Uneingeschränkter Zugang

Reliability of the RunScribe™ system to determine kinematic variables of the pelvis during locomotion at different speeds

, , , ,  und   
25. Jan. 2023

Zitieren
COVER HERUNTERLADEN

Atkinson G., Nevill A.M., Statistical methods for assessing measurement error (reliability) in variables relevant to sports medicine, Sports Medicine, 1998, 26 (4), 217–238. https://doi.org/10.2165/00007256-199826040-00002 Search in Google Scholar

Cartón-Llorente A., Roche-Seruendo L.E., Jaén-Carrillo D., Marcen-Cinca N., García-Pinillos F., Absolute reliability and agreement between Stryd and Run- Scribe systems for the assessment of running power, Proceedings of the Institution of Mechanical Engineers, Part P: Journal of Sports Engineering and Technology, 2020, https://doi.org/10.1177/1754337120984644 Search in Google Scholar

Castellanos-Ruíz J., Montealegre-Mesa L.M., Martínez-Toro B.D., Gallo-Serna J.J., Almanza-Fuentes O., Uso de sensores inerciales en fisioterapia: Una aproximación a procesos de evaluación del movimiento humano, Universidad y Salud, 2021, 23 (1), 55–63. Search in Google Scholar

García-Pinillos F., Chicano-Gutiérrez J.M., Ruiz-Malagón E.J., Roche-Seruendo L.E., Influence of Run- ScribeTM placement on the accuracy of spatiotemporal gait characteristics during running, Proceedings of the Institution of Mechanical Engineers, Part P: Journal of Sports Engineering and Technology, 2020, 234 (1), 11–18. https://doi.org/10.1177/1754337119876513 Search in Google Scholar

Hollander K., Rahlf A.L., Wilke J., Edler C., Steib S., Junge A., Zech A., Sex-specific differences in running injuries: a systematic review with meta-analysis and meta-regression, Sports Medicine, 2021, 1–29. Search in Google Scholar

Hollis C.R., Koldenhoven R.M., Resch J.E., Hertel J., Running biomechanics as measured by wearable sensors: Effects of speed and surface, Sports Biomechanics, 2019, 1–11. Search in Google Scholar

Hopkins W.G., Measures of reliability in sports medicine and science, Sports Medicine, 2000, 30 (1), 1–15. Search in Google Scholar

Hopkins W.G., Spreadsheets for analysis of validity and reliability, Sportscience, 2015, 19, 36–42. https://doi.org/sportsci.org/2017/wghxls.htm Search in Google Scholar

Jaén-Carrillo D., Roche-Seruendo L.E., Cartón-Llorente A., Ramírez-Campillo R., García-Pinillos F., Mechanical Power in Endurance Running: A Scoping Review on Sensors for Power Output Estimation during Running, Sensors, 2020, 20 (22), 6482. Search in Google Scholar

Jandová S., Volf P., Vaverka F., The influence of minimalist and conventional sports shoes and lower limbs dominance on running gait, Acta of Bioengineering and Biomechanics, 2018, 20 (3). Search in Google Scholar

Koo T.K., Li M.Y., A guideline of selecting and reporting intraclass correlation coefficients for reliability research, Journal of Chiropractic Medicine, 2016, 15 (2), 155–163. https://doi.org/10.1016/j.jcm.2016.02.012 Search in Google Scholar

Kozinc Ž., Smajla D., Šarabon N., The reliability of wearable commercial sensors for outdoor assessment of running biomechanics: the effect of surface and running speed, Sports Biomechanics, 2022, 12, 1–14. Search in Google Scholar

Landis J.R., Koch G.G., The measurement of observer agreement for categorical data, Biometrics, 1977, 33 (1), 159–174. Search in Google Scholar

Lavcanska V., Taylor N.F., Schache A.G., Familiarization to treadmill running in young unimpaired adults, Human Movement Science, 2005, 24 (4), 544–557. https://doi.org/10.1016/j.humov.2005.08.001 Search in Google Scholar

Mitschke C., Kiesewetter P., Milani T.L., The effect of the accelerometer operating range on biomechanical parameters: Stride length, velocity, and peak tibial acceleration during running, Sensors, 2018, 18 (1), 130. Search in Google Scholar

Schieb D.A., Kinematic accommodation of novice treadmill runners, Research Quarterly for Exercise and Sport, 1986, 57 (1), 1–7. Search in Google Scholar

Van Hooren B., Goudsmit J., Restrepo J., Vos S., Realtime feedback by wearables in running: Current approaches, challenges and suggestions for improvements, Journal of Sports Sciences, 2020, 38 (2), 214–230. Search in Google Scholar

Vannatta C.N., Heinert B.L., Kernozek T.W., Biomechanical risk factors for running-related injury differ by sample population: A systematic review and meta-analysis, Clinical Biomechanics, 2020, 75, 104991. Search in Google Scholar

Xu Y., Yuan P., Wang R., Wang D., Liu J., Zhou H., Effects of Foot Strike Techniques on Running Biomechanics: A Systematic Review and Meta-analysis, Sports Health, 2021, 13 (1), 71–77. Search in Google Scholar

Sprache:
Englisch
Zeitrahmen der Veröffentlichung:
4 Hefte pro Jahr
Fachgebiete der Zeitschrift:
Technik, Bioingenieurwesen, Zellbiologie, Biomechanik, Medizin, Biomedizinische Technik, Materialwissenschaft, Bio- und Naturmaterialien