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首页> 外文期刊>Journal of cataract and refractive surgery >Compression forces of haptics of freely rotating posterior chamber intraocular lenses.
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Compression forces of haptics of freely rotating posterior chamber intraocular lenses.

机译:自由旋转的后房眼人工晶状体的触觉的压缩力。

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PURPOSE: To measure the compressive forces of the haptics of 28 intraocular lens (IOL) models for different modes of compression and compare the results of two types of measurements. SETTING: Department of Ophthalmology, Central Hospital of Central Finland, Jyvaskyla, Finland. METHODS: The haptics of 28 types of IOLs were compressed to a diameter of 9.0 mm between curved anvils. The compression forces in the plane of compression (i.e., in the plane of the optics) were measured at 0.5 mm intervals. During compression, the optics and the haptics were free to rotate with respect to the anvils. The results were compared with those of earlier measurements in which the optics were held fixed during compression. Perpendicular forces were measured at 0.4 mm intervals. RESULTS: The measured forces in the plane of the optics varied between 114 and 659 mg at a diameter of 10.0 mm and 192 and 1047 mg at a diameter of 9.0 mm. When compressed to 10.0 mm in diameter, the forces were 1 to 75% lower than when lens rotation was not possible. The forces perpendicular to the optic varied between 0 and 96 mg at a 10.0 mm diameter and correlated with the forces in the plane of the optic. CONCLUSION: The compression forces of the lens haptics were generally lower when the lenses were allowed to rotate during compression. The orders of stiffness of the haptics in these two measurements were similar. The perpendicular forces were generally small and correlated significantly with the forces measured in the plane of the optic.
机译:目的:测量28种人工晶状体(IOL)模型在不同压缩模式下的触觉压缩力,并比较两种测量结果。地点:芬兰于韦斯屈莱中部芬兰中央医院眼科。方法:将28种IOL的触觉件压缩到弯曲砧座之间的直径为9.0 mm。以0.5mm的间隔测量在压缩平面内(即,在光学器件平面内)的压缩力。在压缩期间,光学器件和触觉器相对于砧座自由旋转。将结果与早期测量的结果进行比较,在早期的测量中,光学器件在压缩过程中保持固定。垂直力的测量间隔为0.4 mm。结果:在光学平面中测得的力在直径10.0 mm时在114和659 mg之间,在直径9.0 mm时在192和1047 mg之间变化。当压缩到直径为10.0毫米时,该力比无法旋转镜头时降低了1至75%。垂直于光学元件的力在直径为10.0 mm的0到96 mg之间变化,并且与光学元件平面中的力相关。结论:在压缩过程中允许镜片旋转时,镜片的压缩力通常较低。在这两个测量中,触觉的刚度顺序是相似的。垂直力通常很小,并且与光学元件平面中测得的力显着相关。

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