Collings A J, Eberhard E A, Basu C, Richards C T
School of Health and Life Sciences, Teesside University, Middlesbrough, United Kingdom.
Structure and Motion Laboratory, Royal Veterinary College, Hatfield, United Kingdom.
Front Bioeng Biotechnol. 2022 Apr 1;10:806174. doi: 10.3389/fbioe.2022.806174. eCollection 2022.
Using their abundant musculature, frogs are able to exhibit outstanding behavioural versatility. However, understanding the dynamic motion of their 30 + hindlimb muscles, with multi-joint action, and curved pathways, is challenging. This is particularly true in walking, a relatively understudied, but complex frog gait. Building on prior musculoskeletal modelling work we construct and analyse a 3D musculoskeletal model of the spine, pelvis, and hindlimb of (previously known as ) to simulate the natural motion of muscle pathways as joints rotate during locomotion. Combining experimental kinematics and DICE-CT scan data we use several simulations conducted in MuJoCo to decouple femur and pelvic motions, generating new insights into the functional mechanics of walking in frogs. Outputs demonstrate pelvic lateral rotation about the iliosacral joint influences moment arm magnitude in the majority of hindlimb muscles. The extent of pelvic influence depends on femoral angle which changes muscle function in some instances. The workflow presented here can be used to help experimentalists predict which muscles to probe with techniques towards a better understanding of how anuran musculoskeletal mechanics enable multiple behaviours.
青蛙利用其丰富的肌肉组织,能够展现出出色的行为多样性。然而,要理解其30多条后肢肌肉的动态运动,包括多关节动作和弯曲路径,颇具挑战性。在行走这种相对较少研究但复杂的青蛙步态中尤其如此。基于先前的肌肉骨骼建模工作,我们构建并分析了(先前称为)的脊柱、骨盆和后肢的三维肌肉骨骼模型,以模拟运动过程中关节旋转时肌肉路径的自然运动。结合实验运动学和DICE - CT扫描数据,我们在MuJoCo中进行了多次模拟,以解耦股骨和骨盆的运动,从而对青蛙行走的功能力学产生新的见解。结果表明,骨盆绕骶髂关节的侧向旋转会影响大多数后肢肌肉的力臂大小。骨盆影响的程度取决于股骨角度,在某些情况下会改变肌肉功能。这里介绍的工作流程可用于帮助实验人员预测用哪些技术探测哪些肌肉,以便更好地理解无尾两栖类动物的肌肉骨骼力学如何实现多种行为。