Abstract

Kinematic and kinetic data was collected for 13 subjects walking in four different styles of footwear used for walking (trainer, oxford shoe, flip-flop and triple-density sandal). Copy to clipboard Provided by the Springer Nature SharedIt content-sharing initiative Keywords * Effective Mass * Peak Force * Peak Acceleration * Force Plate * Drop Height Volume 7 Supplement 1 4th Congress of the International Foot and Ankle Biomechanics Community [RAW_REF_TEXT] Meeting abstract [/RAW_REF_TEXT] [RAW_REF_TEXT] Open Access [/RAW_REF_TEXT] [RAW_REF_TEXT] Published:08 April 2014 [/RAW_REF_TEXT] Testing a mechanical protocol to replicate impact in walking footwear [RAW_REF_TEXT] Carina Price 1, [/RAW_REF_TEXT] [RAW_REF_TEXT] Glen Cooper2, [/RAW_REF_TEXT] [RAW_REF_TEXT] Philip Graham-Smith1 & [/RAW_REF_TEXT] [RAW_REF_TEXT] Richard Jones1 [/RAW_REF_TEXT] Journal of Foot and Ankle Research volume 7, Article number: Kinematic and kinetic data was collected for 13 subjects walking in four different styles of footwear used for walking (trainer, oxford shoe, flip-flop and triple-density sandal). Full size image Meeting abstract Open Access Published:08 April 2014 [/RAW_REF_TEXT] Testing a mechanical protocol to replicate impact in walking footwear [RAW_REF_TEXT] Carina Price 1, Glen Cooper2, Philip Graham-Smith1 & Richard Jones1 [/RAW_REF_TEXT] Journal of Foot and Ankle Research volume 7, Article number:

Details

Title
Testing a mechanical protocol to replicate impact in walking footwear
Author
Price, Carina; Cooper, Glen; Graham-Smith, Philip; Jones, Richard
Pages
1-2
Section
Meeting abstract
Publication year
2014
Publication date
2014
Publisher
BioMed Central
e-ISSN
1757-1146
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
2695873762
Copyright
© 2014. This work is licensed under http://creativecommons.org/licenses/by/4.0 (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License.