Accès libre

Identification of muscle movements and activity by experimental methods for selected cases – stage#1

,  et   
25 janv. 2023
À propos de cet article

Citez
Télécharger la couverture

Ahamed N.U., Alqahtani M. Altwijri O., Rahman M., Sundaraj K., Age-related EMG responses of the biceps brachii muscle of young adults, Biomedical Research (India), 2016, Vol. 27, No. 3, 787–793. Search in Google Scholar

Ahamed N.U., Sundaraj K., Alqahtani M., Altwijri O., Ali MdA., Islam Md.A., EMG-force relationship during static contraction: Effects on sensor placement locations on biceps brachii muscle, Technology and Health Care, 2014, Vol. 22, IOS Press, No. 4, 505–513, DOI: 10.3233/THC-140842. Search in Google Scholar

Akinnola O.O., Vardakastani V., Kedgley A.E., Identifying tasks to elicit maximum voluntary contraction in the muscles of the forearm, Journal of Electromyography and Kinesiology, 2020, Vol. 55, Elsevier, p. 102463, DOI: 10.1016/J.JELEKIN.2020.102463. Search in Google Scholar

Alizadehkhaiyat O., Frostick S.P., Electromyographic assessment of forearm muscle function in tennis players with and without Lateral Epicondylitis, Journal of Electromyography and Kinesiology, 2015, Vol. 25, Elsevier, No. 6, 876–886, DOI: 10.1016/J.JELEKIN.2015.10.013. Search in Google Scholar

Amiri P., Hubley-Kozey C.L., Landry S.C., Stanish W.D., Astephen Wilson J.L., Obesity is associated with prolonged activity of the quadriceps and gastrocnemii during gait, Journal of Electromyography and Kinesiology, 2015, Vol. 25, Elsevier, No. 6, 951–958, DOI: 10.1016/J.JELEKIN.2015.10.007. Search in Google Scholar

Angelova S., Ribagin S., Raikova R., Veneva I., Power frequency spectrum analysis of surface EMG signals of upper limb muscles during elbow flexion – A comparison between healthy subjects and stroke survivors, Journal of Electromyography and Kinesiology, 2018, Vol. 38, Elsevier, 7–16, DOI: 10.1016/J.JELEKIN.2017.10.013. Search in Google Scholar

Bartuzi P., Roman-Liu D., Assessment of muscle load and fatigue with the usage of frequency and time-frequency analysis of the EMG signal, Acta Bioeng. Biomech., 2014, Original paper, Vol. 16, No. 2 – ISBN 4822623378, DOI: 10.5277/abb140204. Search in Google Scholar

Bochenek A., Anatomia człowieka, t. II, Państwowy Zakład Wydawnictw Lekarskich, 1953. Search in Google Scholar

Buchanan T.S., Rovai G.P., Rymer W.Z., Strategies for muscle activation during isometric torque generation at the human elbow, American Physiological Society, Bethesda, MD, 1989, Vol. 62, No. 6, 1201–1212, https://doi.org/10.1152/jn.1989.62.6.1201. Search in Google Scholar

Bullock G.S., Menon G., Nicholson K., Butler R.J., Arden N.K., Filbay S.R., Baseball pitching biomechanics in relation to pain, injury, and surgery: A systematic review, Journal of Science and Medicine in Sport, 2021, Vol. 24, Elsevier, No. 1, 13–20, DOI: 10.1016/J.JSAMS. 2020.06.015. Search in Google Scholar

Burden A., How should we normalize electromyograms obtained from healthy participants? What we have learned from over 25 years of research, Journal of Electromyography and Kinesiology, 2010, Vol. 20, Elsevier, No. 6, 1023–1035, DOI: 10.1016/J.JELEKIN.2010.07.004. Search in Google Scholar

Chalard A., Belle M., Montané E., Marque P., Amarantini D., Gasq D., Impact of the EMG normalization method on muscle activation and the antagonist-agonist cocontraction index during active elbow extension: Practical implications for post-stroke subjects, Journal of Electromyography and Kinesiology, 2020, Vol. 51, Elsevier, 102403, DOI: 10.1016/J.JELEKIN.2020.102403. Search in Google Scholar

Cid M.M, Oliveira A.B., Januario L.B., Côté J.N., de Fátima Carreira Moreira R., Madeleine P., Are there sex differences in muscle coordination of the upper girdle during a sustained motor task?, Journal of Electromyography and Kinesiology, 2019, Vol. 45, Elsevier, 1–10, DOI: 10.1016/J.JELEKIN.2019.01.003. Search in Google Scholar

Cifrek M., Medved V., Tonković S., Ostojić S., Surface EMG-based muscle fatigue evaluation in biomechanics, Clinical Biomechanics. 2009, Vol. 24, Elsevier, No. 4, 327–340, DOI: 10.1016/J.CLINBIOMECH.2009.01.010. Search in Google Scholar

