Proposal of Pupil Diameter Measurement Method and Restraint Stress in Albino Rats for Estimate of Autonomic Nervous System

Natsuki Uchida, A. Katoh, Hiroki Kamijo, Kazunori Yamazaki, H. Sumikura, T. Arafune, A. Homma, T. Yaguchi
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Abstract

The autonomic nervous system controls the size of the pupil diameter. In particular, the pupil diameter fluctuation, which constantly change the size of the pupil under constant illuminance, is correlated with the heart rate fluctuation commonly used in autonomic function estimation. Autonomic function estimation by pupil diameter fluctuation is still under development because albino rats often used in autonomic nervous function experiments. In this study, we propose a method to detect a pupil and measure pupil diameter by image processing of albino rats under near-infrared illumination without fixing eyelids. As a result of pupillary diameter measurement accuracy evaluation, the mean error rate of the measured value and the calculated value was 0.51%, and the correlation coefficient was 0.955 (p < 0.001), suggesting the usefulness of the proposed method. In addition, we obtained the pupil diameter fluctuation under restraint load using the proposed method, and examined whether autonomic nerve function can be estimated by frequency analysis. The analysis confirmed the tendency of autonomic nervous system function observed during restraint load, suggesting that autonomic nervous function estimation by pupil diameter fluctuation may be possible.
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白化病大鼠瞳孔直径测量方法及约束应激评价自主神经系统的建立
自主神经系统控制瞳孔直径的大小。特别是瞳孔直径波动与自主功能估计中常用的心率波动相关,瞳孔直径波动在恒定光照下不断改变瞳孔大小。由于在自主神经功能实验中经常使用白化大鼠作为实验对象,因此用瞳孔直径波动法估计自主神经功能的方法尚处于发展阶段。在本研究中,我们提出了一种在近红外照射下不固定眼睑的情况下,通过图像处理检测白化病大鼠瞳孔和测量瞳孔直径的方法。对瞳孔直径测量精度进行评价,实测值与计算值的平均错误率为0.51%,相关系数为0.955 (p < 0.001),表明所提出方法的有效性。此外,我们利用所提出的方法获得了约束载荷下瞳孔直径的波动,并检验了是否可以通过频率分析来估计自主神经功能。分析证实了约束载荷过程中自主神经系统功能的变化趋势,提示用瞳孔直径波动来估计自主神经功能是可能的。
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