Literature DB >> 17584519

Parametric design of pressure-relieving foot orthosis using statistics-based finite element method.

Jason Tak-Man Cheung1, Ming Zhang.   

Abstract

Custom-molded foot orthoses are frequently prescribed in routine clinical practice to prevent or treat plantar ulcers in diabetes by reducing the peak plantar pressure. However, the design and fabrication of foot orthosis vary among clinical practitioners and manufacturers. Moreover, little information about the parametric effect of different combinations of design factors is available. As an alternative to the experimental approach, therefore, computational models of the foot and footwear can provide efficient evaluations of different combinations of structural and material design factors on plantar pressure distribution. In this study, a combined finite element and Taguchi method was used to identify the sensitivity of five design factors (arch type, insole and midsole thickness, insole and midsole stiffness) of foot orthosis on peak plantar pressure relief. From the FE predictions, the custom-molded shape was found to be the most important design factor in reducing peak plantar pressure. Besides the use of an arch-conforming foot orthosis, the insole stiffness was found to be the second most important factor for peak pressure reduction. Other design factors, such as insole thickness, midsole stiffness and midsole thickness, contributed to less important roles in peak pressure reduction in the given order. The statistics-based FE method was found to be an effective approach in evaluating and optimizing the design of foot orthosis.

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Year:  2007        PMID: 17584519     DOI: 10.1016/j.medengphy.2007.05.002

Source DB:  PubMed          Journal:  Med Eng Phys        ISSN: 1350-4533            Impact factor:   2.242


  14 in total

1.  Bio-Numerical Analysis of the Human Ankle-Foot Model Corresponding to Neutral Standing Condition.

Authors:  Darwich A; Nazha H; Nazha A; Daoud M; Alhussein A
Journal:  J Biomed Phys Eng       Date:  2020-10-01

2.  The use of 3D surface scanning for the measurement and assessment of the human foot.

Authors:  Scott Telfer; James Woodburn
Journal:  J Foot Ankle Res       Date:  2010-09-05       Impact factor: 2.303

3.  An elaborate data set characterizing the mechanical response of the foot.

Authors:  Ahmet Erdemir; Pavana A Sirimamilla; Jason P Halloran; Antonie J van den Bogert
Journal:  J Biomech Eng       Date:  2009-09       Impact factor: 2.097

4.  Biomechanical response of the plantar tissues of the foot in healthy and degenerative conditions.

Authors:  Chiara Giulia Fontanella; Emanuele Luigi Carniel; Veronica Macchi; Andrea Porzionato; Raffaele De Caro; Arturo Nicola Natali
Journal:  Muscles Ligaments Tendons J       Date:  2018-04-16

5.  Generation of subject-specific, dynamic, multisegment ankle and foot models to improve orthotic design: a feasibility study.

Authors:  Michiel Oosterwaal; Scott Telfer; Søren Tørholm; Sylvain Carbes; Lodewijk W van Rhijn; Ross Macduff; Kenneth Meijer; Jim Woodburn
Journal:  BMC Musculoskelet Disord       Date:  2011-11-10       Impact factor: 2.362

Review 6.  What has finite element analysis taught us about diabetic foot disease and its management? A systematic review.

Authors:  Scott Telfer; Ahmet Erdemir; James Woodburn; Peter R Cavanagh
Journal:  PLoS One       Date:  2014-10-07       Impact factor: 3.240

Review 7.  Analysis of Uncertainty and Variability in Finite Element Computational Models for Biomedical Engineering: Characterization and Propagation.

Authors:  Nerea Mangado; Gemma Piella; Jérôme Noailly; Jordi Pons-Prats; Miguel Ángel González Ballester
Journal:  Front Bioeng Biotechnol       Date:  2016-11-07

8.  The Effect of Arch Height and Material Hardness of Personalized Insole on Correction and Tissues of Flatfoot.

Authors:  Shonglun Su; Zhongjun Mo; Junchao Guo; Yubo Fan
Journal:  J Healthc Eng       Date:  2017-06-12       Impact factor: 2.682

9.  Subject Specific Optimisation of the Stiffness of Footwear Material for Maximum Plantar Pressure Reduction.

Authors:  Panagiotis E Chatzistergos; Roozbeh Naemi; Aoife Healy; Peter Gerth; Nachiappan Chockalingam
Journal:  Ann Biomed Eng       Date:  2017-05-09       Impact factor: 3.934

10.  A dynamic finite element analysis of human foot complex in the sagittal plane during level walking.

Authors:  Zhihui Qian; Lei Ren; Yun Ding; John R Hutchinson; Luquan Ren
Journal:  PLoS One       Date:  2013-11-11       Impact factor: 3.240

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