Grouios G, Kollias N, Tsorbatzoudis H, Alexandris K. Over-representation of mixed-footedness among professional and semi-professional soccer players: an innate superiority or a strategic advantage? J Hum Mov Stud. 2002;42:19–29.
Grouios G. Motoric dominance and sporting excellence: training versus heredity. Percept Mot Skills. 2017;98:53–66.
Grouios G. Right hand advantage in visually guided reaching and aiming movements: brief review and comments. Ergonomics. 2006;49:1013–7.
Grouios G, Tsorbatzoudis H, Alexandris K, Barkoukis V. Do left-handed competitors have an innate superiority in sports? Percept Mot Skills. 2000;90:1273–82.
Annett M. The distribution of manual asymmetry. Br J Psychol. 1972;63:343–58.
Falk D. Brain lateralization in primates and its evolution in hominids. Am J Phys Anthropol. 1987;30:107–25.
Corballis MC, Badzakova-Trajkov G, Häberling IS. Right hand, left brain: genetic and evolutionary bases of cerebral asymmetries for language and manual action. Wiley Interdiscip Rev Cogn Sci. 2012;3:1–17.
McManus C. Right hand, left hand: the origins of asymmetry in brains, bodies, atoms and cultures. Cambridge, MA: Harvard University Press; 2002.
Grouios G. Footedness as a potential factor that contributes to the causation of corn and callus formation in lower extremities of physically active individuals. Foot. 2005;15:154–62.
Grouios G, Hatzitaki V, Kollias N, Koidou I. Investigating the stabilizing and mobilizing features of footedness. Laterality. 2009;14:362–80.
Gabbard C, Hart S. A question of foot dominance. J Gen Psychol. 1996;123:289–96.
Hart S, Gabbard C. Examining the stabilizing characteristics of footedness. Laterality. 1997;2:17–26.
Hart S, Gabbard C. Examining the mobilizing feature of footedness. Percept Mot Skills. 1998;86:1339–42.
Carey DP, Smith DT, Martin D, Smith G, Skriver J, Rutland A, et al. The bi-pedal ape: plasticity and asymmetry in footedness. Cortex. 2009;45:650–61.
Grouios G, Kollias N, Koidou I, Poderi A. Excess of mixed-footedness among professional soccer players. Percept Mot Skills. 2002;94:695–9.
Grouios G, Koidou I, Tsorbatzoudis H, Alexandris K. Handedness in sport. J Hum Mov Stud. 2002;43:347–61.
Auerbach B, Ruff C. Limb bone bilateral asymmetry: variability and commonality among modern humans. J Hum Evol. 2006;50:203–18.
Latimer HB, Lowrance EW. Bilateral asymmetry in weight and in length of human bones. Anat Rec. 1965;152:217–24.
Schultz AH. Proportions, variability and asymmetries of the long bones of the limbs and the clavicles in man and apes. Hum Biol. 1937;9:281–328.
Lazenby R. Skeletal biology, functional asymmetry and the origins of “Handedness.” J Theor Biol. 2002;218:129–38.
Steele J. Handedness in past human populations: skeletal markers. Laterality. 2000;5:193–220.
Steele J. Skeletal indicators of handedness. In: Cox M, Mays S, editors. Human osteology in archaeology and forensic science. New York: Cambridge University Press; 2000. p. 307–23.
Steele J, Mays S. Handedness and directional asymmetry in the long bones of the human upper limb. Int J Osteoarchaeol. 1995;5:39–49.
Ruff C. Biomechanical analyses of archaeological human skeletons. In: Katzenberg MA, Saunders SR, editors. Biological Anthropology of the Human Skeleton. 2nd ed. New Jersey: Willey-Liss; 2008. p. 183–206.
Shaw C. Is, “hand preference” coded in the hominin skeleton? An in-vivo study of bilateral morphological variation. J Hum Evol. 2011;61:480–7.
Auerbach B, Raxter M. Patterns of clavicular bilateral asymmetry in relation to the humerus: variation among humans. J Hum Evol. 2008;54:663–74.
Currey JD. The structure of bone tissue. In: Currey JD, editor. Bones: structure and mechanics. Princeton: Princeton University Press; 2002. p. 3–26.
Lanyon L, Skerry T. Perspective: postmenopausal osteoporosis as a failure of bone’s adaptation to functional loading: a hypothesis*. J Bone Miner Res. 2001;16:1937–47.
