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足部浸入温水中后,在副交感神经占优势期间脉络膜厚度增加。

Choroidal Thickness Increases During Parasympathetic Dominance After Immersion of the Foot in Warm Water.

作者信息

Toh Natsumi, Hashimoto Yuki, Kuwahara Fuka, Yoshimura Miki, Imabayashi Sakurako, Yoshitomi Takeshi

机构信息

Department of Orthoptics, Fukuoka International University of Health and Welfare, Fukuoka, JPN.

出版信息

Cureus. 2024 Jan 29;16(1):e53194. doi: 10.7759/cureus.53194. eCollection 2024 Jan.

Abstract

PURPOSE

This study aimed to assess the course of changes in choroidal morphology after immersion of the foot in warm water at 40°C using enhanced depth imaging optical coherence tomography (EDI-OCT).

METHODS

Forty-three right eyes of 43 healthy participants were included. Changes in choroidal morphology were determined using EDI-OCT to evaluate subfoveal choroidal thickness (SCT). Systolic, diastolic, and mean blood pressures (SBP, DBP, and MBP, respectively) were also measured to determine systemic circulatory dynamics at baseline, immediately after immersion (0 min), and 10, 20, and 30 min after immersion.

RESULTS

Immediately after immersion, SBP, DBP, and MBP were significantly declined versus baseline. In contrast, the SCT was significantly increased after warm water immersion. However, all these parameters did not change significantly compared to the baseline within 30 min.

CONCLUSION

In the normal eye, parasympathetic nerve activity induced by warming stimuli increases choroidal morphology in response to a decrease in systemic circulatory activity, which normalizes within 30 min. The findings of this study may provide basic data for the prevention and treatment of various choroidal diseases in which sympathetic hyperactivity is involved in the pathogenesis.

摘要

目的

本研究旨在使用增强深度成像光学相干断层扫描(EDI-OCT)评估足部浸入40°C温水中后脉络膜形态的变化过程。

方法

纳入43名健康参与者的43只右眼。使用EDI-OCT评估黄斑下脉络膜厚度(SCT)来确定脉络膜形态的变化。还测量了收缩压、舒张压和平均血压(分别为SBP、DBP和MBP),以确定基线时、浸入后即刻(0分钟)以及浸入后10、20和30分钟时的全身循环动力学。

结果

浸入后即刻,SBP、DBP和MBP与基线相比显著下降。相比之下,温水浸泡后SCT显著增加。然而,与基线相比,所有这些参数在30分钟内均无显著变化。

结论

在正常眼睛中,温热刺激诱导的副交感神经活动会随着全身循环活动的减少而增加脉络膜形态,这种变化在30分钟内恢复正常。本研究结果可能为预防和治疗各种交感神经过度活跃参与发病机制的脉络膜疾病提供基础数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5e8/10902740/6d9aba414947/cureus-0016-00000053194-i01.jpg

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