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Shear wave elastography of ex vivo human corneas using phase-sensitive optical coherence tomography

机译:使用相敏光学相干断层扫描技术对离体人角膜进行剪切波弹性成像

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Assessing the biomechanical properties of the cornea can provide clinically valuable information in addition to structural images for better management of pathologies (e.g. glaucoma) or refractive surgeries. OCT provides a micron scale and high sensitivity that are ideal for ophthalmic applications. We propose a shear wave elastography (SWE) method for the cornea based on phase-sensitive optical coherence tomography (PhS-OCT). SWE consists in launching a propagating shear wave in tissues and retrieving tissue elasticity from the shear wave speed. We used a piezo-electric actuator in contact with the cornea to induce shear waves that were then tracked using a PhSOCT system operating in M-B mode at an equivalent frame rate of 45 kHz. The actuator was driven by a broadband, linear-swept frequency sine. The corresponding displacements were numerically transformed into a short and spatially localized pulse by a pulse compression algorithm. The local shear wave speed was then computed using time-of-flight estimations. We performed experiments on excised human corneas obtained from the eye bank. The corneas were mounted on an artificial anterior chamber in which the IOP could be varied. Elasticity measurements were acquired for IOP ranging from 10 to 40 mmHg. These preliminary studies demonstrate the feasibility of using PhS-OCT for elastography of human corneas. Further studies will aim at developing non-contact shear sources for clinical translation.
机译:评估角膜的生物力学性质可以提供临床上有价值的信息,除了结构图像,以便更好地管理病理(例如青光眼)或屈光手术。 OCT提供微米级和高灵敏度,是眼科应用的理想选择。我们提出了基于相敏光学相干断层扫描(PHS-OCT)的角膜的剪切波形弹性造影(SWE)方法。 SWE包括在组织中发射传播剪切波并从剪切波速中检索组织弹性。我们使用压电致动器与角膜接触以诱导使用在M-B模式下以45kHz的等效帧速率在M-B模式下操作的PHSOCT系统跟踪的剪切波。执行器由宽带,线性扫描频率正弦驱动。通过脉冲压缩算法将相应的位移数值转换成短且空间局部化脉冲。然后使用飞行时间估计计算局部剪切波速度。我们对从眼部中获得的切除的人体玉米体进行了实验。将玉米体安装在人工前室上,其中可以改变IOP。获得从10至40mmHg的IOP获得弹性测量。这些初步研究证明了使用PHS-OCT用于人体角膜弹性术的可行性。进一步的研究将旨在开发非接触剪切来源进行临床翻译。

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