Gender differences in footwear characteristics between half and full marathons in China: a cross-sectional survey
暂无分享,去创建一个
Yaodong Gu | G. Fekete | T. Korim | Siqin Shen | Jin Teng | S. Jia | Fan Yang | Haotian Zhao | Yuyu Xia | Qiang Wei
[1] K. Hébert-Losier,et al. How do road runners select their shoes? A systematic review , 2023, Footwear Science.
[2] Y. Pitsiladis,et al. Variability in Running Economy of Kenyan World-Class and European Amateur Male Runners with Advanced Footwear Running Technology: Experimental and Meta-analysis Results , 2023, Sports Medicine.
[3] S. Jia,et al. Gender and Age Differences in Performance of Over 70,000 Chinese Finishers in the Half- and Full-Marathon Events , 2022, International journal of environmental research and public health.
[4] Yaodong Gu,et al. Effect of the Innovative Running Shoes With the Special Midsole Structure on the Female Runners’ Lower Limb Biomechanics , 2022, Frontiers in Bioengineering and Biotechnology.
[5] G. Chiampas,et al. Review of Injury Patterns of the 2018 Bank of America Chicago Marathon to Optimize Medical Planning , 2022, Current sports medicine reports.
[6] Jiangwei Yang,et al. Running middle-class–marathon craze in transforming period of China , 2022, Sport in Society.
[7] Dustin P. Joubert,et al. A comparison of running economy across seven highly cushioned racing shoes with carbon-fibre plates , 2022, Footwear Science.
[8] U. Ugbolue,et al. Gender and leg-dominance differences in shoe properties and foot injuries in badminton: a cross-sectional survey , 2022, Journal of Foot and Ankle Research.
[9] I. Čuk,et al. Pacing in Long-Distance Running: Sex and Age Differences in 10-km Race and Marathon , 2021, Medicina.
[10] T. Sterzing,et al. Running biomechanics and running shoe perception of Chinese men and women , 2020 .
[11] Yeqiang Lin,et al. The Role of Leisure Satisfaction in Serious Leisure and Subjective Well-Being: Evidence From Chinese Marathon Runners , 2020, Frontiers in Psychology.
[12] Chich-Haung Yang,et al. Common Running Musculoskeletal Injuries and Associated Factors among Recreational Gorge Marathon Runners: An Investigation from 2013 to 2018 Taroko Gorge Marathons , 2020, International journal of environmental research and public health.
[13] Chien-Chi Chang,et al. Study of the foot morphology of recreational marathon runners , 2020, Proceedings of the Institution of Mechanical Engineers, Part P: Journal of Sports Engineering and Technology.
[14] Maurice Mohr,et al. Shoe feature recommendations for different running levels: A Delphi study , 2020, PloS one.
[15] Namita Srivastava,et al. The Machine‐Learning Approach , 2020, Machine Learning for iOS Developers.
[16] P. Nikolaidis,et al. The “New York City Marathon”: participation and performance trends of 1.2M runners during half-century , 2020, Research in sports medicine.
[17] T. Vadeboncoeur,et al. Factors Associated With Half- and Full-Marathon Race-Related Injuries: A 3-Year Review , 2019, Clinical journal of sport medicine : official journal of the Canadian Academy of Sport Medicine.
[18] Christian A. Clermont,et al. New Considerations for Wearable Technology Data: Changes in Running Biomechanics During a Marathon. , 2019, Journal of applied biomechanics.
[19] Koki Matsumura,et al. EFFECT OF CONSUMPTION VALUES ON CONSUMER SATISFACTION AND BRAND COMMITMENT: INVESTIGATING FUNCTIONAL, EMOTIONAL, SOCIAL, AND EPISTEMIC VALUES IN THE RUNNING SHOES MARKET , 2019, International Review of Management and Marketing.
[20] Ron Hager,et al. Running economy, mechanics, and marathon racing shoes , 2019, Journal of sports sciences.
[21] Wouter Hoogkamer,et al. Extrapolating Metabolic Savings in Running: Implications for Performance Predictions , 2019, Front. Physiol..
[22] Wouter Hoogkamer,et al. A Comparison of the Energetic Cost of Running in Marathon Racing Shoes , 2017, Sports Medicine.
[23] M. Cornwall,et al. CAN RUNNERS PERCEIVE CHANGES IN HEEL CUSHIONING AS THE SHOE AGES WITH INCREASED MILEAGE? , 2017, International journal of sports physical therapy.
[24] Cheryl Tay,et al. Overall Preference of Running Shoes Can Be Predicted by Suitable Perception Factors Using a Multiple Regression Model , 2017, Hum. Factors.
[25] A. N. Onodera,et al. Immediate effects of EVA midsole resilience and upper shoe structure on running biomechanics: a machine learning approach , 2017, PeerJ.
[26] Wouter Hoogkamer,et al. How Biomechanical Improvements in Running Economy Could Break the 2-hour Marathon Barrier , 2016, Sports Medicine.
[27] B. Nigg,et al. Intra-rater reliability of footwear-related comfort assessments , 2016 .
