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雏鸡眼压的昼夜节律及其与昼夜眼部生长变化的关系。

The circadian rhythm in intraocular pressure and its relation to diurnal ocular growth changes in chicks.

作者信息

Nickla D L, Wildsoet C, Wallman J

机构信息

The City College of CUNY, New York, NY 10031, USA.

出版信息

Exp Eye Res. 1998 Feb;66(2):183-93. doi: 10.1006/exer.1997.0425.

Abstract

Recent investigations have shown that growing chicken eyes elongate during the day and shorten during the night. We asked whether the chick, like a number of other animals, exhibits a rhythm in intraocular pressure (IOP) and whether this rhythm might be associated with this rhythm in elongation. We find that the intraocular pressure in normal eyes is high during the day and low in the middle of the night, similar to the rhythm in ocular elongation. The amplitude of this rhythm in IOP is approximately 8 mm Hg; it persists in constant darkness, albeit with a reduced amplitude, implying that the rhythm has a circadian component. Form deprivation by translucent diffusers does not affect the amplitude of the rhythm in IOP, but makes the phase of the rhythm more variable, such that the trough no longer consistently occurs at night. We find that the magnitude of the ocular compliance (the change in length induced by change in intraocular pressure) is consistent with the possibility that the diurnal changes in IOP might, through mechanical stretch, account for much of the diurnal changes in length. However, in individual eyes, we find consistent phase differences between the rhythms in IOP and ocular elongation. Therefore, we propose that the rhythm in IOP influences ocular elongation in ways other than by simply inflating the eye, for example, by influencing underlying rhythms in scleral extracellular matrix production. We conclude that the rhythm in IOP plays a role in the regulation of the growth of the eye.

摘要

最近的研究表明,正在生长的鸡眼睛在白天会伸长,而在夜间会缩短。我们想知道,小鸡是否像其他一些动物一样,眼内压(IOP)存在节律,以及这种节律是否可能与伸长的节律有关。我们发现,正常眼睛的眼内压在白天较高,而在午夜较低,这与眼球伸长的节律相似。这种眼内压节律的幅度约为8毫米汞柱;它在持续黑暗中依然存在,尽管幅度有所减小,这意味着该节律具有昼夜节律成分。用半透明扩散器造成的形觉剥夺并不影响眼内压节律的幅度,但会使节律的相位更加多变,以至于波谷不再始终出现在夜间。我们发现,眼球顺应性的大小(眼内压变化引起的长度变化)与眼内压的昼夜变化可能通过机械拉伸来解释大部分长度的昼夜变化这一可能性是一致的。然而,在单只眼睛中,我们发现眼内压节律和眼球伸长节律之间存在一致的相位差异。因此,我们提出,眼内压节律以除了简单地使眼睛膨胀之外的方式影响眼球伸长,例如,通过影响巩膜细胞外基质产生的潜在节律。我们得出结论,眼内压节律在眼睛生长的调节中起作用。

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