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用于光声引导介入的柔性阵列换能器:体模与演示

Flexible array transducer for photoacoustic-guided interventions: phantom and demonstrations.

作者信息

Zhang Jiaxin, Wiacek Alycen, Feng Ziwei, Ding Kai, Lediju Bell Muyinatu A

机构信息

Department of Electrical and Computer Engineering, Johns Hopkins University, Baltimore, MD 21218, USA.

Department of Radiation Oncology and Molecular Radiation Sciences, Johns Hopkins Medicine, Baltimore, MD 21287, USA.

出版信息

Biomed Opt Express. 2023 Jul 28;14(8):4349-4368. doi: 10.1364/BOE.491406. eCollection 2023 Aug 1.

Abstract

Photoacoustic imaging has demonstrated recent promise for surgical guidance, enabling visualization of tool tips during surgical and non-surgical interventions. To receive photoacoustic signals, most conventional transducers are rigid, while a flexible array is able to deform and provide complete contact on surfaces with different geometries. In this work, we present photoacoustic images acquired with a flexible array transducer in multiple concave shapes in phantom and bovine liver experiments targeted toward interventional photoacoustic applications. We validate our image reconstruction equations for known sensor geometries with simulated data, and we provide empirical elevation field-of-view, target position, and image quality measurements. The elevation field-of-view was 6.08 mm at a depth of 4 cm and greater than 13 mm at a depth of 5 cm. The target depth agreement with ground truth ranged 98.35-99.69%. The mean lateral and axial target sizes when imaging 600 m-core-diameter optical fibers inserted within the phantoms ranged 0.98-2.14 mm and 1.61-2.24 mm, respectively. The mean ± one standard deviation of lateral and axial target sizes when surrounded by liver tissue were 1.80±0.48 mm and 2.17±0.24 mm, respectively. Contrast, signal-to-noise, and generalized contrast-to-noise ratios ranged 6.92-24.42 dB, 46.50-67.51 dB, and 0.76-1, respectively, within the elevational field-of-view. Results establish the feasibility of implementing photoacoustic-guided surgery with a flexible array transducer.

摘要

光声成像最近已显示出在手术引导方面的潜力,能够在手术和非手术干预过程中实现工具尖端的可视化。为了接收光声信号,大多数传统换能器是刚性的,而柔性阵列能够变形并与不同几何形状的表面完全接触。在这项工作中,我们展示了在模拟体模和牛肝实验中使用柔性阵列换能器获取的光声图像,这些实验针对介入性光声应用,换能器具有多种凹形。我们用模拟数据验证了已知传感器几何形状的图像重建方程,并提供了经验性的仰角视野、目标位置和图像质量测量结果。在4厘米深度处仰角视野为6.08毫米,在5厘米深度处大于13毫米。目标深度与真实值的一致性范围为98.35 - 99.69%。在模拟体模中成像600微米芯径光纤时,目标的平均横向和轴向尺寸分别为0.98 - 2.14毫米和1.61 - 2.24毫米。当被肝组织包围时,目标横向和轴向尺寸的平均值±一个标准差分别为1.8 ± 0.48毫米和2.17 ± 0.24毫米。在仰角视野内,对比度、信噪比和广义对比度噪声比分别为6.92 - 24.42分贝、46.50 - 67.51分贝和0.76 - 1。结果证实了使用柔性阵列换能器实施光声引导手术的可行性。

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