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1) Burnett DR, Campbell-Kyureghyan NH, Cerrito PB, Quesada PM: Symmetry of ground reaction forces and muscle activity in asymptomatic subjects during walking, sit-to-stand, and stand-to-sit tasks. J Electro-myogr Kinesiol, 2011; 21: 610-615. 2) Dehail P, Bestaven E, Muller F, et al: Kinematic and electromyographic analysis of rising from a chair during a “Sit-to-Walk” task in elderly subjects: role of strength. Clin Biomech, 2007; 22: 1096-1103. 3) Neptune RR, Sasaki K, Kautz SA: The effect of walking speed on muscle function and mechanical energetics. Gait Posture, 2008; 28: 135-143. 4) Gross MM, Stevenson PJ, Charette SL, Pyka G, Marcus R: Effect of muscle strength and movement speed on the biomechanics of rising from a chair in healthy elderly and young women. Gait Posture, 1998; 8: 175-185. 5) Walaszek MC, Ransom AL, Capehart S, Pohl MB, Shapiro R, Bollinger LM: External loading alters trunk kinematics and lower extremity muscle activity in a distribution-specific manner during sitting and rising from a chair. J Electromyogr Kinesiol, 2017; 34: 102-108. 6) Roldán-Jiménez C, Bennett P, Cuesta-Vargas AI: Muscular activity and fatigue in lower-limb and trunk muscles during different sit-to-stand tests. PLoS One, 2015; 10: e0141675. 7) Ema R, Sakaguchi M, Kawakami Y: Thigh and psoas major muscularity and its relation to running mechanics in sprinters. Med Sci Sports Exerc, 2018; 50: 2085-2091. 8) Hu H, Meijer OG, van Dieën JH, et al: Is the psoas a hip flexor in the active straight leg raise? Eur Spine J, 2011; 20: 759-765. 9) Jiroumaru T, Kurihara T, Isaka T: Measurement of muscle length-related electromyography activity of the hip flexor muscles to determine individual muscle contributions to the hip flexion torque. Springerplus, 2014; 3: 624.10) Akima H, Saito A: Activation of quadriceps femoris including vastus intermedius during fatiguing dynamic knee extensions. Eur J Appl Physiol, 2013; 113: 2829-2840.11) Akima H, Tomita A, Ando R: Effect of knee joint angle on the neuromuscular activation of the quadriceps femoris during repetitive fatiguing contractions. J Electromyogr Kinesiol, 2019; 49: 102356. 12) Ema R, Sakaguchi M, Akagi R, Kawakami Y: Unique activation of the quadriceps femoris during single- and multi-joint exercises. Eur J Appl Physiol, 2016; 116: 1031-1041.13) Hug F, Vogel C, Tucker K, et al: Individuals have unique muscle activation signatures as revealed during gait and pedaling. J Appl Physiol, 2019; 127: 1165-1174.14) Maffiuletti NA, Lepers R: Quadriceps femoris torque and EMG activity in seated versus supine position. Med Sci Sports Exerc, 2003; 35: 1511-1516.15) Pincivero DM, Salfetnikov Y, Campy RM, Coelho AJ: Angle- and gender-specific quadriceps femoris muscle recruitment and knee extensor torque. J Biomech, 2004; 37: 1689-1697.16) Salzman A, Torburn L, Perry J: Contribution of rectus femoris and vasti to knee extension. An electromyo-graphic study. Clin Orthop Relat Res, 1993; 290: 236-243.17) Sayer TA, Hinman RS, Paterson KL, et al: Running- related muscle activation patterns and tibial accelera-tion across puberty. J Electromyogr Kinesiol, 2020; 50: 102381.18) Andersson E, Oddsson L, Grundström H, Thorstensson A: The role of the psoas and iliacus muscles for stability and movement of the lumbar spine, pelvis and hip. Scand J Med Sci Sports, 1995; 5: 10-16.19) Dörge HC, Andersen TB, Sørensen H, et al: EMG activity of the iliopsoas muscle and leg kinetics during the soccer place kick. Scand J Med Sci Sports, 1999; 9: 195-200.20) Juker D, McGill S, Kropf P, Steffen T: Quantitative intramuscular myoelectric activity of lumbar portions of psoas and the abdominal wall during a wide variety of tasks. Med Sci Sports Exerc, 1998; 30: 301-310.21) Keagy RD, Brumlik J, Bergan JL: Direct electromyog-raphy of the psoas major muscle in man. J Bone Joint Surg Am, 1966; 48: 1377-1382.22) Nachemson A: Electromyographic studies on the verte-bral portion of the psoas muscle; with special reference to its stabilizing function of the lumbar spine. Acta Orthop Scand, 1966; 37: 177-190.23) Park RJ, Tsao H, Claus A, Cresswell AG, Hodges PW: Recruitment of discrete regions of the psoas major and quadratus lumborum muscles is changed in specific sitting postures in individuals with recurrent low back pain. J Orthop Sports Phys Ther, 2013; 43: 833-840.24) Lieber RL: Skeletal Muscle Structure, Function, and Plasticity: The physiological basis of rehabilitation. 3rd ed. Netherlands: Wolters Kluwer, 2010.25) Neumann DA: Kinesiology of the musculoskeletal system. 3rd ed. Netherlands: Elsevier, 2016.26) Ward SR, Eng CM, Smallwood LH, Lieber RL: Are current measurements of lower extremity muscle architecture accurate? Clin Orthop Relat Res, 2009; 467: 1074-1082.27) Kumazaki T, Ehara Y, Sakai T: Anatomy and physi-ology of hamstring injury. Int J Sports Med, 2012; 33: 950-954.28) Kumazaki T, Sakai T: High risk of muscle strain in the rectus femoris muscle: anatomical and physiological analysis. Juntendo Medical Journal, 2016; 62: 392-398.29) Ward SR, Lieber RL: Density and hydration of fresh and fixed human skeletal muscle. J Biomech, 2005; 38: 2317-232030) Powell PL, Roy RR, Kanim P, Bello MA, Edgerton VR: Predictability of skeletal muscle tension from architec-tural determinations in guinea pig hindlimbs. J Appl Physiol Respir Environ Exerc Physiol, 1984; 57: 1715-1721.31) Sacks RD, Roy RR: Architecture of the hind limb muscles of cats: functional significance. J Morphol, 1982; 173: 185-195.32) Wickiewicz TL, Roy RR, Powell PL, Edgerton VR: Muscle architecture of the human lower limb. Clin Orthop Relat Res, 1983; 179: 275-283.33) Bogduk N, Pearcy M, Hadfield G: Anatomy and biome-chanics of psoas major. Clin Biomech, 1992; 7: 109-119.34) Del Vecchio A, Negro F, Falla D, Bazzucchi I, Farina D, Felici F: Higher muscle fibre conduction velocity and early rate of torque development in chronically strength trained individuals. J Appl Physiol (1985), 2018. [Online ahead of print] https://doi.org/10.1152/361References

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