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A high frame rate photoacoustic imaging system and its applications to perfusion measurements

机译:高帧速率光声成像系统及其应用于灌注测量的应用

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A high frame rate photoacoustic imaging system is described. Applications of this system to perfusion measurements are also presented as a demonstration of its potential usage. The system consists of an ultrasound front-end sub-system for acquisition of acoustic array data. The ultrasound front-end sub-system is also known as the DiPhAS (digital phased array system) which is capable of simultaneously acquiring radio frequency data from 64 transducer channels at a rate up to 40 MSamples/sec per channel. In this study, an ultrasonic linear array with a 5 MHz center frequency was employed as part of the integrated photoacoustic probe. The photoacoustic probe also had two linear light guides mounted on the sides of the ultrasonic array for broad laser irradiation from a Q-switched Nd:YAG pulsed laser. After the acquired ultrasound array data were transferred to a personal computer via a high speed digital I/Q card, dynamic focusing and image reconstruction were done off-line. The 64-channel array data can be acquired and transferred every 4 milliseconds, thus making the frame rate of the system up to 250 Hz. The actual frame rate of the current system is limited by the pulse repetition frequency of the laser at 15 Hz. To demonstrate capabilities of the system, photoacoustic perfusion measurements with gold nanorods were performed. A previously proposed time-intensity based flow estimation technique utilizing the shape transitions of gold nanorods under laser irradiation was employed. Good estimation results were achieved and potential of this high frame rate photoacoustic imaging system is clearly demonstrated.
机译:描述了高帧速率光声成像系统。该系统对灌注测量的应用也被呈现为其潜在使用的演示。该系统由超声前端子系统组成,用于获取声学阵列数据。超声前端子系统也称为DIPHAS(数字相位阵列系统),其能够以高达40毫班/秒的速率同时从64个换能器通道获取射频数据。在该研究中,采用具有5MHz中心频率的超声线性阵列作为集成光声探针的一部分。光声探头还具有安装在超声波阵列的侧面上的两个线性光导,用于从Q开关Nd:YAG脉冲激光器的宽激光照射。在获取的超声阵列数据经由高速数字I / Q卡被传送到个人计算机之后,在线执行动态聚焦和图像重建。可以每4毫秒获取和传送64通道阵列数据,从而使系统的帧速率高达250Hz。当前系统的实际帧速率受到15Hz的激光脉冲重复频率的限制。为了证明系统的能力,进行金纳米棒的光声灌注测量。采用了利用激光照射下的金纳米棒的形状转变的先前提出的时间强度基于流动估计技术。实现了良好的估计结果,并且清楚地证明了这种高帧速率光声成像系统的潜力。

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