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一种用于测量和成像视网膜微循环动脉期氧密度比的新型无创系统的研发。

Development of a novel noninvasive system for measurement and imaging of the arterial phase oxygen density ratio in the retinal microcirculation.

作者信息

Ishikawa Shinichiro, Yoshinaga Yukiyasu, Kantake Daichi, Nakamura Daisuke, Yoshida Noriko, Hisatomi Toshio, Ikeda Yasuhiro, Ishibashi Tatsuro, Enaida Hiroshi

机构信息

Department of Ophthalmology, Faculty of Medicine, Saga University, 5-1-1 Nabeshima, Saga, 849-8501, Japan.

Graduate School of Design, Kyushu University, 4-9-1 Shiobaru, Fukuoka, Minami-ku, 815-8540, Japan.

出版信息

Graefes Arch Clin Exp Ophthalmol. 2019 Mar;257(3):557-565. doi: 10.1007/s00417-018-04211-z. Epub 2018 Dec 19.

Abstract

PURPOSE

This study was conducted in order to develop a novel noninvasive system for measurement and imaging of the arterial oxygen density ratio (ODR) in the retinal microcirculation.

METHODS

We developed a system composed of two digital cameras with two different filters, which were attached to a fundus camera capable of simultaneously obtaining two images. Actual measurements were performed on healthy volunteer eyes (n = 61). A new algorithm for ODR measurement and pixel-level imaging of erythrocytes was constructed from these data. The algorithm was based on the morphological closing operation and the line convergence index filter. For system calibration, we compared and verified the ODR values in arterioles and venules that were specified in advance for 56 eyes with reproducibility. In 10 additional volunteers, ODR measurements and imaging of the arterial phase in the retinal microcirculation corresponding to changes in oxygen saturation of the peripheral arteries at normal breathing and breath holding were performed.

RESULTS

Estimation of incident light to erythrocytes and pixel-level ODR calculation were achieved using the algorithm. The mean ODR values of arterioles and venules were 0.77 ± 0.060 and 1.02 ± 0.067, respectively. It was possible to separate these regions, calibrate at the pixel level, and estimate the arterial phase. In each of the 10 volunteers, changes in the arterial phase ODR corresponding to changes in oxygen saturation of the peripheral arteries were observed before and after breath holding on ODR images. The mean ODR in 10 volunteers was increased by breath holding (p < 0.05).

CONCLUSIONS

We developed a basic system for arterial phase ODR measurement and imaging of the retinal microcirculation. With further validation and development, this may provide a useful tool for evaluating retinal oxygen metabolism in the retinal microcirculation.

摘要

目的

开展本研究以开发一种用于测量和成像视网膜微循环中动脉血氧密度比(ODR)的新型无创系统。

方法

我们开发了一个由配备两个不同滤光片的数码相机组成的系统,该系统连接到一台能够同时获取两幅图像的眼底相机上。对健康志愿者的眼睛(n = 61)进行了实际测量。基于这些数据构建了一种用于ODR测量和红细胞像素级成像的新算法。该算法基于形态学闭运算和线收敛指数滤波器。为进行系统校准,我们比较并验证了56只眼中预先指定的小动脉和小静脉中的ODR值,并具有可重复性。在另外10名志愿者中,进行了视网膜微循环中动脉期的ODR测量和成像,这些测量和成像对应于正常呼吸和屏气时外周动脉血氧饱和度的变化。

结果

使用该算法实现了对红细胞入射光的估计和像素级ODR计算。小动脉和小静脉的平均ODR值分别为0.77±0.060和1.02±0.067。可以分离这些区域,在像素级别进行校准,并估计动脉期。在10名志愿者中的每一位中,在屏气前后的ODR图像上均观察到与外周动脉血氧饱和度变化相对应的动脉期ODR变化。10名志愿者的平均ODR通过屏气增加(p < 0.05)。

结论

我们开发了一种用于视网膜微循环动脉期ODR测量和成像的基础系统。经过进一步验证和开发,这可能为评估视网膜微循环中的视网膜氧代谢提供一种有用的工具。

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