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人脉络膜对眼睑及眼周温度短期变化的反应。

Response of the human choroid to short-term changes in eyelid and periocular temperature.

作者信息

Khanal Safal, Turnbull Philip Rk, Kim Lucia, Phillips John R

机构信息

School of Optometry and Vision Science, The University of Auckland, Auckland, New Zealand.

出版信息

Clin Exp Optom. 2025 Jul;108(5):578-584. doi: 10.1080/08164622.2024.2377391. Epub 2024 Jul 16.

Abstract

CLINICAL RELEVANCE

Choroidal thickness measurement is gaining popularity in clinical practice and research as an early indicator of myopia progression. Understanding the influence of temperature on choroidal thickness changes will improve the reliability of the measures.

BACKGROUND

It has been suggested that environmental temperature may affect choroidal thickness and blood flow, with potential implications for ocular disease and refractive development. This study investigates the effect of changes in eyelid/ocular adnexa temperature on choroidal thickness.

METHODS

In a paired-eye study, 20 young, healthy subjects received a warm stimulus (heat pack) over one closed eye and simultaneously a cold stimulus (ice pack) over the other for 10 min. Eyelid temperatures were monitored with thermal probes, and optical coherence tomography scans of the retina and choroid were taken before and after heating and cooling, and then every 5 min during a 15-min recovery period. Retinal and choroidal thicknesses were measured across the macular region (6 mm), including the subfoveal (1 mm), parafoveal (1-3 mm), and perifoveal (3-5 mm) regions, and compared between the cooled and warmed eyes.

RESULTS

When the thermal stimuli were applied, eyelid surface temperatures changed predictably and remained significantly different (by approximately 10-15°C) between the eyes after 2 min ( < .001). Relative to the warmed eye, macular choroidal thickness in the cooled eye increased significantly after 10 min of treatment ( = .004). This choroidal thickening response occurred in the subfoveal, parafoveal, and perifoveal regions (all  < .05). Upon removal of the thermal stimuli, choroidal thickness rapidly returned to the baseline and was no longer different between the cooled and warmed eye ( = .641).

CONCLUSION

Cooling the anterior eye by application of a cold stimulus directly onto the closed eyelid caused a small but significant increase in choroidal thickness relative to warming the anterior eye, demonstrating that the choroid can modulate its thickness rapidly and transiently in response to local temperature changes.

摘要

临床相关性

脉络膜厚度测量作为近视进展的早期指标,在临床实践和研究中越来越受到关注。了解温度对脉络膜厚度变化的影响将提高测量的可靠性。

背景

有研究表明,环境温度可能会影响脉络膜厚度和血流,这对眼部疾病和屈光发育可能具有潜在影响。本研究旨在探讨眼睑/眼附属器温度变化对脉络膜厚度的影响。

方法

在一项双眼配对研究中,20名年轻健康受试者的一只闭合眼睛接受温热刺激(热敷袋),同时另一只眼睛接受冷刺激(冰袋),持续10分钟。用热探头监测眼睑温度,并在加热和冷却前后以及15分钟恢复期内每5分钟进行一次视网膜和脉络膜的光学相干断层扫描。测量黄斑区(6毫米)的视网膜和脉络膜厚度,包括中心凹下(1毫米)、中心凹旁(1 - 3毫米)和中心凹周围(3 - 5毫米)区域,并比较冷刺激眼和温热刺激眼之间的差异。

结果

施加热刺激时,眼睑表面温度变化符合预期,2分钟后两眼之间的温度仍存在显著差异(约10 - 15°C)(P <.001)。与温热刺激眼相比,冷刺激眼在治疗10分钟后黄斑脉络膜厚度显著增加(P = 0.004)。这种脉络膜增厚反应发生在中心凹下、中心凹旁和中心凹周围区域(均P <.05)。去除热刺激后,脉络膜厚度迅速恢复到基线,冷刺激眼和温热刺激眼之间不再有差异(P = 0.641)。

结论

直接在闭合眼睑上施加冷刺激使眼前部冷却,相对于温热眼前部,脉络膜厚度出现了小幅度但显著的增加,表明脉络膜能够响应局部温度变化而快速、短暂地调节其厚度。

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