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眼外直肌纤维肌性滑车的证据。

Evidence for fibromuscular pulleys of the recti extraocular muscles.

作者信息

Demer J L, Miller J M, Poukens V, Vinters H V, Glasgow B J

机构信息

Department of Ophthalmology, Jules Stein Eye Institute, University of California at Los Angeles 90095-7002, USA.

出版信息

Invest Ophthalmol Vis Sci. 1995 May;36(6):1125-36.

PMID:7730022
Abstract

PURPOSE

Magnetic resonance imaging (MRI) shows that the paths of recti extraocular muscle (EOM) bellies remain fixed in the orbit during large ocular rotations and across large surgical transpositions of their insertions. These findings imply that recti EOMs pass through pulleys coupled to the orbit and anterior to the muscle bellies, because the insertions must move with the globe. The present study was conducted to locate anatomically and to characterize histologically the pulley tissues.

METHODS

High-resolution MRI images were collected from volunteers, using multiple gaze directions to infer the locations of, and occasionally to visualize, recti EOM pulleys. Fresh cadaver orbits were exenterated and dissected to evaluate mechanical and structural properties of the orbital connective tissues. Lipid was cleared from whole specimens to reveal tissue relationships. Other specimens were selectively step- and serial-sectioned for histochemical and immunohistochemical staining.

RESULTS

Magnetic resonance imaging demonstrated dense connective tissue structures within posterior Tenon's fascia near the equator of the globe adjacent to the recti EOMs. Histochemistry showed these structures to be pulleys--fibroelastic EOM sleeves consisting of dense bands of collagen and elastin, suspended from the orbit and adjacent EOM sleeves by bands of similar composition. A monoclonal antibody to human smooth muscle alpha-actin demonstrated substantial smooth muscle in the pulley suspensions and in posterior Tenon's fascia. Tenon's fascia itself was seen to be suspended at its periphery from the orbital walls like a drumhead.

CONCLUSIONS

The human orbit contains specialized musculofibroelastic tissues in and just posterior to Tenon's fascia that serve as compliant pulleys and determine the pulling directions of recti EOMs. In this sense, the pulleys are the functional origins of the recti EOMs and are determinants of ocular motility.

摘要

目的

磁共振成像(MRI)显示,在眼球大幅度转动以及直肌附着点进行大幅度手术移位时,眼外肌(EOM)肌腹的路径在眼眶内保持固定。这些发现意味着直肌EOM穿过与眼眶相连且位于肌腹前方的滑车,因为附着点必须随眼球移动。本研究旨在从解剖学上定位滑车组织并对其进行组织学特征描述。

方法

从志愿者身上采集高分辨率MRI图像,利用多个注视方向推断直肌EOM滑车的位置,偶尔也对其进行可视化。对新鲜尸体眼眶进行摘除和解剖,以评估眼眶结缔组织的力学和结构特性。从整个标本中清除脂质以揭示组织关系。对其他标本进行选择性阶梯切片和连续切片,用于组织化学和免疫组织化学染色。

结果

磁共振成像显示,在眼球赤道附近、靠近直肌EOM的后Tenon筋膜内有致密结缔组织结构。组织化学显示这些结构为滑车——由致密的胶原带和弹性蛋白带组成的纤维弹性EOM套,通过成分相似的带从眼眶和相邻的EOM套悬吊下来。一种针对人平滑肌α -肌动蛋白的单克隆抗体显示,滑车悬韧带和后Tenon筋膜中有大量平滑肌。Tenon筋膜本身在其周边像鼓膜一样从眶壁悬吊下来。

结论

人类眼眶在Tenon筋膜内及其后方含有特殊的肌纤维弹性组织,这些组织作为顺应性滑车,决定了直肌EOM的牵拉方向。从这个意义上说,滑车是直肌EOM的功能起点,也是眼球运动的决定因素。

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