School of Physics, Nanjing University, Nanjing, China.
School of Testing and Opto-Electric Engineering, Nanchang Hangkong University, Nanchang, China.
J Biophotonics. 2023 Aug;16(8):e202300074. doi: 10.1002/jbio.202300074. Epub 2023 May 21.
We developed a novel acoustic radiation force optical coherence elastography (ARF-OCE) based on an ultrasmall ultrasound transducer for quantitative biomechanics evaluations of in vivo cornea. A custom single-sided meta-ultrasonic transducer with an outer diameter of 1.8 mm, focal spot diameter of 1.6 mm, central frequency of 930 kHz, and focal length of 0.8 mm was applied to excite the sample. The sample arm of the ARF-OCE system employed a three-dimensional printed holder that allowed for ultrasound excitation and ARF-OCE detection. The phase-resolved algorithm was combined with a Lamb wave model to depth-resolved evaluate corneal biomechanics after keratoconus and cross-linking treatments (CXL). The results showed that, compare to the healthy cornea, the Lamb wave velocity was significantly reduced in the keratoconus, increased in the cornea after CXL, and increased with cross-linked irradiation energy in the cornea. These results indicated the good clinical translation potential of the proposed novel ARF-OCE.
我们开发了一种基于超小超声换能器的新型声辐射力光相干弹性成像(ARF-OCE)技术,用于活体角膜定量生物力学评估。应用外径为 1.8mm、焦点直径为 1.6mm、中心频率为 930kHz、焦距为 0.8mm 的定制单面超超声换能器激发样品。ARF-OCE 系统的样品臂采用三维打印支架,允许进行超声激发和 ARF-OCE 检测。该相位分辨算法与兰姆波模型相结合,深度解析评估圆锥角膜和交联治疗(CXL)后的角膜生物力学。结果表明,与健康角膜相比,圆锥角膜中的兰姆波速度显著降低,CXL 后角膜中的速度增加,角膜中的交联辐射能增加。这些结果表明,所提出的新型 ARF-OCE 具有良好的临床转化潜力。