University of Manchester, Manchester, UK.
Manchester Metropolitan University, Manchester, UK.
Anat Rec (Hoboken). 2023 Oct;306(10):2514-2536. doi: 10.1002/ar.25189. Epub 2023 Mar 10.
A reversion to secondary quadrupedality is exceptionally rare in nature, yet the convergent re-evolution of this locomotor style occurred at least four separate times within Dinosauria. Facultative quadrupedality, an intermediate state between obligate bipedality and obligate quadrupedality, may have been an important transitional step in this locomotor shift, and is proposed for a range of basal ornithischians and sauropodomorphs. Advances in virtual biomechanical modeling and simulation have allowed for the investigation of limb anatomy and function in a range of extinct dinosaurian species, yet this technique has not been widely applied to explore facultatively quadrupedal gait generation. This study places its focus on Scutellosaurus, a basal thyreophoran that has previously been described as both an obligate biped and a facultative quadruped. The functional anatomy of the musculoskeletal system (myology, mass properties, and joint ranges of motion) has been reconstructed using extant phylogenetic bracketing and comparative anatomical datasets. This information was used to create a multi-body dynamic locomotor simulation that demonstrates that whil quadrupedal gaits were physically possible, they did not outperform bipedal gaits is any tested metric. Scutellosaurus cannot therefore be described as an obligate biped, but we would predict its use of quadrupedality would be very rare, and perhaps restricted to specific activities such as foraging. This finding suggests that basal thyreophorans are still overwhelmingly bipedal but is perhaps indicative of an adaptive pathway for later evolution of quadrupedality.
在自然界中,动物重新回到四足状态是极其罕见的,但这种运动方式的趋同进化至少在恐龙中发生了四次。兼性四足性是一种从强制性两足性到强制性四足性的中间状态,可能是这种运动转变的一个重要过渡步骤,在一系列基础鸟臀目恐龙和蜥脚形亚目恐龙中都有提出。虚拟生物力学建模和模拟技术的进步使得对各种已灭绝恐龙物种的肢体解剖结构和功能进行了研究,但这种技术尚未广泛应用于探索兼性四足步态的产生。本研究的重点是 Scutellosaurus,一种基础的鸟脚类恐龙,之前被描述为强制性两足动物和兼性四足动物。使用现生种系统发育分支和比较解剖数据集,重建了骨骼肌肉系统(肌肉解剖学、质量特性和关节运动范围)的功能解剖结构。利用这些信息创建了一个多体动力学运动模拟,结果表明,虽然四足步态在物理上是可行的,但在任何测试指标上都不如两足步态优越。因此,Scutellosaurus 不能被描述为强制性两足动物,但我们预计它的四足运动使用频率会非常低,可能仅限于特定的活动,如觅食。这一发现表明,基础鸟脚类恐龙仍然主要是两足动物,但这可能表明了后来四足性进化的一种适应性途径。