The New England College of Optometry, 424 Beacon St., Boston, MA, USA.
Paracelsus Medical University, Salzburg, Austria.
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2019 Feb;205(1):139-149. doi: 10.1007/s00359-018-01310-4. Epub 2019 Jan 2.
In chicks, axial length and choroidal thickness undergo circadian oscillations. The choroid is innervated by both branches of the autonomic nervous system, but their contribution(s) to these rhythms is unknown. We used two combination lesions to test this. For parasympathectomy, nerve VII was sectioned presynaptic to the pterygopalatine ganglia, and the ciliary post-ganglionics were cut (double lesion; n = 8). Triple lesions excised the sympathetic superior cervical ganglion as well (n = 8). Sham surgery was done in controls (n = 7). 8-14 days later, axial dimensions were measured with ultrasonography at 4-h intervals over 24 h. Rhythm parameters were assessed using a "best fit" function, and growth rates measured. Both types of lesions resulted in ultradian (> 1 cycle/24 h) rhythms in choroidal thickness and axial length, and increased vitreous chamber growth (Exp-fellow: double: 69 µm; triple: 104 µm; p < 0.05). For double lesions, the frequency was 1.5 cycles/day for both rhythms; for triples the choroidal rhythm was 1.5 cycles/day, and the axial was 3 cycles/day. For double lesions, the amplitudes of both rhythms were larger than those of sham surgery controls (axial: 107 vs 54 µm; choroid: 124 vs 29 µm, p < 0.05). These findings provide evidence for the involvement of abnormal ocular rhythms in the growth stimulation underlying myopia development.
在小鸡中,眼轴长度和脉络膜厚度会发生昼夜节律性波动。脉络膜由自主神经系统的两个分支支配,但它们对这些节律的贡献尚不清楚。我们使用两种联合损伤来对此进行测试。对于副交感神经切除术,第七神经在翼腭神经节之前被切断,睫状节后神经被切断(双重损伤;n=8)。交感神经颈上神经节也被切除(三重损伤;n=8)。对照组进行假手术(n=7)。8-14 天后,在 24 小时内每隔 4 小时通过超声测量眼轴长度。使用“最佳拟合”函数评估节律参数,并测量生长速度。两种类型的损伤都会导致脉络膜厚度和眼轴长度出现超短周期(>1 个周期/24 小时)节律,并增加玻璃体腔生长(实验伙伴:双重:69µm;三重:104µm;p<0.05)。对于双重损伤,两种节律的频率均为 1.5 个周期/天;对于三重损伤,脉络膜节律为 1.5 个周期/天,眼轴为 3 个周期/天。对于双重损伤,两种节律的振幅均大于假手术对照组(眼轴:107µm 比 54µm;脉络膜:124µm 比 29µm,p<0.05)。这些发现为异常眼部节律参与近视发展的生长刺激提供了证据。