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在一种没有调节能力的昼行性哺乳动物(松鼠)中诱导实验性近视。

Experimental myopia in a diurnal mammal (Sciurus carolinensis) with no accommodative ability.

作者信息

McBrien N A, Moghaddam H O, New R, Williams L R

机构信息

Department of Optometry and Vision Sciences, University of Wales, College of Cardiff.

出版信息

J Physiol. 1993 Sep;469:427-41. doi: 10.1113/jphysiol.1993.sp019821.

DOI:10.1113/jphysiol.1993.sp019821
PMID:8271206
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1143878/
Abstract
  1. We examined the functional morphology of the intra-ocular muscles of the grey squirrel using pharmacological and histological methods. Using sympathomimetic (phenylephrine) and parasympathomimetic (carbachol) agents, administered by transcorneal iontophoresis, the response of the iris sphincter and dilator muscles and the ciliary muscle were recorded. Measurement techniques included both streak retinoscopy and coincidence optometry for measurement of ocular refraction and high resolution ultrasonography to monitor changes in the intra-ocular component dimensions. 2. The grey squirrel was found not to possess a functional accommodative system. No change in ocular refraction or intra-ocular dimensions could be induced with 40% carbachol. Marked changes in pupil diameter occurred with topical application of both phenylephrine (dilation) and carbachol (constriction). Histological findings were in agreement with pharmacological findings in showing well developed iris sphincter and dilator muscles but only a poorly developed ciliary muscle. 3. Calculation of the depth of focus of the grey squirrel eye reveals that this could be sufficient to account for the behavioural observations of near viewing habits. 4. We then determined whether we could induce axial elongation of the vitreous chamber and a consequent myopia by monocular deprivation (MD) of pattern vision. 5. Monocular deprivation of pattern vision produced a significant experimental myopia due to axial elongation of the vitreous chamber in the deprived eye. 6. The results demonstrate that a functional accommodative system is not necessary to induce experimental myopia in the grey squirrel eye.
摘要
  1. 我们运用药理学和组织学方法研究了灰松鼠眼内肌的功能形态。通过经角膜离子电渗疗法给予拟交感神经药(去氧肾上腺素)和拟副交感神经药(卡巴胆碱),记录虹膜括约肌、瞳孔开大肌和睫状肌的反应。测量技术包括用于测量眼屈光的带状检影法和重合验光法,以及用于监测眼内成分尺寸变化的高分辨率超声检查。2. 发现灰松鼠不具备功能性调节系统。40%的卡巴胆碱不会引起眼屈光或眼内尺寸的变化。局部应用去氧肾上腺素(散瞳)和卡巴胆碱(缩瞳)均会使瞳孔直径发生显著变化。组织学结果与药理学结果一致,显示虹膜括约肌和瞳孔开大肌发育良好,但睫状肌发育不良。3. 对灰松鼠眼睛焦深的计算表明,这足以解释其近距离观看习惯的行为观察结果。4. 然后我们确定是否可以通过剥夺模式视觉的单眼剥夺(MD)来诱导玻璃体腔轴向伸长并进而导致近视。5. 剥夺模式视觉的单眼剥夺由于被剥夺眼的玻璃体腔轴向伸长而产生了显著的实验性近视。6. 结果表明,功能性调节系统对于在灰松鼠眼中诱导实验性近视并非必要。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5156/1143878/048ede5b8e11/jphysiol00370-0433-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5156/1143878/048ede5b8e11/jphysiol00370-0433-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5156/1143878/048ede5b8e11/jphysiol00370-0433-a.jpg

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