The relationship between limb morphology, kinematics, and force during running: the evolution of locomotor dynamics in lizards

被引:22
作者
McElroy, Eric J. [1 ,2 ,3 ]
Reilly, Stephen M. [2 ,3 ]
机构
[1] Coll Charleston, Dept Biol, Charleston, SC 29401 USA
[2] Ohio Univ, Ohio Ctr Ecol & Evolutionary Studies, Athens, OH 45701 USA
[3] Ohio Univ, Dept Biol Sci, Athens, OH 45701 USA
关键词
biomechanics; force; kinematics; lizard; locomotion; morphology; running; PHYLOGENETICALLY INDEPENDENT CONTRASTS; GROUND REACTION FORCES; BODY-SIZE; TERRESTRIAL LOCOMOTION; GAIT CHARACTERISTICS; STRIDE FREQUENCY; SUBJECT VELOCITY; ENERGY-COST; SPEED; MAMMALS;
D O I
10.1111/j.1095-8312.2009.01230.x
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Terrestrial locomotion occurs via the hierarchical links between morphology, kinematics, force, and center-of-mass mechanics. In a phylogenetically broad sample of seven lizard species, we show that morphological variation drives kinematic variation, which, in turn, drives force variation. Species with short limbs use a short stride-high frequency strategy when running at steady-speed and to change speeds. This link between morphology and kinematics results in relatively small vertical forces during the support phase of the stride cycle. Conversely, species with long limbs use a long stride-low frequency strategy, resulting in large vertical forces during the support phase. In view of these findings, we suggest that limb length may predict locomotor energetics in lizards because energetics are largely determined by vertical forces and stride frequency. Additionally, we propose an energetic trade-off with both long- and short-limbed species paying the most energy to move, whereas intermediate-limbed species move using less energy. Finally, when these traits are mapped onto a lizard phylogeny, we show that locomotor functional morphology exhibits both deep phylogenetic effects and contemporary patterns of evolutionary convergence. Overall, the present study provides a foundation for testing hypotheses regarding the integration and evolution of functional traits in lizards and animals in general. (C) 2009 The Linnean Society of London, Biological Journal of the Linnean Society, 2009, 97, 634-651.
引用
收藏
页码:634 / 651
页数:18
相关论文
共 49 条
  • [1] Lizard locomotion: How morphology meets ecology
    Aerts, P
    Van Damme, R
    Vanhooydonck, B
    Zaaf, A
    Herrel, A
    [J]. NETHERLANDS JOURNAL OF ZOOLOGY, 2000, 50 (02): : 261 - 277
  • [2] ALLOMETRY OF THE LEG MUSCLES OF MAMMALS
    ALEXANDER, RM
    JAYES, AS
    MALOIY, GMO
    WATHUTA, EM
    [J]. JOURNAL OF ZOOLOGY, 1981, 194 (AUG) : 539 - 552
  • [3] MORPHOLOGY, PERFORMANCE AND FITNESS
    ARNOLD, SJ
    [J]. AMERICAN ZOOLOGIST, 1983, 23 (02): : 347 - 361
  • [4] Bertram JEA, 1997, VET COMP ORTHOPAED, V10, P160
  • [5] DIFFERENTIAL SCALING OF THE LONG BONES IN THE TERRESTRIAL CARNIVORA AND OTHER MAMMALS
    BERTRAM, JEA
    BIEWENER, AA
    [J]. JOURNAL OF MORPHOLOGY, 1990, 204 (02) : 157 - 169
  • [6] Biewener AA., 2003, Animal locomotion, V1st ed.
  • [7] Bonnet E., 2002, J STAT SOFTW, V7, P1
  • [8] Differential leg function in a sprawled-posture quadrupedal trotter
    Chen, JJ
    Peattie, AM
    Autumn, K
    Full, RJ
    [J]. JOURNAL OF EXPERIMENTAL BIOLOGY, 2006, 209 (02) : 249 - 259
  • [9] Metabolic rate and endurance capacity in Australian varanid lizards (Squamata; Varanidae; Varanus)
    Clemente, Christofer J.
    Withers, Philip C.
    Thompson, Graham G.
    [J]. BIOLOGICAL JOURNAL OF THE LINNEAN SOCIETY, 2009, 97 (03) : 664 - 676
  • [10] Cooper W.E., 1994, LIZARD ECOLOGY, P65