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首页> 外文期刊>Microvascular Research: An International Journal >Evaluating changes of blood flow in retina, choroid, and outer choroid in rats in response to elevated intraocular pressure by 1300 nm swept-source OCT
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Evaluating changes of blood flow in retina, choroid, and outer choroid in rats in response to elevated intraocular pressure by 1300 nm swept-source OCT

机译:响应于1300nm扫掠源10月,评估大鼠视网膜,脉络膜和外脉络膜血流变化的变化

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We report the development of a 1300 nm swept-source optical coherence tomography (SS-OCT) system specifically designed to perform OCT imaging and optical microangiography (OMAG) in rat eyes in vivo and its use in evaluating the effects of intraocular pressure (IOP) elevation on ocular circulation. The swept laser is operated in single longitude mode with a 90 nm bandwidth centered at 1300 nm and 200 kHz A-line rate, providing remarkable sensitivity fall-off performance along the imaging depth, a larger field of view of 2.5 x 2.5 mm(2) (approximately 35 degrees), and more time-efficient imaging acquisition. The advantage of the SS-OCT/OMAG is highlighted by an increased imaging depth of the entire posterior thickness of optic nerve head (ONH) and its surrounding vascular anatomy, to include, for the first time in vivo, the vasculature at the scleral opening, allowing visualization of the circle of Zinn-Haller and posterior ciliary arteries (PCAs). Furthermore, the capillary-level resolution angiograms achieved at the retinal and choroidal layers over a larger field of view enable a significantly improved quantification of the response of vascular area density (VAD) to elevated TOP. The results indicate that reduction in perfusion of the choroid in response to elevated TOP is delayed compared to that seen in the retina; while choroidal VAD doesn't reach 50% of baseline until similar to 70 mmHg, the same effect is seen for the retinal VAD at similar to 60 mmHg. The superior image quality offered by SS-OCT may allow more comprehensive investigation of TOP-related ocular perfusion changes and their pathological roles in glaucomatous optic nerve damage.
机译:我们报告了开发1300nm扫描源光学相干断层扫描(SS-OCT)系统,专门设计用于在体内进行大鼠眼中的OCT成像和光学微观造影(OMAG),并用于评估眼内压(IOP)的影响眼循环的高度。扫描激光器以单位经度模式操作,90nm带宽以1300nm和200kHz的A线速率为中心,提供了沿着成像深度的显着灵敏度脱落性能,较大的2.5 x 2.5 mm视野(2 )(约35度),更节省的成像采集。 SS-OCT / OMAG的优点是由光神经头部(ONH)的整个后厚度(ONH)和周围的血管解剖学的成像深度增加,以包括在巩膜开口处的脉管系统中的第一次包括,允许可视化Zinn-Haller和后睫状体动脉(PCA)的圆圈。此外,在视网膜和脉络膜层上实现的毛细管水平分辨率血管仪在更大的视野上实现,使得血管区域密度(VAD)的响应显着改善了升高的顶部。结果表明,与视网膜中所见相比,延迟延迟呼应脉络膜的灌注减少;虽然脉络膜VAD没有达到基线的50%,直到类似于70 mmHg,但对于类似于60 mmHg的视网膜VAD,看到相同的效果。 SS-OCT提供的卓越图像质量可能允许更全面调查顶部相关的眼睛灌注变化及其在青光眼视神经损伤中的病理作用。

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