyshyn DJ. Footwear traction and lower extremity joint loading.
Am J Sports Med
. 2010;38(6):1221-1228.
2012
Reider B. Gridiron greenery.
Am J Sports Med
. May 2012;40(5):987-989.
2012
Smeets K, Jacobs P, Hertogs R, Luyckx J-P, Innocenti B, Corten K, Ekstrand J, Bellemans J. Torsional injuries of the lower limb: an analysis of the frictional torque between different types of football turf and the shoe outsole.
Br J Sports Med
. December 2012;46(15):1078-1083.
2009
Wannop JW, Luo G, Stefanyshyn D. Wear influences footwear traction properties in Canadian high school football.
Footwear Sci
. 2009;1(3):121-127.
2013
Drakos MC, Taylor SA, Fabricant PD, Haleem AM. Synthetic playing surfaces and athlete health.
J Am Acad Orthop Surg
. May 2013;21(5):293-302.
2010
Drakos MC, Hillstrom H, Voos JE, Miller AN, Kraszewski AP, Wickiewicz TL, Warren RF, Allen AA, O'Brien SJ. The effect of the shoe-surface interface in the development of anterior cruciate ligament strain.
J Biomech Eng
. January 2010;132(1):011003.
2012
Wei F, Meyer EG, Braman JE, Powell JW, Haut RC. Rotational stiffness of football shoes influences talus motion during external rotation of the foot.
J Biomech Eng
. April 2012;134(4):041002.
1987
Nigg BM, Yeadon MR. Biomechanical aspects of playing surfaces.
J Sports Sci
. 1987;5(2):117-145.
2013
Dragoo JL, Braun HJ, Harris AHS. The effect of playing surface on the incidence of ACL injuries in National Collegiate Athletic Association American football.
Knee
. June 2013;20(3):191-195.
2003
Orchard J, Powell JW. Risk of knee and ankle sprains under various weather conditions in American football.
Med Sci Sports Exer
. 2003;35(7):1118-1123.
2010
Pedroza A, Fernandez S, Heidt R Jr, Kaeding C. Evaluation of the shoe-surface interaction using an agility maneuver.
Med Sci Sports Exer
. 2010;42(9):1754-1759.
2009
Villwock MR, Meyer EG, Powell JW, Fouty AJ, Haut RC. The effects of various infills, fibre structures, and shoe designs on generating rotational traction on an artificial surface.
Proc Inst Mech Eng Part P-J Sports Eng Tech
. 2009;223(1):21-29.
2011
Fleming P. Artificial turf systems for sport surfaces: current knowledge and research needs.
Proc Inst Mech Eng Part P-J Sports Eng Tech
. June 2011;225(2):43-63.
2010
Müller C, Sterzing T, Lange J, Milani TL. Comprehensive evaluation of player-surface interaction on artificial soccer turf.
Sports Biomech
. September 2010;9(3):193-205.
2012
Kent R, Crandall J, Forman J, Lessley D, Lau A, Garson C. Development and assessment of a device and method for studying the mechanical interactions between shoes and playing surfaces
in situ
at loads and rates generated by elite athletes.
Sports Biomech
. September 2012;11(3):414-429.
2015
Kent R, Forman JL, Lessley D, Crandall J. The mechanics of American football cleats on natural grass and infill-type artificial playing surfaces with loads relevant to elite athletes.
Sports Biomech
. 2015;14(2):246-257.
2002
Orchard J. Is there a relationship between ground and climatic conditions and injuries in football?
Sports Med
. 2002;32(7):419-432.
2009
Stiles VH, James IT, Dixon SJ, Guisasola IN. Natural turf surfaces: the case for continued research.
Sports Med
. 2009;39(1):65-84.
2011
Williams S, Hume PA, Kara S. A review of football injuries on third and fourth generation artificial turfs compared with natural turf.
Sports Med
. November 2011;41(11):903-923.
1996
Mallette TE.
Frictional and Tractional Characteristics of Various Shoe-Surface Interface Combinations on Wet and Dry Natural and Artificial Turf
[Master's thesis]. East Lansing, MI: Michigan State University; 1996.
1996
Warren AJ.
The Friction and Traction Characteristics of Various Shoe-Surface Combinations With Different Vertical Loads
[Master's thesis]. East Lansing, MI: Michigan State University; 1996.
2009
Villwock MR.
Rotational Traction At the American Football Shoe-Surface Interface and Its Application to Ankle Injury
[Master's thesis]. East Lansing, MI: Michigan State University; September 2009.
2012
Wei F.
Biomechanical Investigations and Computational Modeling of the Human Ankle
[PhD thesis]. East Lansing, MI: Michigan State University; 2012.
2018
Klein MJ.
Development and Validation of a Surrogate Ankle for Biomechanical Testing of Footwear
[Master's thesis]. East Lansing, MI: Michigan State University; 2018.
2011
Dowling AV.
Understanding and Preventing Anterior Cruciate Ligament Injuries Using Novel Motion Analysis Systems
[PhD thesis]. Stanford University; May 2011.
2012
Luo G.
Limiting Factors for Curved Sprinting Performance
[PhD thesis]. Calgary, AB: University of Calgary; September 2012.
2012
Wannop JW.
Footwear Traction and Lower Extremity Non-Contact Injury
[PhD thesis]. Calgary, AB: University of Calgary; August 2012.
2014
Schrier NM.
Using Kinetics to Determine Slip Probability in a Movement Associated With a High Risk of Slip Occurrence
[Master's thesis]. Calgary, AB: University of Calgary; September 2014.
2012
Brock EA.
Biomechanical Differences of Two Common Football Movement Tasks in Studded and Non-Studded Shoe Conditions on Infilled Synthetic Turf
[Master's thesis]. Knoxville, TN: The University of Tennessee; August 2012.