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Expanding repertoire in the oculomotor periphery: selective compartmental function in rectus extraocular muscles

机译:在动血管外周上扩展曲目:直肠外盖肌中的选择性区间功能

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Since connective tissue pulleys implement Listing's law by systematically changing rectus extraocular muscle (EOM) pulling directions, non-Listing's law gaze dependence of the vestibulo-ocular reflex is currently inexplicable. Differential activation of compartments within rectus EOMs may endow the ocular motor system with more behavioral diversity than previously supposed. Innervation to horizontal, but not vertical, rectus EOMs of mammals is segregated into superior and inferior compartments. Magnetic resonance imaging in normal subjects demonstrates contractile changes in the lateral rectus (LR) inferior, but not superior, compartment during ocular counter-rolling (OCR) induced by head tilt. In human orbits ipsilesional to unilateral superior oblique palsy, neither LR compartment exhibits contractile change during head tilt, although the inferior compartment contracts normally in contralesional orbits. This suggests that differential compartmental LR contraction assists normal OCR. Computational simulation suggests that differential compartmental action in horizontal rectus EOMs could achieve more force than required by vertical fusional vergence.
机译:由于连接组织滑轮通过系统地改变直肠外插肌(EOM)拉动方向来实现列表定律,因此非上市的法律凝视依赖性的前景反射目前是莫名其妙的。直肠EOM内隔室的差异激活可以赋予眼睛电机系统,其具有比以前假定的更具行为的多样性。静止的静脉内部的支护哺乳动物的直肠EOMS被隔离成优异的隔室。正常受试者中的磁共振成像证明了由头倾斜引起的眼睛反轧(OCR)期间的横向直肌(LR)较差但不优越的隔室的收缩变化。在人类轨道上的Ipsiles与单侧上级倾斜麻痹,LR隔间都没有在头部倾斜期间表现出收缩变化,尽管较低的隔间通常在对不动轨道上合同。这表明差分室LR收缩有助于正常的OCR。计算仿真表明,水平矩阵EOMS中的差动隔间动作可以实现比垂直定真易变形所要求的力量更多的力。

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