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首页> 外文期刊>Journal of Neurophysiology >Magnetic resonance imaging of human extraocular muscles in convergence.
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Magnetic resonance imaging of human extraocular muscles in convergence.

机译:人体眼外肌的磁共振成像。

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摘要

Extraocular muscle (EOM) paths during asymmetrical convergence were evaluated by tri-planar, contrast-enhanced magnetic resonance imaging of the orbits of eight young adults during binocular fixation of a target aligned to one eye at 800 and 15 cm distance. Cross sections and paths of EOMs were determined from area centroids. In convergence, the aligned eye rotated and translated negligibly, while its inferior oblique (IO) muscle exhibited significant contractile thickening. There were no significant contractile changes in the cross sections of aligned eye rectus or superior oblique (SO) muscles in convergence. The converging eye rotated nasally 22.4 degrees but translated negligibly. The converging eye medial (MR) and lateral rectus (LR) muscles exhibited large contractile cross-section changes, and the IO showed significant contractile thickening, while the vertical rectus muscles and the SO did not. Anterior paths of three aligned eye rectus EOMs could be determined in convergence and shifted consistent with a 1.9 degrees extorsion of the rectus pulley array. Such extorsional reconfiguration of the rectus pulleys would move the pulleys in coordination with globe extorsion and avoid imparting torsional action to these EOMs. Extorsional rectus pulley shift in convergence is inconsistent with the reconfiguration predicted to explain the temporal tilting of Listing's planes, instead suggesting that this temporal tilting is due to variations in oblique EOM innervation. Absence of globe translation in convergence argues against overall EOM co-contraction. The reconfiguration of EOM geometry in convergence has important implications for single-unit studies of neural control.
机译:通过双平面固定目标对准与一只眼睛在800和15 cm距离的目标,对八名年轻成年人的眼眶进行三平面对比增强磁共振成像,评估不对称会聚过程中的眼外肌(EOM)路径。根据面积质心确定EOM的横截面和路径。在收敛中,对齐的眼睛旋转和平移可以忽略不计,而其下斜肌(IO)则表现出明显的收缩增厚。对齐的直肌或上斜肌(SO)的横截面没有明显的收缩变化。会聚的眼睛向鼻旋转22.4度,但平移可忽略不计。会聚的眼内侧(MR)和外侧直肌(LR)表现出较大的收缩横截面变化,而IO则显示明显的收缩增厚,而垂直直肌和SO则没有。可以确定三个对准的眼直肌EOM的前向路径,并与直肌滑轮阵列1.9度拉长一致地移动。直肌滑轮的这种勒索重新配置将使滑轮与球体勒索配合移动,并避免对这些EOM施加扭转作用。会聚时伸肌直肌滑轮移位与为解释Listing平面的时间倾斜而预测的重构不一致,相反,表明该时间倾斜是由于倾斜的EOM神经支配的变化引起的。融合中缺少地球翻译反对整个EOM协同收缩。收敛中EOM几何的重新配置对于神经控制的单单元研究具有重要意义。

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