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Tracking contrast agents using real-time 2D photoacoustic imaging system for cardiac applications

机译:使用实时2D光声成像系统跟踪造影剂以用于心脏应用

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Photoacoustic (PA) imaging is a rapidly developing imaging modality that can detect optical contrast agents with high sensitivity. While detectors in PA imaging have traditionally been single element ultrasound transducers, use of array systems is desirable because they potentially provide high frame rates to capture dynamic events, such as injection and distribution of contrast in clinical applications. We present preliminary data consisting of 40 second sequences of co-registered pulse-echo (PE) and PA images acquired simultaneously in real time using a clinical ultrasonic machine. Using a 7 MHz linear array, the scanner allowed simultaneous acquisition of inphase-quadrature (IQ) data on 64 elements at a rate limited by the illumination source (Q-switched laser at 20 Hz) with spatial resolution determined to be 0.6 mm (axial) and 0.4 mm (lateral). PA images had a signal-to-noise ratio of approximately 35 dB without averaging. The sequences captured the injection and distribution of an infrared-absorbing contrast agent into a cadaver rat heart. From these data, a perfusion time constant of 0.23 s~(-1) was estimated. After further refinement, the system will be tested in live animals. Ultimately, an integrated system in the clinic could facilitate inexpensive molecular screening for coronary artery disease.
机译:光声(PA)成像是一种快速发展的成像方式,可以高灵敏度地检测光学造影剂。尽管PA成像中的检测器传统上是单元素超声换能器,但希望使用阵列系统,因为它们可能会提供高帧频来捕获动态事件,例如临床应用中的对比剂注入和分布。我们介绍了由临床超声仪实时同步采集的40个共注册的脉冲回波(PE)和PA图像的第二序列的初步数据。使用7 MHz线性阵列,扫描仪可以以受光源(20 Hz的Q开关激光器)限制的速率同时捕获64个元件上的同相正交(IQ)数据,空间分辨率确定为0.6 mm(轴向)和0.4毫米(横向)。 PA图像的信噪比约为35 dB,而没有取平均值。这些序列捕获了将吸收红外光的造影剂注入并分布到尸体大鼠心脏中的过程。根据这些数据,估计灌注时间常数为0.23 s〜(-1)。进一步完善后,该系统将在活体动物中进行测试。最终,临床中的集成系统可以促进对冠状动脉疾病进行廉价的分子筛查。

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