IEEE Trans Biomed Eng. 2022 May;69(5):1585-1594. doi: 10.1109/TBME.2021.3120368. Epub 2022 Apr 21.
The ocular vascular system plays an important role in preserving the visual function. Alterations in either anatomy or hemodynamics of the eye may have adverse effects on vision. Thus, an imaging approach that can monitor alterations of ocular blood flow of the deep eye vasculature ranging from capillary-level vessels to large supporting vessels would be advantageous for detection of early stage retinal and optic nerve diseases.
We propose a super-resolution ultrasound localization microscopy (ULM) technique that can assess both the microvessel and flow velocity of the deep eye with high resolution. Ultrafast plane wave imaging was acquired using an L22-14v linear array on a high frequency Verasonics Vantage system. A robust microbubble localization and tracking technique was applied to reconstruct ULM images. The experiment was first performed on pre-designed flow phantoms in vitro and then tested on a New Zealand white rabbit eye in vivo calibrated to various intraocular pressures (IOP) - 10 mmHg, 30 mmHg and 50 mmHg.
We demonstrated that retinal/choroidal vessels, central retinal artery, posterior ciliary artery, and vortex vein were all visible at high resolution. In addition, reduction of vascular density and flow velocity were observed with elevated IOPs.
These results indicate that super-resolution ULM is able to image the deep ocular tissue while maintaining high resolution that is comparable with optical coherence tomography angiography.
Capability to detect subtle changes of blood flow may be clinically important in detecting and monitoring eye diseases such as glaucoma.
眼部血管系统对于维持视觉功能具有重要作用。眼部解剖结构或血液动力学的改变可能对视功能产生不良影响。因此,一种能够监测从毛细血管水平到大型支持血管的深部眼血管血流改变的成像方法,对于早期发现视网膜和视神经疾病将具有优势。
我们提出了一种超分辨率超声定位显微镜(ULM)技术,可以对深部眼的微血管和血流速度进行高分辨率评估。使用高频 Verasonics Vantage 系统上的 L22-14v 线性阵列进行超快平面波成像。采用稳健的微泡定位和跟踪技术来重建 ULM 图像。首先在体外预先设计的流动体模上进行实验,然后在新西兰白兔眼睛上进行体内测试,该白兔眼睛的眼压(IOP)分别校准为 10mmHg、30mmHg 和 50mmHg。
我们证明了视网膜/脉络膜血管、中央视网膜动脉、睫状后动脉和涡静脉都可以高分辨率显示。此外,随着眼压升高,血管密度和血流速度降低。
这些结果表明,超分辨率 ULM 能够在保持与光学相干断层扫描血管造影相当的高分辨率的同时对深部眼部组织进行成像。
检测血流细微变化的能力在检测和监测青光眼等眼部疾病方面可能具有重要的临床意义。