Heo Jeongmin, Biswas Deblina, Park Kyu Kwan, Son Donghee, Park Hui Joon, Baac Hyoung Won
Department of Electrical and Computer Engineering, Sungkyunkwan University, Suwon 16419, Republic of Korea.
These authors equally contributed to this work.
Biomed Opt Express. 2021 Feb 9;12(3):1375-1390. doi: 10.1364/BOE.416884. eCollection 2021 Mar 1.
We demonstrate a laser-generated focused ultrasound (LGFU) transducer using a perforated-photoacoustic (PA) lens and a piezoelectric probe hydrophone suitable for high-frequency ultrasound tissue characterization. The perforated-PA lens employed a centrally located hydrophone to achieve a maximum directional response at 0° from the axial direction of the lens. Under pulsed laser irradiation, the lens produced LGFU pulses with a frequency bandwidth of 6-30 MHz and high-peak pressure amplitudes of up to 46.5 MPa at a 70-µm lateral focal width. Since the hydrophone capable of covering the transmitter frequency range (∼20 MHz) was integrated with the lens, this hybrid transducer differentiated tissue elasticity by generating and detecting high-frequency ultrasound signals. Backscattered (BS) waves from excised tissues (bone, skin, muscle, and fat) were measured and also confirmed by laser-flash shadowgraphy. We characterized the LGFU-BS signals in terms of mean frequency and spectral energy in the frequency domain, enabling to clearly differentiate tissue types. Tissue characterization was also performed with respect to the LGFU penetration depth (from the surface, 1-, and 2-mm depth). Despite acoustic attenuation over the penetration depth, LGFU-BS characterization shows consistent results that can differentiate the elastic properties of tissues. We expect that the proposed transducer can be utilized for other tissue types and also for non-destructive evaluation based on the elasticity of unknown materials.
我们展示了一种使用穿孔光声(PA)透镜和压电探头水听器的激光产生聚焦超声(LGFU)换能器,适用于高频超声组织表征。穿孔PA透镜采用位于中心的水听器,以在与透镜轴向成0°的方向上实现最大方向响应。在脉冲激光照射下,该透镜产生频率带宽为6 - 30 MHz的LGFU脉冲,在70-μm横向焦宽处具有高达46.5 MPa的高峰压幅值。由于能够覆盖发射机频率范围(约20 MHz)的水听器与透镜集成在一起,这种混合换能器通过产生和检测高频超声信号来区分组织弹性。测量了切除组织(骨、皮肤、肌肉和脂肪)的背向散射(BS)波,并通过激光闪光阴影成像进行了确认。我们在频域中根据平均频率和频谱能量对LGFU-BS信号进行了表征,能够清晰地区分组织类型。还针对LGFU穿透深度(从表面、1毫米和2毫米深度)进行了组织表征。尽管在穿透深度上存在声衰减,但LGFU-BS表征显示出能够区分组织弹性特性的一致结果。我们期望所提出的换能器可用于其他组织类型,也可用于基于未知材料弹性的无损评估。