Institute of Medical Engineering, Ruhr-University Bochum, Bochum, Germany.
IEEE Trans Ultrason Ferroelectr Freq Control. 2010 Jul;57(7):1583-93. doi: 10.1109/TUFFC.2010.1588.
Q-switched Nd:YAG lasers are commonly used as light sources for photoacoustic imaging. However, laser diodes are attractive as an alternative to Nd:YAG lasers because they are less expensive and more compact. Although laser diodes deliver about three orders of magnitude less light pulse energy than Nd:YAG lasers (tens of microjoules compared with tens of millijoules), their pulse repetition frequency (PRF) is four to five orders of magnitude higher (up to 1 MHz compared with tens of hertz); this enables the use of averaging to improve SNR without compromising the image acquisition rate. In photoacoustic imaging, the PRF is limited by the maximum acoustic time-of-flight. This limit can be overcome by using coded excitation schemes in which the coding eliminates ambiguities between echoes induced by subsequent pulses. To evaluate the benefits of photoacoustic coded excitation (PACE), the performance of unipolar Golay codes is investigated analytically and validated experimentally. PACE imaging of a copper slab using laser diodes at a PRF of 1 MHz and a modified clinical ultrasound scanner is successfully demonstrated. Considering laser safety regulations and taking into account a comparison between a laser diode system and Nd:YAG systems with respect to SNR, we conclude that PACE is feasible for small animal imaging.
Q 开关 Nd:YAG 激光器通常用作光声成象的光源。然而,激光二极管作为 Nd:YAG 激光器的替代品具有吸引力,因为它们更便宜、更紧凑。虽然激光二极管的光脉冲能量比 Nd:YAG 激光器低三个数量级(数十微焦耳与数十毫焦耳相比),但其脉冲重复频率(PRF)高四个数量级以上(高达 1MHz 与数十赫兹相比);这使得可以使用平均来提高 SNR,而不会影响图像采集速度。在光声成象中,PRF 受到最大声传播时间的限制。通过使用编码激励方案,可以克服该限制,在该方案中,编码消除了后续脉冲引起的回波之间的歧义。为了评估光声编码激励(PACE)的优势,对单极型 Golay 码的性能进行了分析和实验验证。使用 PRF 为 1MHz 的激光二极管和经过修改的临床超声扫描仪成功地进行了铜片的 PACE 成象。考虑到激光安全规定,并考虑了激光二极管系统与 Nd:YAG 系统在 SNR 方面的比较,我们得出结论,PACE 适用于小动物成像。