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Advanced Footwear Technology, Are Ground Reaction Forces and Lower Extremity Loading Dependent on Shoe Energy Return Characteristics?
KTH, School of Engineering Sciences in Chemistry, Biotechnology and Health (CBH), Biomedical Engineering and Health Systems.
2022 (English)Independent thesis Advanced level (degree of Master (Two Years)), 20 credits / 30 HE creditsStudent thesisAlternative title
Advanced Footwear Technology, är markreaktionskrafter och belastning på nedre extremiteterna beroende av skons energiåtergivningsegenskaper? (Swedish)
Abstract [en]

In the long distance running community there is currently controversy as a result of the release of Advanced Footwear Technology (AFT) type of shoes. The AFT shoes with performance enhancing mechanical properties are currently used with great success. All of the current world records in long distance running have been set by athletes wearing the novel type of shoes. The new type of shoes have been shown to reduce energetic cost of running but the exact mechanisms of the reduced energetic cost are still unclear. In the research community several hypotheses of mechanisms and performance enhancing features exist. In this thesis the focus was on investigating the performance enhancing feature, energy return and the effect it has on the biomechanical variables, ground reaction force, joint moments and joint power. 

For this thesis five male subelite to elite runners were recruited. The participants ran over two force platforms with a controlled running velocity while motion data was recorded with a marker based motion analysis system. The curves from the contact of the foot with the force platform were analysed with the motion analysis software, Visual 3D and the SPM1D statistical package in Matlab. 

The results suggest that energy return properties of AFT shoes do affect lower extremity loading. Significant differences in the biomechanical variables GRF, ankle moment and ankle power were seen between high energy return shoes and low energy return shoes. In addition the number of significantly different intervals show a tendency of a pattern, where shoes share the largest amount of significantly different intervals with shoes that are furthest away on the energy return list. However, shoe #4 did not behave according to the energy return ranking. This means that a sole dependency on energy return characteristics was not found.   

The knowledge gained from this thesis does not reduce the controversy surrounding the shoes. It does however establish a base for further research in the area of AFT. From that base, further research could create a solid scientific understanding of the shoes, which can be used to justify regulation changes. Regulations with a solid scientific backing would reduce the controversy.

Abstract [sv]

Inom långdistanslöpning finns det för närvarande en kontrovers till följd av lanseringen av skor av typen Advanced Footwear Technology. Advanced Footwear Technology-skor med prestandaförbättrande mekaniska egenskaper används för närvarande med stor framgång. Alla nuvarande världsrekord i långdistanslöpning har satts av idrottare som bär den nya typen av skor. Det har visat sig att den nya typen av skor minskar den energetiska kostnaden för löpning, men de exakta mekanismerna för den minskade energetiska kostnaden är fortfarande oklara. Inom forskarvärlden finns flera hypoteser om mekanismer och prestationshöjande egenskaper. I den här uppsatsen låg fokus på att undersöka den prestationshöjande egenskapen, energiåtergivning, och vilken effekt den har på de biomekaniska variablerna markreaktionskraft, ledmoment och ledeffekt. 

För denna uppsats rekryterades fem manliga subelit- till elitlöpare. Deltagarna sprang över två kraftplattformar med en kontrollerad löphastighet medan rörelsedata registrerades med ett markörbaserat rörelseanalyssystem. Kurvorna från fotens kontakt med kraftplattformen analyserades med rörelseanalys-programmet Visual 3D och statistikpaketet SPM1D i Matlab. 

Resultaten tyder på att AFT-skor har egenskaper som ger energiåtergivning och som påverkar belastningen på nedre extremiteterna. Signifikanta skillnader i de biomekaniska variablerna GRF, fotledsmoment och fotledskraft sågs i resultaten. Dessutom visar antalet signifikant olika intervall en tendens till ett mönster, där skor delar det största antalet signifikant olika intervall med skor som ligger längst bort på listan över energiåtergivning. Sko #4 uppförde sig dock inte i enlighet med rangordningen för energiåtergivning. Detta innebär att man inte har funnit något beroende av egenskaperna för energiåtervändning.   

Den kunskap som erhållits genom denna uppsats minskar inte kontroverserna kring skorna. Den skapar dock en grund för ytterligare forskning inom området Advanced Footwear Technology. Utifrån denna grund kan ytterligare forskning skapa en solid vetenskaplig förståelse för skorna, som kan användas för att motivera ändringar av regler. Ett regelverk med ett gediget vetenskapligt stöd skulle minska kontroverserna.

Place, publisher, year, edition, pages
2022. , p. 44
Series
TRITA-CBH-GRU ; 2022:123
Keywords [en]
Biomechanics, Running, Advanced FootwearTechnology, Running mechanics, Motion analysis
Keywords [sv]
Biomekanik, Löpmekanik, Rörelseanalys
National Category
Medical Engineering
Identifiers
URN: urn:nbn:se:kth:diva-319547OAI: oai:DiVA.org:kth-319547DiVA, id: diva2:1700580
External cooperation
GIH - The Swedish School of Sport and Health Sciences
Educational program
Degree of Master - Sports Technology
Supervisors
Examiners
Available from: 2023-04-06 Created: 2022-10-03 Last updated: 2023-04-06Bibliographically approved

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