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首页> 外文期刊>Investigative ophthalmology & visual science >Feasibility Study of the 3D Visualization at High Resolution of Intra-Cranial Rabbit Eyes With X-Ray CT Phase-Contrast Imaging
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Feasibility Study of the 3D Visualization at High Resolution of Intra-Cranial Rabbit Eyes With X-Ray CT Phase-Contrast Imaging

机译:X射线CT相衬成像技术在颅内兔眼高分辨率下进行3D可视化的可行性研究

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Purpose: The intracranial three-dimensional (3D) visualization of the whole volume of the eyeball at micrometric resolution has not been achieved yet either in clinical nor in preclinical diagnostic research. Overcoming this limitation may provide a new tool for clinical and preclinical studies of different pathologies of the various sections of the eye. The aim of this work is to give the first insight of a volumetric visualization at the high resolution of the entire enucleated and intracranial postmortem rabbit eyeballs. Methods: X-ray computed tomography phase-contrast imaging was used to obtain 3D models of enucleated and intracranial rabbit eyes. Images were compared with the ones measured by using optical coherence tomography (OCT) images. The experiment was carried out at the European Synchrotron Radiation Facility. Results: Combining the unique possibilities offered by phase-contrast imaging, microtomography, and the properties of synchrotron radiation, the 3D visualization of the whole eyeball, at an isotropic voxel size of 3.1 ??m3, is reported here for the first time. Conclusions: High image contrast is achieved without the necessity of injection of contrast agents, thanks to the superior performances, achieved by x-ray phase-contrast imaging with respect to the conventional radiographic imaging. The measurement protocol developed within this work opens the way for in vivo high-resolution visualization of the entire organ.
机译:目的:尚未在临床或临床前诊断研究中实现以微米分辨率对眼球总体积进行颅内三维(3D)可视化。克服这一局限性可以为眼的各个部分的不同病理的临床和临床前研究提供新的工具。这项工作的目的是对高分辨率的整个去核和颅内死后兔眼球进行体积可视化的初步了解。方法:使用X射线计算机断层扫描相衬成像技术获得去核和颅内兔眼的3D模型。将图像与使用光学相干断层扫描(OCT)图像测量的图像进行比较。该实验是在欧洲同步加速器辐射设施上进行的。结果:结合相衬成像,显微断层照相术和同步加速器辐射特性提供的独特可能性,首次报道了全眼球的3D可视化,各向同性体素尺寸为3.1立方米。结论:由于X射线相衬成像相对于传统的X射线照相成像具有出色的性能,因此无需注射造影剂即可实现高图像对比度。在这项工作中开发的测量方案为整个器官的体内高分辨率可视化开辟了道路。

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