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CO-OPERATIVE ACTION OF EXTRA-OCULAR MUSCLES.眼外肌的协同作用
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The fascia of the orbit; its anatomy and clinical significance.
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The Action of the Extraocular Muscles: A Method of Vector-Analysis with Computations.眼外肌的作用:一种带计算的矢量分析方法。
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Stimulation-evoked eye movements with and without the lateral rectus muscle pulley.有和没有外直肌滑车时刺激诱发的眼球运动。
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Quantitative analysis of the structure of the human extraocular muscle pulley system.人类眼外肌滑车系统结构的定量分析
Invest Ophthalmol Vis Sci. 2002 Sep;43(9):2923-32.
7
The brainstem burst generator for saccadic eye movements: a modern synthesis.眼球扫视运动的脑干爆发发生器:一种现代综合理论
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Neural and mechanical factors in eye control.眼球控制中的神经和机械因素。
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9
Evidence for rectus extraocular muscle pulleys in rodents.啮齿动物眼外直肌滑车的证据。
Invest Ophthalmol Vis Sci. 2001 Aug;42(9):1986-92.
10
Quantitative analysis of rectus extraocular muscle layers in monkey and humans.猴和人类眼外直肌各层的定量分析。
Invest Ophthalmol Vis Sci. 2001 Jan;42(1):10-6.

人类眼外直肌的双重附着与滑车理论

Double insertions of extraocular rectus muscles in humans and the pulley theory.

作者信息

Ruskell Gordon L, Kjellevold Haugen Inga-Britt, Bruenech Jan Richard, van der Werf Frans

机构信息

Department of Optometry and Visual Science, City University, London, UK.

出版信息

J Anat. 2005 Mar;206(3):295-306. doi: 10.1111/j.1469-7580.2005.00383.x.

DOI:10.1111/j.1469-7580.2005.00383.x
PMID:15733302
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1571479/
Abstract

Recent studies have promoted the concept that rectus muscles pass through connective tissue pulleys located near the equator of the eye and act, in effect, as the muscle origins. Orbital muscle fibres (facing bone) terminate in pulleys, permitting adjustment of their position independent of the global fibres responsible for rotating the eye. The structure of pulleys (or muscle sleeves) and the passage taken by their muscle fibre insertions are unclear, and a detailed description is presented here together with a review of the active pulley hypothesis. Segments including the full width of single muscles were removed from the full orbital contents of dissection room cadavers and fresh perfusion-fixed rhesus and cynomolgus monkeys and prepared for light microscopy. Thin longitudinal sections were cut as facets from resin-embedded tissue blocks and montages assembled. Interrupted serial sections of selected regions of both species and ultrathin sections of monkey material were prepared for light and electron microscopy, respectively. Slender tendons leave the orbital surface of rectus muscles at intervals, aggregating and entering sleeves in humans and monkey; less frequently, tendons pass from the global surface to sleeves or insert directly in the posterior fascia bulbi. The orbital sides of sleeve rings are continuous with the fascial canopy of the globe and are 5-6 times as thick as the global sides; sleeve structure differs in the four recti. Medial rectus sleeves are the thickest, and contain smooth muscle, whereas little or none is present in the other rectus sleeves. Superior rectus sleeves are variable in structure and relatively insubstantial. A narrow interval separates muscles from the surrounding connective tissue equatorially in some preparations, consistent with a capacity to slide, but the tissues are contiguous in others, especially in monkey material. The structural organization of sleeves and their tendons, together with other presented factors, is inconsistent with a facility for the separate adjustment of sleeve position. The results favour the theory that sleeve tendons have just one role, to counter the viscoelastic resistance of global fascia - ocular and sleeve muscle fibres acting in unison. Whether the fragile sleeve structure can meet the physical demands of pulleys is questionable; but otherwise the veracity of the pulley hypothesis cannot be assessed from the structural relations of muscles and fascia bulbi reported.

摘要

近期研究提出了这样一种概念,即直肌穿过位于眼球赤道附近的结缔组织滑车,并实际上起到肌肉起点的作用。眶部肌纤维(朝向骨骼)终止于滑车,使得它们的位置能够独立于负责眼球转动的整体纤维进行调整。滑车(或肌袖)的结构以及其肌纤维附着所经过的路径尚不清楚,在此给出详细描述,并对主动滑车假说进行综述。从解剖室尸体以及新鲜灌注固定的恒河猴和食蟹猴的整个眶内容物中取出包含单块肌肉全宽的节段,制备用于光学显微镜检查。将薄的纵切片从树脂包埋的组织块上切成小平面并组装成蒙片。分别制备了两种动物选定区域的间断连续切片以及猴材料的超薄切片用于光学和电子显微镜检查。细长的肌腱间隔地离开直肌的眶面,在人类和猴子中聚集并进入肌袖;较少见的情况是,肌腱从整体表面通向肌袖或直接附着于眼球后筋膜。肌袖环的眶侧与眼球的筋膜顶相连,其厚度是整体侧的5至6倍;四条直肌的肌袖结构有所不同。内直肌肌袖最厚,含有平滑肌,而其他直肌肌袖中则很少或没有平滑肌。上直肌肌袖结构多变且相对不坚实。在某些标本中,肌肉与周围结缔组织在赤道处被一个狭窄间隙隔开,这与滑动能力相符,但在其他标本中,尤其是猴材料中,组织是连续的。肌袖及其肌腱的结构组织,连同其他所呈现的因素,与肌袖位置的单独调整功能不一致。结果支持这样一种理论,即肌袖肌腱只有一个作用,即对抗整体筋膜的粘弹性阻力——眼球和肌袖肌纤维协同作用。脆弱的肌袖结构是否能够满足滑车的物理需求值得怀疑;但除此之外,无法从所报道的肌肉与眼球筋膜的结构关系来评估滑车假说的真实性。