Degrave V., Verdugo F., Pelletier J., Traube C., Begon M., Time history of upper-limb muscle activity during isolated piano keystrokes, Journal of Electromyography and Kinesiology, 2020, Vol. 54, Elsevier, 102459, DOI: 10.1016/J.JELEKIN.2020.102459. Search in Google Scholar

Disselhorst-Klug C., Schmitz-Rode T., Rau G., Surface electromyography and muscle force: Limits in sEMG–force relationship and new approaches for applications, Clinical Biomechanics, 2009, Vol. 24, Elsevier, No. 3, 225–235, DOI: 10.1016/J.CLINBIOMECH.2008.08.003. Search in Google Scholar

Doheny E.P., Lowery M.M., FitzPatrick D.P., O’Malley M.J., Effect of elbow joint angle on force–EMG relationships in human elbow flexor and extensor muscles, Journal of Electromyography and Kinesiology, 2008, Vol. 18, Elsevier, No. 5, 760–770, DOI: 10.1016/J.JELEKIN.2007.03.006. Search in Google Scholar

Ertl P., Kruse A., Tilp M., Detecting fatigue thresholds from electromyographic signals: A systematic review on approaches and methodologies, Journal of Electromyography and Kinesiology, 2016, Vol. 30, Elsevier, 216–230, DOI: 10.1016/J.JELEKIN.2016.08.002. Search in Google Scholar

Forghany S., Nester C.J., Richards B., Hatton A.L., Liu A., Rollover footwear affects lower limb biomechanics during walking, Gait and Posture, 2014, Vol. 39, Elsevier, No. 1, 205–212, DOI: 10.1016/J.GAITPOST.2013.07.009. Search in Google Scholar

Forman D.A., Forman G.N., Avila-Mireles E.J., Mugnosso M., Zenzeri J., Murphy B., Holmes M.W.R., Characterizing forearm muscle activity in university-aged males during dynamic radial-ulnar deviation of the wrist using a wrist robot, Journal of Biomechanics, 2020, Vol. 108, Elsevier, p. 109897, DOI: 10.1016/J.JBIOMECH.2020.109897. Search in Google Scholar

Gallina A., Merletti R., Gazzoni M., Innervation zone of the vastus medialis muscle: position and effect on surface EMG variables, Physiological Measurement, 2013, Vol. 34, IOP Publishing, No. 11, 1411, DOI: 10.1088/0967-3334/34/11/1411. Search in Google Scholar

Gorwa J., Kabaciński J., Murawa M., Fryzowicz A., Which of the five classical ballet positions is the most demanding for the dancer’s body? An electromyography-based study to determine muscular activity, Acta Bioeng. Biomech., 2020, Vol. 22, No. 4, 1–22, DOI: 10.37190/ABB-01650-2020-02. Search in Google Scholar

Grałiela-Flavia D., Flavia R., Emilia G., Original Research Surface Electromyography in Biomechanics: Applications and Signal Analysis Aspects, JPES Journal of Physical Education an Sport, 2009, Vol. 25, No. 4, 1–10. Search in Google Scholar

Granata K.P., Padua D.A., Abel M.F., Repeatability of surface EMG during gait in children, Gait and Posture, 2005, Vol. 22, Elsevier, No. 4, 346–350, DOI: 10.1016/J.GAITPOST.2004.11.014. Search in Google Scholar

Hägg G.M., Luttmann A., Jäger M., Methodologies for evaluating electromyographic field data in ergonomics, Journal of Electromyography and Kinesiology, 2000, Vol. 10, Elsevier, No. 5, 301–312, DOI: 10.1016/S1050-6411(00)00022-5. Search in Google Scholar

Hunter I., Seeley M.K., Hopkins J.T., Carr C., Franson J.J., EMG activity during positive-pressure treadmill running, Journal of Electromyography and Kinesiology, 2014, Vol. 24, Elsevier, No. 3, 348–352, DOI: 10.1016/J.JELEKIN.2014.01.009. Search in Google Scholar

Iwamoto Y., Kawakami W., Miyoshi F., Takeuchi R., Takeuchi Y., Motohiro Y., Wen L., Takahashi M., Muscle co-contraction of ankle joint in young adults in functional reach test at different distances, Acta Bioeng. Biomech., 2021, Vol. 23, No. 2, 1–2, DOI: 10.37190/ABB-01779-2020-01. Search in Google Scholar

Jabłońska M., Mączyński J., Fryzowicz A., Ogurkowska M.B., Electromyographic assessment of muscle fatigue after the Biering– Sorensen test in subjects with low back pain who underwent the McKenzie treatment, Acta Bioeng. Biomech., 2021, Vol. 23, No. 3, 87–96, DOI: 10.37190/ABB-01823-2021-03. Search in Google Scholar

