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首页> 外文期刊>Strabismus >Ocular kinematics, vergence, and orbital mechanics.
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Ocular kinematics, vergence, and orbital mechanics.

机译:眼运动学,发散度和轨道力学。

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Important aspects of ocular kinematics relate to the geometric configuration of extraocular muscles (EOMs). The orbital layer of each rectus EOM inserts on a connective tissue ring called a pulley that deflects the EOM path. Global layer fibers of each EOM pass through the pulley to insert on the sclera. The orbital layer thus controls linear translation of the pulley, regulating the EOM's pulling direction, while the global layer rotates the eye. The active pulley hypothesis (APH) states that pulleys are actively positioned to regulate ocular kinematics. The coordinated control postulate of the APH proposes that during conjugate visually guided eye movements, rectus pulleys move the same anteroposterior distance as their insertions, but the inferior oblique pulley moves with vertical gaze by half the amount as the inferior rectus insertion. These motions, observable by magnetic resonance imaging (MRI), shift the pulling directions of these EOMs by half the ocular angle, mechanically implementing a 'linear oculomotor plant' appearing mathematically commutative to the brain and consistent with Listing's Law of ocular torsion. In the non-converged state with the head upright and stationary, rectus pulleys move little transverse to the EOM axes. During convergence and during the static torsional vestibulo-ocular reflex, MRI shows that the rectus pulley array rotates around the line of sight. Oblique EOM orbital layers may implement this shift.
机译:眼运动学的重要方面涉及眼外肌(EOM)的几何结构。每个直肌EOM的眼眶层都插入称为滑轮的结缔组织环上,该环使EOM路径偏转。每个EOM的全局层纤维都穿过滑轮插入到巩膜上。因此,轨道层控制滑轮的线性平移,调节EOM的拉动方向,而全局层使眼睛旋转。主动滑轮假说(APH)指出滑轮处于主动位置以调节眼的运动学。 APH的协调控制假设建议,在共轭视觉引导的眼球运动期间,直肌滑轮的前后距离与插入时相同,但下斜滑轮在垂直注视下的运动量为直肌下插入量的一半。通过磁共振成像(MRI)可以观察到这些运动,将这些EOM的拉动方向移动了一半的眼角,从而机械地实现了一种“线性动眼植物”,看上去在数学上与大脑是可交换的,并且符合Listing的眼扭转定律。在头处于直立且静止的非会聚状态下,直肌滑轮几乎不垂直于EOM轴移动。在会聚期间以及在静态扭转前庭眼反射中,MRI显示直肌滑轮阵列围绕视线旋转。倾斜的EOM轨道层可能会实现此偏移。

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