巩膜
弹性成像
角膜
生物力学
生物医学工程
眼压
超声波传感器
计算机科学
超声波
青光眼
视神经
镜头(地质)
医学
眼科
放射科
光学
解剖
物理
作者
Runze Li,Xuejun Qian,Chen Gong,Junhang Zhang,Ying Liu,Benjamin Y. Xu,Mark S. Humayun,Qifa Zhou
标识
DOI:10.1109/tbme.2022.3215498
摘要
Current elastography techniques in the field of ophthalmology usually target one specific tissue, such as the cornea or the sclera. However, the eye is an inter-related organ, and some ocular diseases can alter the biomechanical properties of multiple anatomical structures. Hence, there is a need to develop an imaging tool that can non-invasively, quantitatively, and accurately characterize dynamic changes among these biomechanical properties.
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