[28] Darren J. Stefanyshyn,et al. The influence of forefoot bending stiffness of footwear on athletic injury and performance , 2016 .
[29] Shigeo Iso,et al. Changes in Foot Shape after Long-Distance Running , 2015 .
[30] C. Docherty,et al. Risk Factors for Sustaining a Lower Extremity Injury in an Army Reserve Officer Training Corps Cadet Population. , 2015, Military medicine.
[31] Andreas Argubi-Wollesen,et al. Comparison of Minimalist Footwear Strategies for Simulating Barefoot Running: A Randomized Crossover Study , 2015, PloS one.
[32] Hui Liu,et al. Gym training shoe requirements in China and England , 2015 .
[33] T. Shiang,et al. Effects of forefoot bending elasticity of running shoes on gait and running performance. , 2014, Human movement science.
[34] K. Herfarth,et al. Stereotactic body radiotherapy for liver tumors , 2014, Strahlentherapie und Onkologie.
[35] Klaas Postema,et al. Rocker shoe, minimalist shoe, and standard running shoe: a comparison of running economy. , 2014, Journal of science and medicine in sport.
[36] Ewald M. Hennig,et al. Criteria for gender-specific soccer shoe development , 2014 .
[37] E. R. van den Heuvel,et al. Effect of rocker shoes on plantar pressure pattern in healthy female runners. , 2014, Gait & posture.
[38] E. Casey,et al. A Survey of Runners' Attitudes Toward and Experiences With Minimally Shod Running , 2013, PM & R : the journal of injury, function, and rehabilitation.
[39] Steffen Willwacher,et al. The potential of toe flexor muscles to enhance performance , 2013, Journal of sports sciences.
[40] M. Mipando,et al. A cross-sectional survey , 2021 .
[41] Thorsten Sterzing,et al. Basketball footwear requirements are dependent on playing position , 2012 .
[42] Carey E Rothschild,et al. Primitive Running: A Survey Analysis of Runners' Interest, Participation, and Implementation , 2012, Journal of strength and conditioning research.
[43] Youlian Hong,et al. Gender differences in foot shape: a study of Chinese young adults , 2011, Sports biomechanics.
[44] Matthew T.G. Pain,et al. A Methodology to Investigate the Relationship between Lower-Limb Dynamics and Shoe Stiffness Using Custom-Built Footwear , 2011 .
[45] Amir Abbas Zadpoor,et al. Modeling muscle activity to study the effects of footwear on the impact forces and vibrations of the human body during running. , 2010, Journal of biomechanics.
[46] C. Maiwald,et al. Sex-related differences in foot shape , 2008, Ergonomics.
[47] T. Drew,et al. The use of in-shoe pressure analysis in the evaluation of running shoes , 2008 .
[48] B. Adams,et al. Skin manifestations of running. , 2006, Journal of the American Academy of Dermatology.
[49] Peter Goldsmith,et al. A comparison of forefoot stiffness in running and running shoe bending stiffness. , 2005, Journal of biomechanics.
[50] P. Komi,et al. Muscle-tendon interaction and elastic energy usage in human walking. , 2005, Journal of applied physiology.
[51] Darren Stefanyshyn,et al. Athletics , 2004, Sports biomechanics.
[52] J. Taunton,et al. A prospective study of running injuries: the Vancouver Sun Run “In Training” clinics , 2003, British journal of sports medicine.
[53] P. Cavanagh,et al. Gender differences in adult foot shape: implications for shoe design. , 2001, Medicine and science in sports and exercise.
[54] C. Frey. Foot health and shoewear for women. , 2000, Clinical orthopaedics and related research.
[55] B. Nigg,et al. A mechanical model to determine the influence of masses and mass distribution on the impact force during running. , 2000, Journal of biomechanics.
[56] J. Wark,et al. Risk Factors for Stress Fractures in Track and Field Athletes , 1996, The American journal of sports medicine.
[57] J. Wark,et al. Risk factors for stress fractures in female track-and-field athletes: a retrospective analysis. , 1995, Clinical journal of sport medicine : official journal of the Canadian Academy of Sport Medicine.
[58] A. Hanna,et al. Sensory Attenuation Induced by Modern Athletic Footwear , 1988 .
[59] Yaodong Gu,et al. Difference of walking plantar loadings in experienced and novice long-distance runners. , 2020, Acta of bioengineering and biomechanics.
[60] E. R. van den Heuvel,et al. Biomechanics of running with rocker shoes. , 2017, Journal of science and medicine in sport.
[61] J. Sinclair,et al. Gender Differences in the Kinetics and Kinematics of Distance Running: Implications for Footwear Design , 2012 .
[62] Constanza Pujals,et al. Personality differences according to participation in or abstention from sport, competition level and age category in football players based on Costa and McCraes´s Model , 2011 .
[63] A. Milki,et al. Ectopic pregnancy rates with day 3 versus day 5 embryo transfer: a retrospective analysis , 2003, BMC pregnancy and childbirth.
[64] Caleb Mezzy. A Delphi Study , 2022 .