Kazamel M., Warren P.P., History of electromyography and nerve conduction studies: A tribute to the founding fathers, Journal of Clinical Neuroscience, 2017, Vol. 43, Churchill Livingstone, 54–60, DOI: 10.1016/J.JOCN.2017.05.018. Search in Google Scholar

Kholinne E., Zulkarnain R.F., Sun Y.C., Lim S.J., Chun J.M., Jeon I.H., The different role of each head of the triceps brachii muscle in elbow extension, Acta Orthopaedica et Traumatologica Turcica, 2018, Vol. 52, Turkish Association of Orthopaedics and Traumatology, No. 3, 201–205, DOI: 10.1016/J.AOTT.2018.02.005. Search in Google Scholar

Kopeć K., Bereza P., Sobota G., Hajduk G., Kusz D., The electromyographic activity characteristics of the gluteus medius muscle before and after total hip arthroplasty, Acta Bioeng. Biomech., 2021, Vol. 23, No. 1, 187–195, DOI: 10.37190/ABB-01753-2020-02. Search in Google Scholar

Krzysztofik M., Jarosz J., Matykiewicz P., Wilk M., Bialas M., Zajac A., Golas A., A comparison of muscle activity of the dominant and non-dominant side of the body during low versus high loaded bench press exercise performed to muscular failure, Journal of Electromyography and Kinesiology, 2021, Vol. 56, Elsevier, 102513, DOI: 10.1016/J.JELEKIN.2020.102513. Search in Google Scholar

Lattimer L.J., Lanovaz J.L., Farthing J.P., Madills., Kim S., Arnold C., Upper limb and trunk muscle activation during an unexpected descent on the outstretched hands in young and older women, Journal of Electromyography and Kinesiology, 2016, Vol. 30, Elsevier, 231–237, DOI: 10.1016/J.JELEKIN.2016.08.001. Search in Google Scholar

Leedham J.S., Dowling J.J., Force-length, torque-angle and EMG-joint angle relationships of the human in vivo biceps brachii, European Journal of Applied Physiology and Occupational Physiology, 1995, 70, 5, Vol. 70, Springer, No. 5, 421–426, DOI: 10.1007/BF00618493. Search in Google Scholar

Linnamo V., Strojnik V., Komi P.V., Maximal force during eccentric and isometric actions at different elbow angles, European Journal of Applied Physiology, 2006, Vol. 96, Springer, No. 6, 672–678, DOI: 10.1007/S00421-005-0129-X/FIGURES/5. Search in Google Scholar

Merletti R., Botter A., Troiano A., Merlo E., Minetto M.A., Technology and instrumentation for detection and conditioning of the surface electromyographic signal: state of the art., Clin. Biomech. (Bristol, Avon) (2009), No. 2, 122–134, DOI: 10.1016/J.CLINBIOMECH.2008.08.006. Search in Google Scholar

Milner_Brown H.S., Stein R.B., The relation between the surface electromyogram and muscular force, The Journal of Physiology, 1975, Vol. 246, Wiley-Blackwell, No. 3, 549, DOI: 10.1113/JPHYSIOL.1975.SP010904. Search in Google Scholar

Oliveira A.S., Gizzi L., Ketabi S., Farina D., Kersting U.G., Modular Control of Treadmill vs. Overground Running, PLOS ONE, 2016, Vol. 11, Public Library of Science, No. 4, e0153307, DOI: 10.1371/JOURNAL.PONE.0153307. Search in Google Scholar

Park S.Y., Yoo W.G, An D.H., Oh J.S., Lee J.H., Choi B.R., Comparison of isometric exercises for activating latissimus dorsi against the upper body weight, Journal of Electromyography and Kinesiology, 2015, Vol. 25, Elsevier, No. 1, 47–52, DOI: 10.1016/J.JELEKIN.2014.09.001. Search in Google Scholar

Peters K.M., Kelly V.E., Chang T., Weismann M.C., Westcott McCoy ., Steele K.M., Muscle recruitment and coordination during upper-extremity functional tests, Journal of Electromyography and Kinesiology, 2018, Vol. 38, Elsevier, 143–150, DOI: 10.1016/J.JELEKIN.2017.12.002. Search in Google Scholar

Plattner K., Baumeister J., Lamberts R.P., Lambert M.I., Dissociation in changes in EMG activation during maximal isometric and submaximal low force dynamic contractions after exercise-induced muscle damage, Journal of Electromyography and Kinesiology, 2011, Vol. 21, Elsevier, No. 3, 542–550, DOI: 10.1016/J.JELEKIN.2011.01.008. Search in Google Scholar

