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Bazett-Jones D.M., Cobb S.C., Joshi M.N., Cashin S.E., Earl J.E., Normalizing Hip Muscle Strength: Establishing Body-Size-Independent Measurement, Arch. Phys. Med. Rehabil., 2011, 92 (1), 76–82, DOI: 10.1016/j.apmr.2010.08.020.Search in Google Scholar
Bloom N., Cornbleet S.L., Hip rotator strength in healthy young adults measured in hip, flexion and extension by using a hand-held dynamometer, PMR, 2014, 6 (12), 1137–1142, DOI: 10.1016/j.pmrj.2014.06.002.Search in Google Scholar
Bobowik P., Mańka J., Jaskulski K., Kaczmarczyk K., Hip joint mobility in relation to measurement position, gender and limb dominance, Acta Bioeng. Biomech., 2022, 24 (2), 65–73, DOI: 10.37190/ABB-02044-2022-01.Search in Google Scholar
de Sousa Valente J., The Pharmacology of Pain Associated With the Monoiodoacetate Model of Osteoarthritis, Front. Pharmacol., 2019, 18 (10), 974, DOI: 10.3389/fphar.2019.00974.Search in Google Scholar
Dehghan F., Haerian B.S., Muniandy S., Yusof A., Dragoo J.L., Salleh N., The effect of relaxin on the musculoskeletal system, Scand. J. Med. Sci. Sports, 2014, 24 (4), e220-9, DOI: 10.1111/sms.12149.Search in Google Scholar
Desmyttere G., Gaudet S., Begon M., Test-retest reliability of a hip strength assessment system in varsity soccer players, Phys. Ther. Sport, 2019, 37, 138–143, DOI: 10.1016/j.ptsp.2019.03.013.Search in Google Scholar
Gradoz M.C., Bauer L.E., Grindstaff T.L., Bagwell J.J., Reliability of hip rotation range of motion in supine and seated positions, J. Sport Rehabil., 2018, 27 (4), 1–4, DOI: 10.1123/jsr.2017-0243.Search in Google Scholar
Guex K., Gojanovic B., Millet G.P., Influence of hip-flexion angle on hamstrings isokinetic activity in sprinters, J. Athl. Train., 2012, 47 (4), 390–395, DOI: 10.4085/1062-6050-47.4.04.Search in Google Scholar
Haizlip K.M., Harrison B.C., Leinwand L.A., Sex-based differences in skeletal muscle kinetics and fiber-type composition, Physiology, 2015, 30 (1), 30–39, DOI: 10.1152/physiol.00024.2014.Search in Google Scholar
Hallaçeli H., Uruç V., Uysal H.H., Özden R., Hallaçeli Ç., Soyuer F., Parpucu T.I., Yengil E., Cavlak U., Normal hip, knee and ankle range of motion in the Turkish population, Acta Orthop. Traumatol. Turc., 2014, 48 (1), 37–42, DOI: 10.3944/AOTT.2014.3113.Search in Google Scholar
Han H., Kubo A., Kurosawa K., Maruic H.H., Maruya M.H., Hip rotation range of motion in sitting and prone positions in healthy Japanese adults, J. Phys. Ther. Sci., 2015, 27 (2), 441–445, DOI: 10.1589/jpts.27.441.Search in Google Scholar
Handelsman D.J., Hirschberg A.L., Bermon S., Circulating testosterone as the hormonal basis of sex differences in athletic performance, Endocr. Rev., 2018, 39 (5), 803–829, DOI: 10.1210/er.2018-00020.Search in Google Scholar
Hogervorst T., Vereecke E.E., Evolution of the human hip. Part 2: Muscling the double extension, Hip Preserv. Surg., 2014, 2 (1), 3–14, DOI: 10.1093/jhps/hnu014.Search in Google Scholar
Hoglund L.T., Wong A.L., Rickards C., The impact of sagittal plane hip position on isometric force of hip external rotator and internal rotator muscles in healthy young adults, Int. J. Sports Phys. Ther., 2014, 9 (1), 58–67.Search in Google Scholar
Ishigaki E.Y., Ramos L.G., Carvalho E.S., Lunardi A.C., Effectiveness of muscle strengthening and description of protocols for preventing falls in the elderly: A systematic review, Braz. J. Phys. Ther., 2014, 18 (2), 111–118, DOI: 10.1590/s1413-35552012005000148.Search in Google Scholar
Johnson S., Hoffman M., Isometric hip-rotator torque production at varying degrees of hip flexion, J. Sport Rehabil., 2010, 19 (1), 12–20, DOI: 10.1123/jsr.19.1.12.Search in Google Scholar
Kapandji A.I., The Physiology of the Joints. Vol. 2. The Lower Limb, Handspring Publishing Limited, 2019.Search in Google Scholar
