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使用线性阵列换能器的多角度长轴横向照明光声成像。

Multiangle Long-Axis Lateral Illumination Photoacoustic Imaging Using Linear Array Transducer.

机构信息

Department of Physics, FFCLRP, University of São Paulo, Ribeirão Preto 14040-901, SP, Brazil.

Department of Biology, FFCLRP, University of São Paulo, Ribeirão Preto 14040-901, SP, Brazil.

出版信息

Sensors (Basel). 2020 Jul 21;20(14):4052. doi: 10.3390/s20144052.

Abstract

Photoacoustic imaging (PAI) combines optical contrast with ultrasound spatial resolution and can be obtained up to a depth of a few centimeters. Hand-held PAI systems using linear array usually operate in reflection mode using a dark-field illumination scheme, where the optical fiber output is attached to both sides of the elevation plane (short-axis) of the transducer. More recently, bright-field strategies where the optical illumination is coaxial with acoustic detection have been proposed to overcome some limitations of the standard dark-field approach. In this paper, a novel multiangle long-axis lateral illumination is proposed. Monte Carlo simulations were conducted to evaluate light delivery for three different illumination schemes: bright-field, standard dark-field, and long-axis lateral illumination. Long-axis lateral illumination showed remarkable improvement in light delivery for targets with a width smaller than the transducer lateral dimension. A prototype was developed to experimentally demonstrate the feasibility of the proposed approach. In this device, the fiber bundle terminal ends are attached to both sides of the transducer's long-axis and the illumination angle of each fiber bundle can be independently controlled. The final PA image is obtained by the coherent sum of subframes acquired using different angles. The prototype was experimentally evaluated by taking images from a phantom, a mouse abdomen, forearm, and index finger of a volunteer. The system provided light delivery enhancement taking advantage of the geometry of the target, achieving sufficient signal-to-noise ratio at clinically relevant depths.

摘要

光声成像是一种将光学对比度与超声空间分辨率相结合的技术,可以获取几厘米深的图像。采用线性阵列的手持式光声成像系统通常采用暗场照明方案以反射模式工作,其中光纤输出连接到换能器的仰角平面(短轴)的两侧。最近,提出了一种与声学检测共轴的亮场策略,以克服标准暗场方法的一些限制。本文提出了一种新颖的多角度长轴侧向照明方法。进行了蒙特卡罗模拟,以评估三种不同照明方案(亮场、标准暗场和长轴侧向照明)的光传输情况。对于宽度小于换能器横向尺寸的目标,长轴侧向照明在光传输方面表现出显著的改善。开发了一个原型机来实验验证所提出方法的可行性。在该设备中,光纤束末端连接到换能器长轴的两侧,并且每个光纤束的照明角度可以独立控制。最终的 PA 图像是通过使用不同角度获取的子帧的相干和获得的。该原型机通过从体模、小鼠腹部、前臂和志愿者的食指获取图像进行了实验评估。该系统利用目标的几何形状实现了光传输增强,在临床相关深度获得了足够的信噪比。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6f7/7411732/c282a5a1a515/sensors-20-04052-g001.jpg

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