Scott Wearing
Dados Biográficos
| ID | 4782907 |
|---|---|
| NOME | Scott Wearing |
| PRENOMES | Scott |
| SOBRENOME | Wearing |
| ASSINATURA | WEARING S |
| AFILIAÇÕES | Queensland University of Technology |
| ORCID | 0000-0002-3970-369X |
| VERIFICADO | Sim |
| TOTAL DE OBRAS | 2 |
| TOTAL DE CITAÇÕES | 2 |
| TOTAL COMO AUTOR | 2 |
| TOTAL COMO EDITOR | 0 |
| PRIMEIRO ANO DE PUBLICAÇÃO | 2021 |
| ANO MAIS RECENTE DE PUBLICAÇÃO | 2022 |
| ÍNDICE H | 1 |
Reversing the Mismatch With Forefoot Striking to Reduce Running Injuries
Recent studies have suggested that 95% of modern runners land with a rearfoot strike (RFS) pattern. However, we hypothesize that running with an RFS pattern is indicative of an evolutionary mismatch that can lead to musculoskeletal injury. This perspective is predicated on the notion that our ancestors evolved to run barefoot and primarily with a forefoot strike (FFS) pattern. We contend that structures of the foot and ankle are optimized for for…
Adolescent Running Biomechanics - Implications for Injury Prevention and Rehabilitation
Global participation in running continues to increase, especially amongst adolescents. Consequently, the number of running-related injuries (RRI) in adolescents is rising. Emerging evidence now suggests that overuse type injuries involving growing bone (e.g., bone stress injuries) and soft tissues (e.g., tendinopathies) predominate in adolescents that participate in running-related sports. Associations between running biomechanics and overuse inj…
Reversing the Mismatch With Forefoot Striking to Reduce Running Injuries
Recent studies have suggested that 95% of modern runners land with a rearfoot strike (RFS) pattern. However, we hypothesize that running with an RFS pattern is indicative of an evolutionary mismatch that can lead to musculoskeletal injury. This perspective is predicated on the notion that our ancestors evolved to run barefoot and primarily with a forefoot strike (FFS) pattern. We contend that structures of the foot and ankle are optimized for for…
Adolescent Running Biomechanics - Implications for Injury Prevention and Rehabilitation
Global participation in running continues to increase, especially amongst adolescents. Consequently, the number of running-related injuries (RRI) in adolescents is rising. Emerging evidence now suggests that overuse type injuries involving growing bone (e.g., bone stress injuries) and soft tissues (e.g., tendinopathies) predominate in adolescents that participate in running-related sports. Associations between running biomechanics and overuse inj…
Adolescent Running Biomechanics - Implications for Injury Prevention and Rehabilitation
Global participation in running continues to increase, especially amongst adolescents. Consequently, the number of running-related injuries (RRI) in adolescents is rising. Emerging evidence now suggests that overuse type injuries involving growing bone (e.g., bone stress injuries) and soft tissues (e.g., tendinopathies) predominate in adolescents that participate in running-related sports. Associations between running biomechanics and overuse inj…
Reversing the Mismatch With Forefoot Striking to Reduce Running Injuries
Recent studies have suggested that 95% of modern runners land with a rearfoot strike (RFS) pattern. However, we hypothesize that running with an RFS pattern is indicative of an evolutionary mismatch that can lead to musculoskeletal injury. This perspective is predicated on the notion that our ancestors evolved to run barefoot and primarily with a forefoot strike (FFS) pattern. We contend that structures of the foot and ankle are optimized for for…
Computer Science (2 obras) · Lower Extremity Biomechanics and Pathologies (2 obras) · Medicine (2 obras) · Physical medicine and rehabilitation (2 obras) · Physical therapy (2 obras) · Sports injuries and prevention (2 obras) · Anatomy (1 obras) · Ankle (1 obras) · Ankle injury (1 obras) · Athletes (1 obras)