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在体兔眼微血管成像的 3D 超声定位显微镜。

In vivo ocular microvasculature imaging in rabbits with 3D ultrasound localization microscopy.

机构信息

School of Optical and Electronic Information, Huazhong University of Science and Technology, Wuhan 430074, China; Institute of Biomedical and Health Engineering, Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences, Shenzhen 518055, China.

Institute of Biomedical and Health Engineering, Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences, Shenzhen 518055, China.

出版信息

Ultrasonics. 2023 Aug;133:107022. doi: 10.1016/j.ultras.2023.107022. Epub 2023 May 9.

Abstract

Morphological and hemodynamic changes in the ocular vasculature are important signs of various ocular diseases. The evaluation of the ocular microvasculature with high resolution is valuable in comprehensive diagnoses. However, it is difficult for current optical imaging techniques to visualize the posterior segment and retrobulbar microvasculature due to the limited penetration depth of light, particularly when the refractive medium is opaque. Thus, we have developed a 3D ultrasound localization microscopy (ULM) imaging method to visualize the ocular microvasculature in rabbits with micron-scale resolution. We used a 32 × 32 matrix array transducer (center frequency: 8 MHz) with a compounding plane wave sequence and microbubbles. Block-wise singular value decomposition spatiotemporal clutter filtering and block-matching 3D denoising were implemented to extract the flowing microbubble signals at different imaging depths with high signal-to-noise ratios. The center points of microbubbles were localized and tracked in 3D space to achieve the micro-angiography. The in vivo results demonstrate the ability of 3D ULM to visualize the microvasculature of the eye in rabbits, where vessels down to 54 μm were successfully revealed. Moreover, the microvascular maps indicated the morphological abnormalities in the eye with retinal detachment. This efficient modality shows potential for use in the diagnosis of ocular diseases.

摘要

眼部脉管系统的形态和血流动力学变化是各种眼部疾病的重要征象。用高分辨率评估眼部微血管对于综合诊断具有重要价值。然而,由于光的穿透深度有限,特别是当屈光介质不透明时,目前的光学成像技术很难可视化后节和球后微血管。因此,我们开发了一种 3D 超声定位显微镜(ULM)成像方法,以亚微米分辨率可视化兔眼的眼部微血管。我们使用具有复合平面波序列和微泡的 32×32 矩阵阵列换能器(中心频率:8MHz)。采用分块奇异值分解时空杂波滤波和块匹配 3D 去噪技术,以高信噪比提取不同成像深度的流动微泡信号。在 3D 空间中对微泡中心点进行定位和跟踪,以实现微血管成像。体内结果表明,3D ULM 能够可视化兔眼的微血管,成功显示出 54μm 以下的血管。此外,微血管图谱显示出视网膜脱离眼的形态异常。这种高效的方法有望用于眼部疾病的诊断。

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