Fundamentals of BiomechanicsSpringer Science & Business Media, 2003 - 310 pagine Fundamentals of Biomechanics introduces the exciting world of how human movement is created and how it can be improved. Teachers, coaches and physical therapists all use biomechanics to help people improve movement and decrease the risk of injury. The book presents a comprehensive review of the major concepts of biomechanics and summarizes them in nine principles of biomechanics. Fundamentals of Biomechanics concludes by showing how these principles can be used by movement professionals to improve human movement. Specific case studies are presented in physical education, coaching, strength and conditioning, and sports medicine. |
Sommario
IV | 3 |
V | 5 |
VII | 9 |
VIII | 11 |
IX | 12 |
X | 13 |
XI | 14 |
XII | 15 |
C | 149 |
CII | 153 |
CIII | 155 |
CIV | 158 |
CV | 162 |
CVI | 163 |
CVII | 164 |
CIX | 165 |
XIII | 16 |
XV | 18 |
XVII | 20 |
XXI | 22 |
XXII | 23 |
XXIII | 25 |
XXIV | 29 |
XXVI | 30 |
XXVII | 35 |
XXVIII | 36 |
XXX | 37 |
XXXIII | 39 |
XXXIV | 41 |
XXXV | 42 |
XXXVI | 43 |
XXXVII | 46 |
XXXVIII | 49 |
XXXIX | 51 |
XL | 52 |
XLI | 53 |
XLIV | 56 |
XLV | 60 |
XLVII | 63 |
XLVIII | 65 |
L | 66 |
LII | 67 |
LIII | 69 |
LIV | 70 |
LVI | 71 |
LVII | 72 |
LVIII | 75 |
LIX | 76 |
LX | 77 |
LXI | 79 |
LXIII | 84 |
LXIV | 86 |
LXV | 88 |
LXVI | 92 |
LXVII | 94 |
LXIX | 95 |
LXX | 98 |
LXXI | 99 |
LXXII | 100 |
LXXIII | 101 |
LXXV | 102 |
LXXVI | 105 |
LXXVII | 107 |
LXXVIII | 111 |
LXXIX | 113 |
LXXX | 115 |
LXXXI | 119 |
LXXXII | 120 |
LXXXIII | 121 |
LXXXIV | 125 |
LXXXV | 127 |
LXXXVII | 128 |
LXXXIX | 129 |
XC | 131 |
XCI | 134 |
XCII | 135 |
XCIII | 137 |
XCIV | 139 |
XCVI | 141 |
XCVII | 143 |
XCVIII | 145 |
XCIX | 147 |
CX | 167 |
CXI | 171 |
CXII | 172 |
CXIII | 176 |
CXIV | 177 |
CXV | 178 |
CXVI | 181 |
CXVII | 187 |
CXIX | 188 |
CXXI | 189 |
CXXII | 191 |
CXXIII | 193 |
CXXIV | 198 |
CXXV | 201 |
CXXVI | 206 |
CXXVII | 208 |
CXXXI | 209 |
CXXXII | 211 |
CXXXIII | 213 |
CXXXIV | 216 |
CXXXV | 217 |
CXXXVI | 218 |
CXXXVII | 220 |
CXXXVIII | 222 |
CXLI | 223 |
CXLII | 225 |
CXLIII | 226 |
CXLIV | 228 |
CXLV | 229 |
CXLVI | 231 |
CXLVII | 232 |
CL | 233 |
CLI | 235 |
CLII | 237 |
CLIII | 238 |
CLIV | 240 |
CLV | 242 |
CLVII | 243 |
CLVIII | 244 |
CLX | 245 |
CLXI | 246 |
CLXII | 248 |
CLXIII | 249 |
CLXIV | 250 |
CLXVI | 251 |
CLXVII | 252 |
CLXVIII | 253 |
CLXIX | 277 |
CLXX | 291 |
CLXXI | 297 |
CLXXII | 299 |
CLXXIII | 301 |
309 | |
CLXXV | 2 |
CLXXVII | 4 |
CLXXIX | 6 |
CLXXX | 8 |
CLXXXII | 10 |
CLXXXIV | 12 |
CLXXXV | 14 |
CLXXXVI | 16 |
CLXXXVII | 18 |
CLXXXIX | 20 |
CXC | 22 |
CXCI | 24 |
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acceleration anatomical angular velocity Applied Biomechanics athlete axis ball Bernoulli's Principle biome biomechanical principles biomechanical research body calculate center of gravity chanics chapter coach component coordination create curveball displacement drag eccentric effect elastic Electromyography energy example factors Figure flexion fluid forces Force-Time Principle Force-Velocity graph horizontal Human Kinetics human movement increase inertia injury isokinetic isometric joint Journal of Applied Journal of Sports kinematic kinesiology kinesiology professionals knee Knudson LAB ACTIVITY lift force linear load Magnus Effect mass maximal measure mechanical ment moment of inertia motor units move muscle actions muscle fibers muscle force muscle group myofibril Newton's object passive tension performance physical education Physical Therapy player plyometric position qualitative analysis range of motion relationship resistance rotation sarcomere Science in Sports Segmental Interaction skill speed spin Sport Sciences Sports Medicine strength and conditioning stretch tendon throwing tion tissue torque variables vector vertical jump weight
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Pagina xi - We would like to thank the many people who have contributed to this long series of measurements.
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