Rohrbach Daniel, Lloyd Harriet O, Silverman Ronald H, Mamou Jonathan
Lizzi Center for Biomedical Engineering, Riverside Research, New York, New York 10038, USA
Department of Ophthalmology, Columbia University Medical Center, New York, New York 10032, USA
J Acoust Soc Am. 2015 May;137(5):EL381-7. doi: 10.1121/1.4916790.
Ex vivo assessment of microscale tissue biomechanical properties of the mammalian retina could offer insights into diseases such as keratoconus, and macular degeneration. A 250-MHz scanning acoustic microscope (7-μm resolution) has been constructed to derive two-dimensional quantitative maps of attenuation (α), speed of sound (c), acoustic impedance (Z), bulk modulus (B), and mass density ( ρ). The two-dimensional maps were compared to coregistered hematoxylin-and-eosin stained sections. This study is the first to quantitatively assess α, c, Z, B, and ρ of individual retinal layers of mammalian animals at high ultrasound frequencies. Significant differences in these parameters between the layers were demonstrated.
对哺乳动物视网膜的微观组织生物力学特性进行离体评估,有助于深入了解诸如圆锥角膜和黄斑变性等疾病。现已构建一台250兆赫扫描声学显微镜(分辨率为7微米),以获取衰减(α)、声速(c)、声阻抗(Z)、体积模量(B)和质量密度(ρ)的二维定量图谱。将这些二维图谱与经苏木精和伊红染色的共定位切片进行比较。本研究首次在高超声频率下对哺乳动物个体视网膜各层的α、c、Z、B和ρ进行定量评估。结果表明,各层之间这些参数存在显著差异。