Quittmann O.J., Meskemper J., Albracht K., Abel T., Foitschik T., Strüder H.K., Normalising surface EMG of ten upper-extremity muscles in handcycling: Manual resistance vs. sport-specific MVICs, Journal of Electromyography and Kinesiology, 2020, Vol. 51, Elsevier, No. February, 102402, DOI: 10.1016/j.jelekin.2020.102402. Search in Google Scholar

Ren L., Qian Z., Finite element modeling in the musculo -skeletal system: Generic overview, Woodhead Publishing Limited, 2014, ISBN 9780857096739, DOI: 10.1533/9780857096739.1.12. Search in Google Scholar

Roman-Liu D., Tokarski T., EMG of arm and forearm muscle activities with regard to handgrip force in relation to upper limb location, Acta Bioeng. Biomech., 2002, Vol. 4, No. 2. Search in Google Scholar

Sacco I.C.N., Sartor C.D., Cacciari L.P., Onodera A.N., Dinato R.C., Pantaleão E., Matias A.B., Cezário F.G., Effect of a rocker non-heeled shoe on EMG and ground reaction forces during gait without previous training, Gait and Posture, 2012, Vol. 36, Elsevier, No. 2, 312–315, DOI: 10.1016/J.GAITPOST.2012.02.018. Search in Google Scholar

Sadeghi H., Allard P., Prince F., Labelle H., Symmetry and limb dominance in able-bodied gait: a review, Gait and Posture, 2000, Vol. 12, Elsevier, No. 1, 34–45, DOI: 10.1016/S0966-6362(00)00070-9. Search in Google Scholar

Schwartz C., Tubez F., Wang F.C., Croisier J.L., Brüls O., Denoël V., Forthomme B., Normalizing shoulder EMG: An optimal set of maximum isometric voluntary contraction tests considering reproducibility, Journal of Electromyography and Kinesiology, 2017, Vol. 37, Elsevier, 1–8, DOI: 10.1016/J.JELEKIN.2017.08.005. Search in Google Scholar

Sepp L.A., Nelson-Wong E., Baum B.S., Silverman A.K., Running-specific prostheses reduce lower-limb muscle activity compared to daily-use prostheses in people with unilateral transtibial amputations, Journal of Electromyography and Kinesiology, 2020, Vol. 55, Elsevier, 102462. Search in Google Scholar

Silva N.S., de Almeida P.H.T.Q., Mendes P.V.B., Komino C.S.M., Jùnior J.M.N., Da Cruz D.M.C., Electromyographic Activity of the Upper Limb in Three Hand Function Tests, Hong Kong Journal of Occupational Therapy: HKJOT, 2017, Vol. 29, SAGE Publications Sage UK, London, England, No. 1, 10–18, DOI: 10.1016/J.JELEKIN.2020.102462. Search in Google Scholar

Staudenmann D., Roeleveld K., Stegeman D.F., van Dieen J.H., Methodological aspects of SEMG recordings for force estimation – A tutorial and review, Journal of Electromyography and Kinesiology, 2010, Vol. 20, Elsevier, No. 3, 375–387, DOI: 10.1016/J.JELEKIN.2009.08.005. Search in Google Scholar

Strazza A., Mengarelli A., Fioretti S., Burattini L., Agostini V., Knaflitz M., Di Nardo F., Surface-EMG analysis for the quantification of thigh muscle dynamic co-contractions during normal gait, Gait and Posture, 2017, Vol. 51, Elsevier, 228–233, DOI: 10.1016/J.GAITPOST.2016.11.003. Search in Google Scholar

Toyota Motor Corporation: Documentation Total Human Model for Safety (THUMS) AM50 Pedestrian/Occupant Model, 2010, 1–73. Search in Google Scholar

Valentin S., Zsoldos R.R., Surface electromyography in animal biomechanics: A systematic review, Journal of Electromyography and Kinesiology, 2016, Vol. 28, Elsevier, 167–183, DOI: 10.1016/J.JELEKIN.2015.12.005. Search in Google Scholar

Volpe D., Spolaor F., Sawacha Z., Guiotto A., Pavan D., Bakdounes L., Urbani V., Frazzitta G., Muscular activation changes in lower limbs after underwater gait training in Parkinson’s disease: A surface EMG pilot study, Gait and Posture, 2020, Vol. 80, Elsevier, 185–191, DOI: 10.1016/J.GAITPOST.2020.03.017. Search in Google Scholar

Wagner K.E., Nolasco L.A., Morgenroth D.C., Gates D.H., Silverman A.K., The effect of lower-limb prosthetic alignment on muscle activity during sit-to-stand, Journal of Electromyography and Kinesiology, 2020, Vol. 51, Elsevier, 102398, DOI: 10.1016/J.JELEKIN.2020.102398. Search in Google Scholar