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正视化的副交感神经支配。

Parasympathetic innervation of emmetropization.

机构信息

New England College of Optometry, 424 Beacon St, Boston, MA, 02115, USA.

New England College of Optometry, 424 Beacon St, Boston, MA, 02115, USA.

出版信息

Exp Eye Res. 2022 Apr;217:108964. doi: 10.1016/j.exer.2022.108964. Epub 2022 Feb 1.

Abstract

Emmetropization is affected by the temporal parameters of visual stimulation and the spectral composition of light, as well as by autonomic innervation. The goal of the current experiments is to test the hypothesis that different types of visual stimulation interact with ocular innervation in the process of emmetropization. For that, selective lesions of the autonomic nervous system were performed in chickens: involving transection of parasympathetic input to the eye from either the ciliary ganglion, innervating accommodation and pupil responses (CGX; n = 32), or pterygopalatine ganglion, innervating choroidal blood vessels and cornea (PPGX; n = 26). After 1 week of recovery, chicks were exposed to sinusoidally modulated light (3 days, 2 Hz, 680 lux) that was either achromatic (black to white [RGB], or black to yellow [RG]), or chromatic (blue to yellow [B/Y] or red to green [R/G]). Exposure to light stimulation was followed by ocular biometry (Lenstar and a Hartinger refractometer). Surgical conditions revealed a small reduction in anterior chamber depth with CGX but no other significant changes in ocular biometry/refraction under standard light conditions. With RGB achromatic stimulation, CGX eyes produced an effect on ocular components, with a further reduction in anterior chamber depth and an increase in vitreous chamber depth, while RG stimulation showed no effect. No effect was detected in PPGX under both achromatic protocols. With chromatic stimulation, CGX with R/G modulation increased eye length, while PPGX with B/Y modulation decreased eye length. We conclude that the two different types of parasympathetic innervations have antagonistic effects on eye growth and the anterior eye when challenged with the appropriate stimulus, with possible implications for the role of choroidal blood flow in emmetropization.

摘要

正视化受到视觉刺激的时间参数和光的光谱组成以及自主神经支配的影响。目前实验的目的是检验以下假设,即不同类型的视觉刺激在正视化过程中与眼部神经支配相互作用。为此,我们在小鸡中进行了自主神经系统的选择性损伤实验:切断睫状神经节(ciliary ganglion,支配调节和瞳孔反应,CGX;n=32)或翼腭神经节(pterygopalatine ganglion,支配脉络膜血管和角膜,PPGX)传入眼部的副交感神经纤维。手术后 1 周,小鸡暴露于正弦调制光(3 天,2 Hz,680 lux),这些光可以是无色(黑到白[RGB]或黑到黄[RG])或有色(蓝到黄[B/Y]或红到绿[R/G])。光刺激后进行眼部生物测量(Lenstar 和 Hartinger 折射计)。手术条件显示 CGX 组前房深度略有减小,但在标准光照条件下,其他眼部生物测量/折射无显著变化。在 RGB 无色刺激下,CGX 眼对眼部结构产生影响,前房深度进一步减小,玻璃体腔深度增加,而 RG 刺激无影响。在两种无色方案下,PPGX 均无影响。在有色刺激下,CGX 中的 R/G 调制增加了眼轴长度,而 PPGX 中的 B/Y 调制则缩短了眼轴长度。我们得出结论,两种不同类型的副交感神经支配在受到适当刺激时对眼生长和眼前节具有拮抗作用,这可能对脉络膜血流在正视化中的作用具有重要意义。

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