Opt Lett. 2023 Jun 1;48(11):2773-2776. doi: 10.1364/OL.482201.
In this study, we introduce a multifocal acoustic radiation force source that combines an ultrasound transducer and a 3D-printed acoustic lens for application in reverberant optical coherence elastography (Rev-OCE). An array of plano-concave acoustic lenses, each with an 11.8 mm aperture diameter, were used to spatially distribute the acoustic energy generated by a 1 MHz planar ultrasound transducer, producing multiple focal spots on a target plane. These focal spots generate reverberant shear wave fields detected by the optical coherence tomography (OCT) system. The effectiveness of the multifocal Rev-OCE system in probing mechanical properties with high resolution is demonstrated in layered gelatin phantoms.
在这项研究中,我们引入了一种多焦点声辐射力源,该源结合了超声换能器和 3D 打印的声透镜,用于在混响光相干弹性成像(Rev-OCE)中应用。使用了一组平面-凹面声透镜,每个声透镜的孔径直径为 11.8 毫米,用于空间分布由 1MHz 平面超声换能器产生的声能,在目标平面上产生多个焦点。这些焦点产生由光学相干断层扫描(OCT)系统检测到的混响剪切波场。在层状明胶仿体中,证明了多焦点 Rev-OCE 系统在高分辨率下探测机械特性的有效性。