Pearson OM, Lieberman DE. The aging of Wolff’s “law”: ontogeny and responses to mechanical loading in cortical bone. Am J Phys Anthropol. 2004;125:63–99.
Kanchan T, Kumar TSM, Kumar GP, Yoganarasimha K. Skeletal asymmetry. J Forensic Leg Med. 2008;15:177–9.
Ruff C, Holt B, Trinkaus E. Who’s afraid of the big bad Wolff?: “Wolff’s law” and bone functional adaptation. Am J Phys Anthropol. 2006;129:484–98.
Sahin A, Dane S, Seven B, Akar S, Yildirim S. Differences by sex and handedness in right and left femur bone mineral densities. Percept Mot Skills. 2009;109:824–30.
Taaffe D, Lewis B, Marcus R. Quantifying the effect of hand preference on upper limb bone mineral and soft tissue composition in young and elderly women by dual-energy X-ray absorptiometry. Clin Physiol. 1994;14:393–404.
Tsorlakis N, Grouios G, Tsorbatzoudis H, Hatzitaki V. Footedness related differences in femoral bone mineral density in elderly women with osteoporosis. Int J Neurosci. 2020;130(1):97–102.
Frost H. Skeletal structural adaptations to mechanical usage (SATMU): 1. Redefining Wolff’s law: the bone modeling problem. Anat Rec. 1990;226:403–13.
Frost H. Skeletal structural adaptations to mechanical usage (SATMU): 2. Redefining Wolff’s law: the remodeling problem. Anat Rec. 1990;226:414–22.
Huiskes R. If bone is the answer, then what is the question? J Anat. 2000;197:145–56.
Robling AG, Burr DB, Turner CH. Partitioning a daily mechanical stimulus into discrete loading bouts improves the osteogenic response to loading. J Bone Miner Res. 2000;15:1596–602.
Wolff J. Das Gesetz der Transformation der Knochen. Berlin: A. Hirschwald; 1892.
Wolff J. The law of bone remodelling. Berlin: Springer Verlag; 1986.
Bertram JEA, Swartz SM. The ‘law of bone transformation’: a case of crying Wolff? Biol Rev. 1991;66:245–73.
Cowin SC. Bone mechanics handbook. 2nd ed. Boca Raton: CRC Press; 2001.
Frost H. Bone, “mass” and the “mechanostat”: a proposal. Anat Rec. 1987;219:1–9.
Frost H. Changing concepts in skeletal physiology: Wolff’s Law, the Mechanostat, and the Utah paradigm? Am J Hum Biol. 1998;10:599–605.
Frost H. From Wolff’s law to the mechanostat: a new “face” of physiology. J Orthop Sci. 1998;3:282–6.
Frost H. Bone’s mechanostat: a 2003 update. Anat Rec A Discov Mol Cell Evol Biol. 2003;275:1081–101.
Frost H. A 2003 update of bone physiology and Wolff’s law for clinicians. Angle Orthod. 2004;74:3–15.
Jee W. Frost’s Legacy. The Utah paradigm of skeletal physiology. Niigata J Heal Welf. 2006;6:1–9.
Jee W. Principles in bone physiology. J Musculoskelet Neuronal Interact. 2000;1:11–3.
Kohrt WM, Barry DW, Schwartz RS. Muscle forces or gravity: what predominates mechanical loading on bone? Med Sci Sports Exerc. 2009;41:2050–5.
Beck BR. Muscle forces or gravity–what predominates mechanical loading on bone? Introduction Med Sci Sports Exerc. 2009;41:2033–6.
Robling AG. Is bone’s response to mechanical signals dominated by muscle forces? Med Sci Sports Exerc. 2009;41:2044–9.
MacIntyre NJ, Adachi JD, Webber CE. In vivo detection of structural differences between dominant and nondominant radii using peripheral quantitative computed tomography. J Clin Densitom. 1999;2:413–22.
Chilibeck PD, Davison KS, Sale DG, Webber CE, Faulkner RA. Effect of physical activity on bone mineral density assessed by limb dominance across the lifespan. Am J Hum Biol. 2000;12:633–7.
Akar S, Sivrikaya H, Canikli A, Varoglu E. Lateralized mineral content and density in distal forearm bones in right-handed men and women: relation of structure to function. Int J Neurosci. 2002;112:301–11.
Lekamwasam S, Rodrigo M, de Silva KIS, Munidasa D. Comparison of phalangeal bone mineral content and density between the dominant and non-dominant sides. Ceylon Med J. 2005;50:149–51.
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