This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.
Alkjær T., Raffalt P., Petersen N.C., Simonsen E.B., Movement behavior of high-heeled walking: How does the nervous system control the ankle joint during an unstable walking condition?, PLOS ONE, 2012, 7 (5), e37390.Search in Google Scholar
Blanchard S., Palestri J., Guer J.L., Behr M., Current soccer footwear, its role in injuries and potential for improvement, Sports Med. Int. Open, 2018, 2 (2), E52–e61.Search in Google Scholar
Blanchette M.G., Brault J.R., Powers C.M., The influence of heel height on utilized coefficient of friction during walking, Gait Posture, 2011, 34 (1), 107–110.Search in Google Scholar
Błażkiewicz M., Kędziorek J., Hadamus A., The Impact of Visual Input and Support Area Manipulation on Postural Control in Subjects after Osteoporotic Vertebral Fracture, Entropy, 2021, 23 (3).Search in Google Scholar
Błażkiewicz M., Nonlinear measures in posturography compared to linear measures based on yoga poses performance, Acta Bioeng. Biomech., 2020, 22 (4), 15–21.Search in Google Scholar
Błażkiewicz M., Kędziorek J., Wit A., The relationship between personality and postural control in young adults; A pilot study, Appl. Sci., 2022, 12 (10), 4978.Search in Google Scholar
Cronin N.J., The effects of high heeled shoes on female gait: a review, J. Electromyogr. Kinesiol., 2014, 24 (2), 258–263.Search in Google Scholar
Curran S., Holliday J.L., Watkeys L., Influence of high heeled footwear and pre-fabricated orthoses on energy efficiency in ambulation, The Foot and Ankle Online Journal, 2010, 3, 1–11.Search in Google Scholar
Danesi M., Of cigarettes, high heels, and other interesting things, Palgrave Macmillan, 2018.Search in Google Scholar
Donker S.F.R.M., Greven A.J., Beek P.J., Regularity of center-of-pressure trajectories depends on the amount of attention invested in postural control, Exp. Brain Res., 2007, 181, 1–11.Search in Google Scholar
Ebbeling C.J., Hamill J., Crussemeyer J.A., Lower extremity mechanics and energy cost of walking in high-heeled shoes, J. Orthop. Sports Phys. Ther., 1994, 19 (4), 190–196.Search in Google Scholar
Gefen A., Megido-Ravid M., Itzchak Y., Arcan M., Analysis of muscular fatigue and foot stability during high-heeled gait, Gait Posture, 2002, 15 (1), 56–63.Search in Google Scholar
Gerber S.B., Costa R.V., Grecco L.A., Pasini H., Marconi N.F., Oliveira C.S., Interference of high-heeled shoes in static balance among young women, Hum. Mov. Sci., 2012, 31 (5), 1247–1252.Search in Google Scholar
Zebris FDM software user manual, 2017. Retrieved from https://www.zebris.de/fileadmin/Editoren/zebris-PDF-Manuals/Medizin/Software/Alte_Versionen/Manual_zebris_FDM_1.16.x_R1_EN_web.pdfSearch in Google Scholar
Goldberger A.L., Rigney D.R., West B.J., Chaos and fractals in human physiology, Sci. Am., 1990, 262 (2), 42–49.Search in Google Scholar
Hapsari V.D., Xiong S., Effects of high heeled shoes wearing experience and heel height on human standing balance and functional mobility, Ergonomics, 2016, 59 (2), 249–264.Search in Google Scholar
Higuchi T., Approach to an irregular time series on the basis of the fractal theory, Physica D: Nonlinear Phenomena, 1988, 31 (2), 277–283.Search in Google Scholar
Kędziorek J., Błażkiewicz M., Nonlinear measures to evaluate upright postural stability: a systematic review, Entropy, 2020, 22 (12).Search in Google Scholar
Kerrigan D.C., Lelas J.L., Karvosky M.E., Women’s shoes and knee osteoarthritis, Lancet, 2001, 357 (9262), 1097–1098.Search in Google Scholar
Kędziorek J., Błażkiewicz M., Influence of the base of support widths on postural control and feet loading symmetry during squat – preliminary study, Acta Bioeng. Biomech., 2022, 24 (2), 55–63.Search in Google Scholar
