University of Houston, Department of Biomedical Engineering, Houston, Texas, United States.
University of Houston, Department of Mechanical Engineering, Houston, Texas, United States.
J Biomed Opt. 2020 May;25(5):1-9. doi: 10.1117/1.JBO.25.5.055001.
It is generally agreed that the corneal mechanical properties are strongly linked to many eye diseases and could be used to assess disease progression and response to therapies. Elastography is the most notable method of assessing corneal mechanical properties, but it generally requires some type of external excitation to induce a measurable displacement in the tissue.
We present Heartbeat Optical Coherence Elastography (Hb-OCE), a truly passive method that can measure the elasticity of the cornea based on intrinsic corneal displacements induced by the heartbeat.
Hb-OCE measurements were performed in untreated and UV-A/riboflavin cross-linked porcine corneas ex vivo, and a distinct difference in strain was detected. Furthermore, a partially cross-linked cornea was also assessed, and the treated and untreated areas were similarly distinguished.
Our results suggest that Hb-OCE can spatially map displacements in the cornea induced by small fluctuations in intraocular pressure, similar to what is induced by the heartbeat.
The described technique opens the possibility for completely passive and noncontact in vivo assessment of corneal stiffness.
人们普遍认为角膜力学特性与许多眼病密切相关,可用于评估疾病的进展和治疗反应。弹性成像术是评估角膜力学特性的最显著方法,但它通常需要某种外部激励来引起组织的可测量位移。
我们提出了基于心跳引起的角膜固有位移的心动光学相干弹性成像(Hb-OCE),这是一种真正被动的方法,可以测量角膜的弹性。
在未经处理和 UV-A/核黄素交联的猪角膜上进行了 Hb-OCE 测量,检测到应变的明显差异。此外,还评估了部分交联的角膜,并可以区分处理和未处理的区域。
我们的结果表明,Hb-OCE 可以空间映射眼压小波动引起的角膜位移,类似于心跳引起的位移。
所描述的技术为完全被动和非接触式活体评估角膜硬度开辟了可能性。