Materials Science and Engineering Program University of California San Diego, La Jolla, California, USA.
StyloSonic LLC, San Diego, United States.
Dentomaxillofac Radiol. 2023 Jan 1;52(1):20220220. doi: 10.1259/dmfr.20220220. Epub 2022 Sep 28.
To customize a miniaturized ultrasound transducer to access full-mouth B-mode, color Doppler, and spectral Doppler imaging for monitoring oral health.
A customized periodontal ultrasound transducer SS-19-128 (19 MHz, 128 channels) 1.8-cm wide and 1-cm thick was developed and connected to a data acquisition (DAQ) system. B-mode, color Doppler, and spectral Doppler data could all be collected with SS-19-128. The imaging resolution and penetration capacity of SS-19-128 were characterized on phantoms. The gingival thickness was measured on 11 swine teeth by SS-19-128 for comparison with conventional transgingival probing via Bland-Altman analysis and Pearson correlation. Five human subjects were then recruited to demonstrate B-mode and Doppler imaging by SS-19-128.
The axial and lateral spatial resolution at 5.5 mm depth is 102.1 µm and 142.9 µm, respectively. The penetration depth in a tissue-mimicking phantom is over 30 mm. B-mode imaging of all 28 teeth was demonstrated on one human subject, and imaging of tooth #18 was accessed on five human subjects. Gingival thickness measurement compared with transgingival probing showed a bias of -0.015 mm and SD of 0.031 mm, and a = 0.9235 ( < 0.0001) correlation. color and spectral Doppler imaging of the supraperiosteal artery in human gingiva was performed to generate hemodynamic information.
The small size of SS-19-128 offers important advantages over existing ultrasound technology-more specifically, whole-mouth scanning/charting reminiscent of radiography. This is nearly a two-fold increase in the number of teeth that can be assessed versus conventional transducers.
定制微型超声换能器,以实现全口 B 模式、彩色多谱勒和频谱多谱勒成像,用于监测口腔健康。
开发了一种定制的牙周超声换能器 SS-19-128(19MHz,128 通道),宽 1.8 厘米,厚 1 厘米,并连接到数据采集(DAQ)系统。SS-19-128 可采集 B 模式、彩色多谱勒和频谱多谱勒数据。在体模上对 SS-19-128 的成像分辨率和穿透能力进行了表征。通过 Bland-Altman 分析和 Pearson 相关性比较,用 SS-19-128 测量 11 颗猪牙的牙龈厚度,并与传统的经牙龈探测进行比较。然后招募 5 名受试者,通过 SS-19-128 进行 B 模式和多谱勒成像演示。
在 5.5mm 深度处,轴向和侧向空间分辨率分别为 102.1µm 和 142.9µm。在组织模拟体模中的穿透深度超过 30mm。在一名受试者上演示了所有 28 颗牙齿的 B 模式成像,在五名受试者上访问了牙齿#18 的成像。与经牙龈探测相比,牙龈厚度测量的偏差为-0.015mm,标准差为 0.031mm,相关系数为 a = 0.9235(<0.0001)。对人牙龈的骨膜上动脉进行彩色和频谱多谱勒成像,以生成血流动力学信息。
SS-19-128 的小尺寸相对于现有超声技术具有重要优势-具体来说,类似于射线照相术的全口扫描/图表。与传统换能器相比,可评估的牙齿数量增加了近一倍。