Shabani M. (2003). Motor development. Science Foundation. Tehran. 211-215.
Smith A, Howard J, Alcock N, Cater K. (2010). Going the distance: spatial scale of athletic experience affects the accuracy of path integration. Exp Brain Res. 206(1):93-8.
Piccardi L, Bianchini F, Nori R, Marani A, Lachini F, Guariglia C. (2014). Spatial location and pathway memory compared in the reaching vs. walking domains. Neuroscience Letters. 566(30): 226–230.
Arthur JC, Philbeck JW, Chichka D. (2009). Non-sensory inputs to angular path integration. J Vestib Res. 19:111–125.
Cratty BJ. (1986). perceptual and motor development in i nfants and children. 3rd ED. Prentice –hall, Englewood cliffs, NJ.
Durgin FH, Leonard-solis K, Masters O, Schmelz B Li Z. (2012). Expert performance by athletes in the verbal estimation of spatial extents does not alter their perceptual metric of space. I-Perception. 3: 357 – 367.
Schiff W, Oldak R. (1990). Accuracy of judging time to arrival: Effects of modality, trajectory, and gender. Journal of Experimental Psychology: Human Perception and Performance. 16: 303-316.
Rosenblum LD, Carello C, Pastore RE. (1987). Relative effectiveness of three stimulus variables for locating a moving sound source. Perception. 16: 175-186.
Davids k, button c, Bennett s. (2008). Dynamics of Skill acquisition: A Constraints-Led Approach. Human kinetics.
Ge´rin-Lajoie M, Ronsky J, Loitz-Ramage B, Robu I, Richards C, McFadyen B. (2007). Navigational strategies during fast walking: a comparison between trained athletes and non-athletes. Gait Posture. 26(4): 539–545.
Stefanucci J K, Proffitt D, Banton T, Epstein W. (2005). Distances appear different on hills. Perception & Psychophysics. 67 (6): 1060-1052.
Andre J, Rogers S. (2006). Using verbal and blind-walking distance estimates to investigate the two visual systems hypothesis. Perception & Psychophysics. 68: 353-361.
Witt JW, Proffitt DR. (2008). Action-Specific Influences on Distance Perception: A Role for Motor Simulation. Journal of Experimental Psychology: American Psychological Association Human Perception and Performance. 6)34): 1479–1492.
Philbeck JW, Woods AJ, kontra C, zdenkova P. (2010). A comparison of blindpulling and blindwalking as measures of perceived absolute distance. Behavior Research Methods. 42 (1): 148-160.
Daum SO, Hecht H. (2009). Distance estimation in vista space. Attention, Perception, & Psychophysics. 71 (5): 1127-1137.
Bergman J, Krau E, Munch A, Jungmann R, Oberfeld D, Hecht H. (2011). Locomotor and verbal distance judgments in action and vista space. Exp Brain Res.10: 110-121.
Norman JF, Adkins OC, Norman HF, Cox AG, Rogers CE. (2015). Aging and the visual perception of exocentric distance. Vision Research. 109: 52-58.
Mittelsteadt ML, Mittelsteadt H. (1980). Homing by path integration in a mammal. Naturwissenschaften. 67:566–567.
Losa M, Fusco A, Morone G, Paolucci S. (2012). Walking there: Environmental influence on walking-distance estimation. Behavioral Brain Research. 226: 124-132.
Abdolahzadeh K, Mohamadzadeh H, Dehganizade J. (2014). The Comparison of distance perception between athlete and non-athlete. Motor behavior. 2014; 6 (15) :73-86
Bredin J, Kerlirzin Y, Israël I. (2005). Path integration: is there a difference between athletes and non-athletes. Exp Brain Res. 167: 670–4.
Philbeck JW, Woods AD, Kontra C, Zdenkova P. (2010). A comparison of blindpulling and blindwalking as measures of perceived absolute distance. Behavior Research Methods. 42 (1): 148-160.
Mittelstaedt ML, Mittelstaedt H. (2001). Idiothetic navigation in humans: estimation of path length. Exp Brain Res. 139:318–332.
Logan D, Kiemel T, Dominici N, Cappellini G, Ivanenko Y, Lacquaniti F. (2010). The many roles of vision during walking. Exp Brain Res. 206: 337–350.
Creem-Regehr SH, Willemsen P, Gooch AA, Thompson WB. (2005). the influence of restricted viewing conditions on egocentric distance perception: Implications for real and virtual indoor environments. Perception. 34: 191-204.
Jeffery A, Sheena R. (2006). Using verbal and blind-walking distance estimates to investigate the two visual systems hypothesis. Perception & Psychophysics.68 (3): 353-361.
Hosseinimehr SH, Noraste AA. (2009). the role of proprioceptive information of leg muscles in guidance of locomotion pathways walking. Movement and Sport Science. 14 (2): 1-8.