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使用XROMM技术对大鼠前肢运动学的研究,及其对小型真兽类及其化石亲属的启示

Forelimb Kinematics of Rats Using XROMM, with Implications for Small Eutherians and Their Fossil Relatives.

作者信息

Bonnan Matthew F, Shulman Jason, Varadharajan Radha, Gilbert Corey, Wilkes Mary, Horner Angela, Brainerd Elizabeth

机构信息

Biology Program, Stockton University, Galloway, New Jersey, 08205, United States of America.

Physics Program, Stockton University, Galloway, New Jersey, 08205, United States of America.

出版信息

PLoS One. 2016 Mar 2;11(3):e0149377. doi: 10.1371/journal.pone.0149377. eCollection 2016.

Abstract

The earliest eutherian mammals were small-bodied locomotor generalists with a forelimb morphology that strongly resembles that of extant rats. Understanding the kinematics of the humerus, radius, and ulna of extant rats can inform and constrain hypotheses concerning typical posture and mobility in early eutherian forelimbs. The locomotion of Rattus norvegicus has been extensively studied, but the three-dimensional kinematics of the bones themselves remains under-explored. Here, for the first time, we use markerless XROMM (Scientific Rotoscoping) to explore the three-dimensional long bone movements in Rattus norvegicus during a normal, symmetrical gait (walking). Our data show a basic kinematic profile that agrees with previous studies on rats and other small therians: rats maintain a crouched forelimb posture throughout the step cycle, and the ulna is confined to flexion/extension in a parasagittal plane. However, our three-dimensional data illuminate long-axis rotation (LAR) movements for both the humerus and the radius for the first time. Medial LAR of the humerus throughout stance maintains an adducted elbow with a caudally-facing olecranon process, which in turn maintains a cranially-directed manus orientation (pronation). The radius also shows significant LAR correlated with manus pronation and supination. Moreover, we report that elbow flexion and manus orientation are correlated in R. norvegicus: as the elbow angle becomes more acute, manus supination increases. Our data also suggest that manus pronation and orientation in R. norvegicus rely on a divided system of labor between the ulna and radius. Given that the radius follows the flexion and extension trajectory of the ulna, it must rotate at the elbow (on the capitulum) so that during the stance phase its distal end lies medial to ulna, ensuring that the manus remains pronated while the forelimb is supporting the body. We suggest that forelimb posture and kinematics in Juramaia, Eomaia, and other basal eutherians were grossly similar to those of rats, and that humerus and radius LAR may have always played a significant role in forelimb and manus posture in small eutherian mammals.

摘要

最早的真兽类哺乳动物是小型的运动通才,其前肢形态与现存的大鼠非常相似。了解现存大鼠肱骨、桡骨和尺骨的运动学可以为有关早期真兽类前肢典型姿势和活动能力的假说提供信息并加以限制。褐家鼠的运动已经得到了广泛研究,但骨骼本身的三维运动学仍未得到充分探索。在此,我们首次使用无标记XROMM(科学逐帧动画技术)来探究褐家鼠在正常对称步态(行走)过程中长骨的三维运动。我们的数据显示了一个基本的运动学特征,这与之前对大鼠和其他小型兽类的研究一致:大鼠在整个步周期中保持前肢蹲伏姿势,尺骨局限于矢状旁平面内的屈伸运动。然而,我们的三维数据首次揭示了肱骨和桡骨的长轴旋转(LAR)运动。在整个站立期,肱骨的内侧LAR保持肘部内收,鹰嘴突朝向尾侧,这反过来又保持了手部向前的方向(旋前)。桡骨也显示出与手部旋前和旋后相关的显著LAR。此外,我们报告在褐家鼠中肘部屈曲和手部方向是相关的:随着肘角变得更加尖锐,手部旋后增加。我们的数据还表明,褐家鼠的手部旋前和方向依赖于尺骨和桡骨之间的分工系统。鉴于桡骨跟随尺骨的屈伸轨迹,它必须在肘部(在肱骨小头处)旋转,以便在站立期其远端位于尺骨内侧,确保在前肢支撑身体时手部保持旋前。我们认为,始祖兽、始新兽和其他基干真兽类的前肢姿势和运动学与大鼠大致相似,并且肱骨和桡骨的LAR可能在小型真兽类哺乳动物的前肢和手部姿势中一直发挥着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/98f8/4775064/73108bd5e9c3/pone.0149377.g001.jpg

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