Comparative three-dimensional kinematics of the hindlimb for high-speed bipedal and quadrupedal locomotion of lizards
Сравнительная трёхмерная кинематика задней конечности при скоростном двуногом и четвероногом передвижении ящериц
1999-05-01
SCID: 54.1/w74dfs92
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Froude numbersdigitigrade foot posturehigh-speed locomotionhindlimb locomotionthree-dimensional kinematics
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Abstract (AI)
Although lizards have been model organisms for testing locomotor performance and in ecomorphological studies, the limb movements of lizards during high-speed locomotion are poorly understood. Thus, we quantified the three-dimensional kinematics of the hindlimb, body and tail for five morphologically distinct species of lizard during steady-speed locomotion near maximum sprinting speed (2-5 m s-1). The kinematics of different species had little multivariate overlap. More than half of the strides of all species had digitigrade foot posture, but the frequency of using digitigrade foot posture varied among species. The combination of digitigrade foot posture and large foot size of the lizards contributed substantially to the high values of hip height. For each species, different suites of kinematic variables distinguished bipedal from quadrupedal strides. Interspecific morphological variation did not correspond globally to variation in kinematics, although lizard species with elongated hindlimbs took longer strides than species with shorter hindlimbs. The Froude numbers and relative stride lengths of all lizards running near maximal speeds were large compared with those reported previously for other vertebrates.
Key Findings
1
Distinct suites of kinematic variables differentiated bipedal from quadrupedal strides within each species.
2
Hindlimb elongation was associated with longer strides, whereas overall morphological variation did not globally predict kinematic variation; all species exhibited relatively large Froude numbers and stride lengths compared with previously reported vertebrates.
3
Kinematic patterns showed little multivariate overlap among species, indicating substantial interspecific differences in high-speed locomotion.
4
More than half of all strides used a digitigrade foot posture, but its frequency varied among species; combined with large feet, this contributed to high hip heights.
5
The study quantified three-dimensional hindlimb, body, and tail kinematics in five morphologically distinct lizard species running near maximal speeds of 2–5 m s−1.
Research Object
hindlimb, body, and tail locomotion of morphologically distinct lizard species during high-speed bipedal and quadrupedal running
Research Subject
comparative three-dimensional kinematics and locomotor differences associated with bipedal versus quadrupedal strides, including foot posture, hip height, stride length, and Froude number
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1999-05-01
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