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1.
Gait Posture ; 33(3): 350-5, 2011 Mar.
Article in English | MEDLINE | ID: mdl-21251835

ABSTRACT

The effects of current athletic footwear on lower extremity biomechanics are unknown. The aim of this study was to examine the changes, if any, that occur in peak lower extremity net joint moments while walking in industry recommended athletic footwear. Sixty-eight healthy young adults underwent kinetic evaluation of lower extremity extrinsic joint moments while walking barefoot and while walking in current standard athletic footwear matched to the foot mechanics of each subject while controlling for speed. A secondary analysis was performed comparing peak knee joint extrinsic moments during barefoot walking to those while walking in three different standard footwear types: stability, motion control, and cushion. 3-D motion capture data were collected in synchrony with ground reaction force data collected from an instrumented treadmill. The shod condition was associated with a 9.7% increase in the first peak knee varus moment, and increases in the hip flexion and extension moments. These increases may be largely related to a 6.5% increase in stride length with shoes associated with increases in the ground reaction forces in all three axes. The changes from barefoot walking observed in the peak knee joint moments were similar when subjects walked in all three footwear types. It is unclear to what extent these increased joint moments may be clinically relevant, or potentially adverse. Nonetheless, these differences should be considered in the recommendation as well as the design of footwear in the future.


Subject(s)
Ankle Joint/physiology , Hip Joint/physiology , Knee Joint/physiology , Range of Motion, Articular/physiology , Shoes , Sports Equipment , Walking/physiology , Adult , Biomechanical Phenomena , Cohort Studies , Equipment Design , Female , Foot/physiology , Humans , Industry , Lower Extremity/physiology , Male , Muscle Contraction/physiology , Orthotic Devices , Reference Values , Stress, Mechanical , Young Adult
2.
PM R ; 1(12): 1058-63, 2009 Dec.
Article in English | MEDLINE | ID: mdl-20006314

ABSTRACT

OBJECTIVE: To determine the effect of modern-day running shoes on lower extremity joint torques during running. DESIGN: Two-condition experimental comparison. SETTING: A 3-dimensional motion analysis laboratory. PARTICIPANTS: A total of 68 healthy young adult runners (37 women) who typically run in running shoes. METHODS: All subjects ran barefoot and in the same type of stability running footwear at a controlled running speed. Three-dimensional motion capture data were collected in synchrony with ground reaction force data from an instrumented treadmill for each of the 2 conditions. MAIN OUTCOME MEASUREMENTS: Peak 3-dimensional external joint torques at the hip, knee, and ankle as calculated through a full inverse dynamic model. RESULTS: Increased joint torques at the hip, knee, and ankle were observed with running shoes compared with running barefoot. Disproportionately large increases were observed in the hip internal rotation torque and in the knee flexion and knee varus torques. An average 54% increase in the hip internal rotation torque, a 36% increase in knee flexion torque, and a 38% increase in knee varus torque were measured when running in running shoes compared with barefoot. CONCLUSIONS: The findings at the knee suggest relatively greater pressures at anatomical sites that are typically more prone to knee osteoarthritis, the medial and patellofemoral compartments. It is important to note the limitations of these findings and of current 3-dimensional gait analysis in general, that only resultant joint torques were assessed. It is unknown to what extent actual joint contact forces could be affected by compliance that a shoe might provide, a potentially valuable design characteristic that may offset the observed increases in joint torques.


Subject(s)
Ankle Joint/physiology , Hip Joint/physiology , Knee Joint/physiology , Running/physiology , Shoes , Adult , Female , Humans , Male
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