IEEE Trans Ultrason Ferroelectr Freq Control. 2018 Dec;65(12):2418-2428. doi: 10.1109/TUFFC.2018.2872911. Epub 2018 Oct 1.
Approximately 80% of men who reach 80 years of age will have some form of prostate cancer. The challenge remains to differentiate benign and malignant lesions. Based on recent research, acoustic angiography, a novel contrast-enhanced ultrasound imaging technique, can provide high-resolution visualization of tissue microvasculature and has demonstrated the ability to differentiate vascular characteristics between healthy and tumor tissue in preclinical studies. We hypothesize that transrectal acoustic angiography may enhance the assessment of prostate cancer. In this paper, we describe the development of a dual frequency, dual-layer colinear array transducer for transrectal acoustic angiography. The probe consists of 64 transmitting (TX) elements with a center frequency of 3 MHz and 128 receiving (RX) elements with a center frequency of 15 MHz. The dimensions of the array are 18 mm in azimuth and 9 mm in elevation. The pitch is [Formula: see text] for TX elements and 140 [Formula: see text] for RX elements. Pulse-echo tests of TX/RX elements and aperture acoustic field measurements were conducted, and both results were compared with the simulation results. Real-time contrast imaging was performed using a Verasonics system and a tissue-mimicking phantom. Nonlinear acoustic responses from microbubble contrast agents at a depth of 35 mm were clearly observed. In vivo imaging in a rodent model demonstrated the ability to detect individual vessels underneath the skin. These results indicate the potential use of the array described herein for acoustic angiography imaging of prostate tumor and identification of regions of neovascularization for the guidance of prostate biopsies.
大约 80%的 80 岁以上男性将患有某种形式的前列腺癌。目前的挑战仍然是区分良性和恶性病变。基于最近的研究,声振造影,一种新的对比增强超声成像技术,可以提供组织微血管的高分辨率可视化,并已在临床前研究中证明能够区分健康组织和肿瘤组织的血管特征。我们假设经直肠声振造影可以增强前列腺癌的评估。在本文中,我们描述了一种用于经直肠声振造影的双频双层共线阵探头的研制。探头由 64 个发射(TX)元件组成,中心频率为 3 MHz,由 128 个接收(RX)元件组成,中心频率为 15 MHz。该阵列的尺寸在方位角为 18mm,仰角为 9mm。TX 元件的节距为[Formula: see text],RX 元件的节距为 140[Formula: see text]。进行了 TX/RX 元件的脉冲回波测试和孔径声场测量,并且将两个结果与模拟结果进行了比较。使用 Verasonics 系统和组织模拟体模进行了实时对比成像。在深度为 35mm 处可以清楚地观察到微泡造影剂的非线性声响应。在啮齿动物模型中的体内成像表明,能够检测到皮肤下的单个血管。这些结果表明,本文所述的阵列在前列腺肿瘤的声振造影成像以及识别新生血管化区域以指导前列腺活检方面具有潜在的应用价值。