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显微镜集成 OCT 引导的巩膜下途径造孔后视网膜下液腔容积测量

Microscope-Integrated OCT-Guided Volumetric Measurements of Subretinal Blebs Created by a Suprachoroidal Approach.

机构信息

Department of Ophthalmology, Duke University of School of Medicine, Durham, NC, USA.

Department of Biomedical Engineering, Duke University, Durham, NC, USA.

出版信息

Transl Vis Sci Technol. 2021 Jun 1;10(7):24. doi: 10.1167/tvst.10.7.24.

Abstract

PURPOSE

To investigate the use of imaging modalities in the volumetric measurement of the subretinal space and examine the volume of subretinal blebs created by a subretinal drug delivery device utilizing microscope-integrated optical coherence tomography (MIOCT).

METHODS

An MIOCT image-based volume measurement method was developed and assessed for accuracy and reproducibility by imaging ceramic spheres of known size that were surgically implanted into ex vivo porcine eyes. This method was then used to measure subretinal blebs created in 10 porcine eyes by injection of balanced salt solution utilizing a subretinal delivery device via a suprachoroidal cannula. Bleb volumes obtained from MIOCT were compared to the intended injection volume.

RESULTS

Validation of image-based volume measurements of ceramic spheres showed accuracy to ±0.029 µL (5.6%) for objects imaged over the posterior pole and ±0.025 µL (4.8%) over peripheral retina. The mean expected injection volume from extraocular tests of the suprachoroidal cannula was 66.44 µL (σ = 2.4 µL). The mean injection volume as measured by the MIOCT imaging method was 54.8 µL (σ = 12.3 µL), or 82.48% of expected injection volume.

CONCLUSIONS

MIOCT can measure the volume of subretinal blebs with accuracy and precision. The novel suprachoroidal approach using a subretinal delivery device was able to deliver greater than 80% of expected injection volume into the subretinal space, as assessed by MIOCT.

TRANSLATIONAL RELEVANCE

MIOCT provides a method for visualization, and analysis of images enables surgeons to quantify and evaluate the success of subretinal drug delivery via a suprachoroidal approach.

摘要

目的

研究在视网膜下空间的容积测量中使用的成像方式,并利用显微镜集成光学相干断层扫描(MIOCT)检查利用视网膜下药物输送装置创建的视网膜下气泡的体积。

方法

开发了一种基于 MIOCT 图像的体积测量方法,并通过对手术植入离体猪眼的已知大小的陶瓷球进行成像来评估其准确性和可重复性。然后,使用该方法通过经脉络膜上腔的套管注射平衡盐溶液,测量 10 只猪眼内通过视网膜下给药装置产生的视网膜下气泡。从 MIOCT 获得的气泡体积与预期的注射体积进行比较。

结果

对陶瓷球的基于图像的体积测量的验证表明,对于在后极成像的物体,准确性为±0.029 µL(5.6%),对于周边视网膜成像的物体,准确性为±0.025 µL(4.8%)。经眼外测试,对脉络膜上腔套管的预期注射体积平均值为 66.44 µL(σ=2.4 µL)。MIOCT 成像方法测量的平均注射体积为 54.8 µL(σ=12.3 µL),即预期注射体积的 82.48%。

结论

MIOCT 可以准确和精确地测量视网膜下气泡的体积。使用视网膜下输送装置的新型脉络膜上方法能够将超过 80%的预期注射体积输送到视网膜下空间,这通过 MIOCT 进行评估。

翻译

曹梦宇

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1686/8212437/498ff58386b6/tvst-10-7-24-f001.jpg

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