AnandacoomarasamyABarnsleyL. Long term outcomes of inversion ankle injuries. Br J Sports Med. 2005;39(3):e14.
2.
ArnoldBLWrightCJRossSE. Functional ankle instability and health-related quality of life. J Athl Train. 2011;46(6):634-641.
3.
BahrRKrosshaugT. Understanding injury mechanisms: a key component of preventing injuries in sport. Br J Sports Med. 2005;39(6):324-329.
4.
BellALPedersenDRBrandRA. A comparison of the accuracy of several hip center location prediction methods. J Biomech. 1990;23(6):617-621.
5.
ColeGKNiggBMRonskyJLYeadonMR. Application of the joint coordinate system to three-dimensional joint attitude and movement representation: a standardization proposal. J Biomech Eng. 1993;115(4A):344-349.
6.
DelahuntEMonaghanKCaulfieldB. Altered neuromuscular control and ankle joint kinematics during walking in subjects with functional instability of the ankle joint. Am J Sports Med. 2006;34(12):1970-1976.
7.
DelahuntEMonaghanKCaulfieldB. Changes in lower limb kinematics, kinetics, and muscle activity in subjects with functional instability of the ankle joint during a single leg drop jump. J Orthop Res. 2006;24(10):1991-2000.
8.
DelahuntEMonaghanKCaulfieldB. Ankle function during hopping in subjects with functional instability of the ankle joint. Scand J Med Sci Sports. 2007;17(6):641-648.
9.
DevitaPSkellyWA. Effect of landing stiffness on joint kinetics and energetics in the lower extremity. Med Sci Sports Exerc. 1992;24(1):108-115.
10.
FongDTHaSCMokKM. Kinematics analysis of ankle inversion ligamentous sprain injuries in sports: five cases from televised tennis competitions. Am J Sports Med. 2012;40(11):2627-2632.
11.
FongDTHongYShimaY. Biomechanics of supination ankle sprain: a case report of an accidental injury event in the laboratory. Am J Sports Med. 2009;37(4):822-827.
12.
GageMJO’BrienMJHopkinsJ. The comparison of lower extremity energy absorption between healthy and chronic ankle instability subjects during a single leg drop landing. J Athl Training. 2009;44(suppl 18).
13.
GagnonDGagnonM. The influence of dynamic factors on triaxial net muscular moments at the l5/s1 joint during asymmetrical lifting and lowering. J Biomech. 1992;25(8):891-901.
14.
GehringDWisslerSMornieuxGGollhoferA. How to sprain your ankle—a biomechanical case report of an inversion trauma. J Biomech. 2013;46(1):175-178.
15.
GerberJPWilliamsGNScovilleCR. Persistent disability associated with ankle sprains: a prospective examination of an athletic population. Foot Ankle Int. 1998;19(10):653-660.
16.
GribblePRobinsonR. Differences in spatiotemporal landing variables during a dynamic stability task in subjects with CAI. Scand J Med Sci Sports. 2010;20(1):e63-71.
17.
GribblePADelahuntEBleakleyC. Selection criteria for patients with chronic ankle instability in controlled research: a position statement of the International Ankle Consortium. J Orthop Sports Phys Ther. 2013;43(8):585-591.
18.
GribblePARobinsonRH. Alterations in knee kinematics and dynamic stability associated with chronic ankle instability. J Athl Train. 2009;44(4):350-355.
19.
GutierrezGMKnightCASwanikCB. Examining neuromuscular control during landings on a supinating platform in persons with and without ankle instability. Am J Sports Med. 2012;40(1):193-201.
20.
HahnMEChouLS. Age-related reduction in sagittal plane center of mass motion during obstacle crossing. J Biomech. 2004;37(6):837-844.
21.
HassCJBishopMDDoidgeDWikstromEA. Chronic ankle instability alters central organization of movement. Am J Sports Med. 2010;38(4):829-834.
22.
HenriksenMAaboeJSimonsenEB. Experimentally reduced hip abductor function during walking: implications for knee joint loads. J Biomech. 2009;42(9):1236-1240.
23.
HertelJ. Functional anatomy, pathomechanics, and pathophysiology of lateral ankle instability. J Athl Train. 2002;37(4):364-375.
24.
HillerCENightingaleEJRaymondJ. Prevalence and impact of chronic musculoskeletal ankle disorders in the community. Arch Phys Med Rehabil. 2012;93(10):1801-1807.
25.
KonradsenLBechLEhrenbjergMNickelsenT. Seven years follow-up after ankle inversion trauma. Scand J Med Sci Sports. 2002;12(3):129-135.
26.
KristianslundEBahrRKrosshaugT. Kinematics and kinetics of an accidental lateral ankle sprain. J Biomech. 2011;44(14):2576-2578.
27.
LeeSSPiazzaSJ. Inversion-eversion moment arms of gastrocnemius and tibialis anterior measured in vivo. J Biomech. 2008;41(16):3366-3370.
28.
LinleyHSSledEACulhamEGDeluzioKJ. A biomechanical analysis of trunk and pelvis motion during gait in subjects with knee osteoarthritis compared to control subjects. Clin Biomech (Bristol, Avon). 2010;25(10):1003-1010.
29.
McLeanSGFellinRESuedekumN. Impact of fatigue on gender-based high-risk landing strategies. Med Sci Sports Exerc. 2007;39(3):502-514.
30.
McLeanSGSuAvan den BogertAJ. Development and validation of a 3-d model to predict knee joint loading during dynamic movement. J Biomech Eng. 2003;125(6):864-874.
31.
McNitt-GrayJL. Kinetics of the lower extremities during drop landings from three heights. J Biomech. 1993;26(9):1037-1046.
32.
NorcrossMFBlackburnJTGoergerBMPaduaDA. The association between lower extremity energy absorption and biomechanical factors related to anterior cruciate ligament injury. Clin Biomech (Bristol, Avon). 2010;25(10):1031-1036.
33.
NorcrossMFLewekMDPaduaDA. Lower extremity energy absorption and biomechanics during landing, part I: sagittal-plane energy absorption analyses. J Athl Train. 2013;48(6):748-756.
34.
NorcrossMFLewekMDPaduaDA. Lower extremity energy absorption and biomechanics during landing, part II: frontal-plane energy analyses and interplanar relationships. J Athl Train. 2013;48(6):757-763.
35.
Palmieri-SmithRMMcLeanSGAshton-MillerJAWojtysEM. Association of quadriceps and hamstrings cocontraction patterns with knee joint loading. J Athl Train. 2009;44(3):256-263.
36.
TeradaMPfileKRPietrosimoneBGGribblePA. Effects of chronic ankle instability on energy dissipation in the lower extremity. Med Sci Sports Exerc. 2013;45(11):2120-2128.
37.
TeradaMPietrosimoneBGGribblePA. Alterations in neuromuscular control at the knee in individuals with chronic ankle instability. J Athl Train. 2014;49(5):599-607.
38.
VieiraTMMinettoMAHodson-ToleEFBotterA. How much does the human medial gastrocnemius muscle contribute to ankle torques outside the sagittal plane?Hum Mov Sci. 2013;32(4):753-767.
39.
WikstromEABishopMDInamdarADHassCJ. Gait termination control strategies are altered in chronic ankle instability subjects. Med Sci Sports Exerc. 2010;42(1):197-205.