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Acoustic resolution photoacoustic microscopy based on microelectromechanical systems scanner

机译:基于微机电系统扫描仪的声学分辨率光声学显微镜

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摘要

Photoacoustic microscopy (PAM) can be classified as optical resolution (OR)-PAM and acoustic resolution (AR)-PAM depending on the type of resolution achieved. Using microelectromechanical systems (MEMS) scanner, high-speed OR-PAM system was developed earlier. Depth of imaging limits the use of OR-PAM technology for many preclinical and clinical imaging applications. Here, we demonstrate the use of a high-speed MEMS scanner for AR-PAM imaging. Lateral resolution of 84 mu m and an axial resolution of 27 mu m with similar to 2.7 mm imaging depth was achieved using a 50 MHz transducer-based AR-PAM system. Use of a higher frequency transducer at 75 MHz has further improved the resolution characteristics of the system with a reduction in imaging depth and a lateral resolution of 53 mu m and an axial resolution of 18 mu m with similar to 1.8 mm imaging depth was achieved. Using the two-axis MEMS scanner a 2 x 2 .5 mm(2) area was imaged in 3 seconds. The capability of achieving acoustic resolution images using the MEMS scanner makes it beneficial for the development of high-speed miniaturized systems for deeper tissue imaging.
机译:光声显微镜(PAM)可以分类为光学分辨率(或)-PAM和声分辨率(AR)-PAM,具体取决于所取得的分辨率的类型。使用微机电系统(MEMS)扫描仪,高速或-PAM系统早先开发。成像深度限制了许多临床前和临床成像应用的使用或PAM技术。在这里,我们展示了用于AR-PAM成像的高速MEMS扫描仪的使用。使用50MHz的换能器的AR-PAM系统实现了84μm的横向分辨率和27μm的轴向分辨率,具有类似于2.7mm的成像深度。在75MHz下使用更高频率的换能器进一步提高了系统的分辨率,其成像深度降低,并且实现了53μm的横向分辨率和18μm的轴向分辨率,具有类似于1.8mm的成像深度。使用双轴MEMS扫描仪,在3秒内成像2 x 2 .5 mm(2)区域。使用MEMS扫描仪实现声学分辨率图像的能力使得对更深的组织成像的高速小型化系统的发展有益。

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