Kellis E., Ellinoudis A., Kofotolis N., Effect of hip flexion angle on the hamstring to quadriceps strength ratio, Sports, 2019, 7 (2), 43, DOI: 10.3390/sports7020043.Search in Google Scholar
Khayambashi K., Ghoddosi N., Straub R.K., Powers C.M., Hip Muscle Strength Predicts Noncontact Anterior Cruciate Ligament Injury in Male and Female Athletes: A Prospective Study, Am. J. Sports Med., 2016, 44 (2), 355–361, DOI: 10.1177/0363546515616237.Search in Google Scholar
Kurki H., Pelvic dimorphism in relation to body size and body size dimorphism in humans, J. Hum. Evol., 2011, 61 (6), 631–643, DOI: 10.1016/j.jhevol.2011.07.006.Search in Google Scholar
Mayne E., Memarzadeh A., Raut P., Arora A., Khanduja V., Measuring hip muscle strength in patients with femoroacetabular impingement and other hip pathologies: A systematic review, Bone Joint Res., 2017, 6 (1), 66–72, DOI: 10.1302/2046-3758.61.BJR-2016-0081.Search in Google Scholar
McCann R.S., Bolding B.A., Terada M., Kosik K.B., Crossett I.D., Gribble P.A., Isometric Hip Strength and Dynamic Stability of Individuals With Chronic Ankle Instability, J. Athl. Train, 2018, 53 (7), 672–678, DOI: 10.4085/1062-6050-238-17.Search in Google Scholar
McGill S., Ultimate Back Fitness and Performance, 6th Ed., Stuart McGill, 2017.Search in Google Scholar
Meyer C., Corten K., Wesseling M., Peers K., Simon J.P., Jonkers I., Desloovere K., Test-retest reliability of innovated strength tests for hip muscles, PLoS One, 2013, 8 (11), e81149, DOI: 10.1371/journal.pone.0081149.Search in Google Scholar
Pohl M.B., Patel C., Wiley J.P., Ferber R., Gait biomechanics and hip muscular strength in patients with patellofemoral osteoarthritis, Gait Posture, 2013, 37 (3), 440–444, DOI: 10.1016/j.gaitpost.2012.08.017.Search in Google Scholar
Prendergast N., Hopper D., Finucane M., Grisbrook T.L., Hip adduction and abduction strength profiles in elite, subelite and amateur Australian footballers, J. Sci. Med. Sport, 2016, 19 (9), 766–770, DOI: 10.1016/j.jsams.2015.12.005.Search in Google Scholar
Rathleff M.S., Rathleff C.R., Crossley K.M., Barton C.J., Is hip strength a risk factor for patellofemoral pain? A systematic review and meta-analysis, Br. J. Sports Med., 2014, 48 (14), 1088, DOI: 10.1136/bjsports-2013-093305.Search in Google Scholar
Sabharwal J., Joshi S., Chaturvedi R., Bagri M., Rani V., Effectiveness of neuromuscular exercises (NEMEX) in knee osteoarthritis: a systematic review with metaanalysis. Adv. Rehab., 2022, 36 (1), 33–40, DOI:10.5114/areh.2021.111588.Search in Google Scholar
Surgeons AAOO., Joint motion: method of measuring and recording, American Academy Orthopaedic Surgeon, 1965.Search in Google Scholar
Thorborg K., Bandholm T., Hölmich P., Hip- and kneestrength assessments using a hand-held dynamometer with external belt-fixation are inter-tester reliable, Knee Surg. Sports Traumatol. Arthrosc., 2013, 21 (3), 550–555, DOI: 10.1007/s00167-012-2115-2.Search in Google Scholar
Thorborg K., Serner A., Petersen J., Madsen T.M., Magnusson P., Hölmich P., Hip adduction and abduction strength profiles in elite soccer players: implications for clinical evaluation of hip adductor muscle recovery after injury, Am. J. Sports Med., 2011, 39 (1), 121–126, DOI: 10.1177/0363546510378081.Search in Google Scholar
Yamane M., Aoki M., Sasaki Y., Kawaji H., Understanding the Muscle Activity Pattern of the Hip Flexors during Straight Leg Raising in Healthy Subjects, Prog. Rehabil. Med., 2019, 4, 20190007, DOI: 10.2490/prm.20190007.Search in Google Scholar
Yoshizawa T., Higashi K., Katou T., Measuring hip flexor and extensor strengths across various postures using a fixed belt, J. Phys. Ther. Sci., 2017, 29 (4), 572–575, DOI: 10.1589/jpts.29.572.Search in Google Scholar