Items where Author is "Apps, C"

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Number of items: 17.

APPS, C., DAWSON, L., SHERING, B. and SIEGKAS, P., 2022. Grip socks improve slalom course performance and reduce in-shoe foot displacement of the forefoot in male and female sports players. Journal of Sports Sciences. ISSN 0264-0414

LIU, Y., LAM, W.-K., SEGLINA, I. and APPS, C., 2022. Does the location of shoe upper support on basketball shoes influence ground reaction force and ankle mechanics during cutting maneuvers? Biology, 11 (5): 743.

MELIA, G., SIEGKAS, P., LEVICK, J. and APPS, C., 2021. Insoles of uniform softer material reduced plantar pressure compared to dual-material insoles during regular and loaded gait. Applied Ergonomics, 91: 103298. ISSN 0003-6870

APPS, C., RODRIGUES, P., ISHERWOOD, J. and LAKE, M., 2020. Footwear insoles with higher frictional properties enhance performance by reducing in-shoe sliding during rapid changes of direction. Journal of Sports Sciences, 38 (2), pp. 206-213. ISSN 0264-0414

APPS, C., LAKE, M., O’BRIEN, T.D. and STERZING, T., 2019. Unpredictable shoe midsole perturbations provide an instability stimulus to train ankle posture and motion during forward and lateral gym lunges. Journal of Sports Sciences, 37 (17), pp. 1951-1961. ISSN 0264-0414

APPS, C., STERZING, T., O'BRIEN, T., DING, R. and LAKE, M., 2017. Biomechanical locomotion adaptations on uneven surfaces can be simulated with a randomly deforming shoe midsole. Footwear Science, 9 (2), pp. 65-77. ISSN 1942-4280

APPS, C., STERZING, T., O'BRIEN, T. and LAKE, M., 2016. Lower limb joint stiffness and muscle co-contraction adaptations to instability footwear during locomotion. Journal of Electromyography and Kinesiology, 31, pp. 55-62. ISSN 1050-6411

APPS, C., STERZING, T., O’BRIEN, T., DING, R. and LAKE, M., 2016. Ankle and knee joint stiffness in walking; unpredictable and predictable shoe perturbations. Foot and Ankle Surgery, 22 (2), pp. 17-18. ISSN 1268-7731

APPS, C., STERZING, T., O'BRIEN, T., DING, R. and LAKE, M., 2016. Ankle and knee joint stiffness in running; unpredictable and predictable shoe perturbations. In: The 1st UK Footwear Science Meeting, Stoke on Trent, April 2016.

APPS, C., STERZING, T., O'BRIEN, T., CHEUNG, J. and LAKE, M., 2015. Irregular shoe midsole deformations simulate the movement variability of running on uneven surfaces. In: The 12th Footwear Biomechanics Symposium, Liverpool, July 2015.

APPS, C., STERZING, T., O'BRIEN, T., CHEUNG, J. and LAKE, M., 2015. Lower limb biomechanics during the forward lunge: the influence of a shoe with irregular deformations of the midsole. In: The 25th Congress of the International Society of Biomechanics, Glasgow, July 2015.

APPS, C., LIU, H., PYKETT, J. and STERZING, T., 2015. Gym training shoe requirements in China and England. Footwear Science, 7 (1), pp. 51-62. ISSN 1942-4280

APPS, C., DING, R., CHEUNG, J. and STERZING, T., 2014. Individual and generalized lower limb muscle activity and kinematic adaptations during running on an unpredictable irregular surface. In: The 4th Congress of the International Foot and Ankle Biomechanics Community, Busan, Korea, April 2014.

APPS, C., DING, R., CHEUNG, J. and STERZING, T., 2014. Individual and generalized lower limb muscle activity and kinematic adaptations during walking on an unpredictable irregular surface. In: The 4th Congress of the International Foot and Ankle Biomechanics Community, Busan, Korea, April 2014.

APPS, C., DING, R. and CHEUNG, J., 2014. Running on an unpredictable irregular surface changes lower limb biomechanics and subjective perception compared to running on a regular surface. In: The 4th Congress of the International Foot and Ankle Biomechanics Community, Busan, Korea, April 2014.

STERZING, T., APPS, C., DING, R. and CHEUNG, J., 2014. Walking on an unpredictable irregular surface changes lower limb biomechanics and subjective perception compared to walking on a regular surface. In: The 4th Congress of the International Foot and Ankle Biomechanics Community, Busan, Korea, April 2014.

LAKE, M., APPS, C. and STERZING, T., 2013. Lower limb kinematics and plantar pressure distribution with different foot strike patterns during running. In: The 11th Footwear Biomechanics Symposium, Natal, Brazil, August 2013.

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