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Fundamentals of Biomechanics

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266 FUNDAMENTALS OF BIOMECHANICS<br />

patterns in healthy individuals during recumbent<br />

cycling. Clinical <strong>Biomechanics</strong>, 17, 123–129.<br />

Grieco, A., Molteni, G., DeVito, G., & Sias, N.<br />

(1998). Epidemiology <strong>of</strong> musculoskeletal<br />

disorders due to biomechanical overload.<br />

Ergonomics, 41, 1253–1260.<br />

Griffin, L. Y., Agel, J., Albohm, M. J., et al. (2000).<br />

Noncontact anterior cruciate ligament injuries:<br />

Risk factors and prevention strategies.<br />

Journal <strong>of</strong> the American Academy <strong>of</strong> Orthopaedic<br />

Surgeons, 8, 141–150.<br />

Griffiths, R. I. (1989). The mechanics <strong>of</strong> the medial<br />

gastrocnemius muscle in the freely hopping<br />

wallaby. Journal <strong>of</strong> Experimental Biology,<br />

147, 439–456.<br />

Griffiths, R. I. (1991). Shortening <strong>of</strong> muscle fibers<br />

during stretch <strong>of</strong> the active cat medial gastrocnemius<br />

muscle: The role <strong>of</strong> tendon compliance.<br />

Journal <strong>of</strong> Physiology (London), 436,<br />

219–236.<br />

Gruen, A. (1997). <strong>Fundamentals</strong> <strong>of</strong> videography—A<br />

review. Human Movement Science,<br />

16, 155–187.<br />

Gulch, R. W. (1994). Force–velocity relations in<br />

human skeletal muscle. International Journal<br />

<strong>of</strong> Sports Medicine, 15, S2–S10.<br />

Hadorn, D. C., Baker, D., Hodges, J. S., & Hicks,<br />

N. (1996). Rating the quality <strong>of</strong> evidence for<br />

clinical practice guidelines. Journal <strong>of</strong> Clinical<br />

Epidemiology, 49, 749–754.<br />

Hagen, K. B., Hallen, J., & Harms-Ringdahl, K.<br />

(1993). Physiological and subjective responses<br />

to maximal repetitive lifting employing<br />

stoop and squat technique. European<br />

Journal <strong>of</strong> Applied Physiology, 67,<br />

291–297.<br />

Hakkinen, K., Komi, P., & Alen, M. (1985). Effect<br />

<strong>of</strong> explosive type strength training on isometric<br />

force– and relaxation–time, electromyographic<br />

and muscle fibre characteristics<br />

<strong>of</strong> leg extensor muscles. Acta Physiologiica<br />

Scandinavica, 125, 587–600.<br />

Hamill, J., & Knutzen, K. M. (1995). Biomechanical<br />

basis <strong>of</strong> human movement. Baltimore:<br />

Williams & Wikins.<br />

Harman, E. A., Rosenstein, M. T., Frykman,<br />

P. N., & Rosenstein, R. M. (1990). The effects<br />

<strong>of</strong> arm and countermovement on vertical<br />

jumping. Medicine and Science in Sports and<br />

Exercise, 22, 825–833.<br />

Harris, J. C. (1993). Using kinesiology: A comparison<br />

<strong>of</strong> applied veins in the subdisciplines.<br />

Quest, 45, 389–412.<br />

Hatze, H. (1974). The meaning <strong>of</strong> the term: “<strong>Biomechanics</strong>.”<br />

Journal <strong>of</strong> <strong>Biomechanics</strong>, 7,<br />

189–190.<br />

Hatze, H. (1993). The relationship between the<br />

coefficient <strong>of</strong> restitution and energy losses<br />

in tennis rackets. Journal <strong>of</strong> Applied <strong>Biomechanics</strong>,<br />

9, 124–142.<br />

Hatze, H. (2000). The inverse dynamics problem<br />

<strong>of</strong> neuromuscular control. Biological Cybernetics,<br />

82, 133–141.<br />

Hawkins, D., & Metheny, J. (2001). Overuse injuries<br />

in youth sports: Biomechanical considerations.<br />

Medicine and Science in Sports<br />

and Exercise, 33, 1701–1707.<br />

Hay, J. G. (1987). A bibliography <strong>of</strong> biomechanics literature<br />

(5th ed.). Iowa City: University <strong>of</strong><br />

Iowa Press.<br />

Hay, J. G. (1993). The biomechanics <strong>of</strong> sports techniques<br />

(4th. ed.). Englewood Cliffs, NJ: Prentice-Hall.<br />

Hay, J. G. (2000). The biomechanics <strong>of</strong> sport techniques,<br />

Englewood Cliffs, NJ: Prentice-Hall.<br />

Hay, J. G., & Reid, J. G. (1982). Anatomy, mechanics,<br />

and human motion (2nd ed.). Englewood<br />

Cliffs, NJ: Prentice-Hall.<br />

Hay, J. G., Vaughan, C. L., & Woodworth, G. G.<br />

(1981). Technique and performance: Identifying<br />

the limiting factors. In A. Morecki<br />

(Ed.), <strong>Biomechanics</strong> VII-B (pp. 511–520). Baltimore:<br />

University Park Press.<br />

Hay, J. G., Andrews, J. G., Vaughan, C. L., &<br />

Ueya, K. (1983). Load, speed and equipment<br />

effects in strength-training exercises.<br />

In H. Matsui & K. Kobayashi (Eds.), <strong>Biomechanics</strong><br />

III-B (pp. 939–950). Champaign, IL:<br />

Human Kinetics.<br />

Hay, J. G., Miller, J. A., & Canterna, R. W. (1986).<br />

The techniques <strong>of</strong> elite male long jumpers.<br />

Journal <strong>of</strong> <strong>Biomechanics</strong>, 19, 855–866.<br />

Hayes, W. C. (1986). Bone mechanics: From tissue<br />

mechanical properties to an assessment<br />

<strong>of</strong> structural behavior. In G. W. Schmid-<br />

Schonbein, S. L.-Y. Woo, & B. W. Zweifach<br />

(Eds.), Frontiers in biomechanics (pp.<br />

196–209). New York: Springer-Verlag.<br />

Heckman, C. J., & Sandercock, T. G. (1996). From<br />

motor unit to whole muscle properties dur-

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