Kędziorek J., Błażkiewicz M., Kaczmarczyk K., Using nonlinear measures to evaluate postural control in healthy adults during bipedal standing on an unstable surface, Acta Bioeng. Biomech., 2022, 24 (1), 9–17.Search in Google Scholar
Ko P.H., Hsiao T.Y., Kang J.H., Wang T.G., Shau Y.W., Wang C.L., Relationship between plantar pressure and soft tissue strain under metatarsal heads with different heel heights, Foot and Ankle International, 2009, 30 (11), 1111–1116.Search in Google Scholar
Landry S., Nigg B., Tecante K., Standing in an unstable shoe increases postural sway and muscle activity of selected smaller extrinsic foot muscles, Gait Posture, 2010, 32, 215–219.Search in Google Scholar
Lewis D.M.G., Russell E.M., Al-Shawaf L., Ta V., Senveli Z., Ickes W. et al., Why women wear high heels: evolution, lumbar curvature, and attractiveness, Frontiers in Psychology, 2017, 8.Search in Google Scholar
Linder M., Saltzman C.L., A history of medical scientists on high heels, Int. J. Health Serv., 1998, 28 (2), 201–225.Search in Google Scholar
Menz H.B., Bonanno D.R., Footwear comfort: a systematic search and narrative synthesis of the literature, J. Foot Ankle Res., 2021, 14 (1), 63.Search in Google Scholar
Mika A., Oleksy Ł., Mika P., Marchewka A., Clark B.C., The influence of heel height on lower extremity kinematics and leg muscle activity during gait in young and middle-aged women, Gait Posture, 2012, 35 (4), 677–680.Search in Google Scholar
Promsri A., Haid T., Federolf P., How does lower limb dominance influence postural control movements during single leg stance?, Hum. Mov. Sci., 2018, 58, 165–174.Search in Google Scholar
Reutimann S., Hill-Strathy M., Krewer C., Bergmann J., Müller F., Jahn K. et al., Influence of footwear on postural sway: A systematic review and meta-analysis on barefoot and shod bipedal static posturography in patients and healthy subjects, Gait Posture, 2022, 92, 302–314.Search in Google Scholar
Richardson J., Eta squared and partial eta squared as measures of effect size in educational research, Educ. Res. Rev., 2011, 6, 135–147.Search in Google Scholar
Rosenstein M.T., Collins J.J., De Luca C.J., A practical method for calculating largest Lyapunov exponents from small data sets, Physica D: Nonlinear Phenomena, 1993, 65 (1), 117–134.Search in Google Scholar
Schmit J.M., Regis D.I., Riley M.A., Dynamic patterns of postural sway in ballet dancers and track athletes, Exp. Brain Res., 2005, 163 (3), 370–378.Search in Google Scholar
Silva A.M., De Siqueira G.R., Da Silva G.A., Implications of high-heeled shoes on body posture of adolescents, Rev. Paul Pediatr., 2013, 31 (2), 265–271.Search in Google Scholar
Speksnijder C.M., Vd Munckhof R.J.H., Moonen S.A.F.C.M., Walenkamp G.H.I.M., The higher the heel the higher the forefoot- pressure in ten healthy women, The Foot, 2005, 15 (1), 17–21.Search in Google Scholar
Stefanyshyn D., Nigg B., Fisher V., O’Flynn B., Liu W., The influence of high heeled shoes on kinematics, kinetics, and muscle EMG of normal female gait, J. Appl. Biomech., 2000, 16, 309–319.Search in Google Scholar
Stins J.F., Michielsen M.E., Roerdink M., Beek P.J., Sway regularity reflects attentional involvement in postural control: effects of expertise, vision and cognition, Gait Posture, 2009, 30 (1), 106–109.Search in Google Scholar
Wan F.K.W., Yick K.L., Yu W.W.M., Effects of heel height and high-heel experience on foot stability during quiet standing, Gait Posture, 2019, 68, 252–257.Search in Google Scholar
Yung-Hui L., Wei-Hsien H., Effects of shoe inserts and heel height on foot pressure, impact force, and perceived comfort during walking, Appl. Ergon., 2005, 36 (3), 355–362.Search in Google Scholar
Zeng Z., Liu Y., Hu X., Li P., Wang L., Effects of high-heeled shoes on lower extremity biomechanics and balance in females: a systematic review and meta-analysis, BMC Public Health, 2023, 23 (1), 726.Search in Google Scholar