应用于青光眼模型的视网膜和脉络膜血流量化磁共振成像改进方法

Zhao Jiang, Diane Chernoff, Andre Galenchik-Chan, David Tomorri, Robert A. Honkanen, Timothy Q. Duong, E. Muir
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摘要

视网膜和脉络膜血管的血流(BF)可通过核磁共振成像进行定量成像。本研究试图改进视网膜和脉络膜特异层血流磁共振成像的数据采集和分析方法,然后应用这种方法检测一种成熟的青光眼小鼠模型中双眼眼部血流减少的情况。动脉自旋标记核磁共振成像应用于视网膜和脉络膜BF成像,使用的是定制的双眼线圈,可在同一次扫描中对双眼进行成像。使用单眼或双眼数据进行统计比较。采用两种方法计算 BF 值。按照通常的方法计算每量组织的 BF 率,并得出视网膜和脉络膜血管的峰值 BF 值。此外,还使用一种新的分析方法计算每视网膜表面积的 BF 率,试图通过整合视网膜和脉络膜深度的 BF 来减少部分体积和可变性。与 C57BL/6J 小鼠相比,DBA/2J 小鼠的眼压明显升高(P<0.01)。在所有测量中,与年龄匹配的正常 C57BL/6J 小鼠相比,DBA/2J 小鼠的视网膜和脉络膜 BF 都明显下降(P < 0.01)。从模拟结果来看,综合 BF 分析方法得出的数值具有较小的部分体积效应,而从体内扫描结果来看,这种分析方法也提高了功率。双眼线圈设置允许采集双眼数据,在不增加体内采集时间的情况下增加了采集的数据量。使用改进后的采集和分析方法发现,眼压降低了,这与之前对 DBA/2J 小鼠的研究结果相吻合。在这些小鼠体内发现的眼压应激引起的眼压降低可能代表了与青光眼进展相关的变化。
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Improved MRI methods to quantify retinal and choroidal blood flow applied to a model of glaucoma
Blood flow (BF) of the retinal and choroidal vasculatures can be quantitatively imaged using MRI. This study sought to improve methods of data acquisition and analysis for MRI of layer-specific retinal and choroidal BF and then applied this approach to detect reduced ocular BF in a well-established mouse model of glaucoma from both eyes.Quantitative BF magnetic resonance imaging (MRI) was performed on glaucomatous DBA/2J and normal C57BL/6J mice. Arterial spin labeling MRI was applied to image retinal and choroidal BF using custom-made dual eye coils that could image both eyes during the same scan. Statistics using data from a single eye or two eyes were compared. BF values were calculated using two approaches. The BF rate per quantity of tissue was calculated as commonly done, and the peak BF values of the retinal and choroidal vasculatures were taken. Additionally, the BF rate per retinal surface area was calculated using a new analysis approach to attempt to reduce partial volume and variability by integrating BF over the retinal and choroidal depths.Ocular BF of both eyes could be imaged using the dual coil setup without effecting scan time. Intraocular pressure was significantly elevated in DBA/2J mice compared to C57BL/6J mice (P<0.01). Both retinal and choroidal BF were significantly decreased in DBA/2J mice in comparison to the age-matched normal C57BL/6J mice across all measurements (P < 0.01). From simulations, the values from the integrated BF analysis method had less partial volume effect, and from in vivo scans, this analysis approach also improved power.The dual eye coil setup allows bilateral eye data acquisition, increasing the amount of data acquired without increasing acquisition times in vivo. The reduced ocular BF found using the improved acquisition and analysis approaches replicated the results of previous studies on DBA/2J mice. The ocular hypertensive stress-induced BF reduction found within these mice may represent changes associated with glaucomatous progression.
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