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Photoacoustic Imaging with Rotational Compounding for Improved Signal Detection

机译:具有旋转复合的光声成像,用于改进的信号检测

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Photoacoustic microscopy with linear array transducers enables fast two-dimensional, cross-sectional photoacoustic imaging. Unfortunately, most ultrasound transducers are only sensitive to a very narrow angular acceptance range and preferentially detect signals along the main axis of the transducer. This often limits photoacoustic microscopy from detecting blood vessels which can extend in any direction. Rotational compounded photoacoustic imaging is introduced to overcome the angular-dependency of detecting acoustic signals with linear array transducers. An integrate system is designed to control the image acquisition using a linear array transducer, a motorized rotational stage, and a motorized lateral stage. Images acquired at multiple angular positions are combined to form a rotational compounded image. We found that the signal-to-noise ratio improved, while the sidelobe and reverberation artifacts were substantially reduced. Furthermore, the rotational compounded images of excised kidneys and hindlimb tumors of mice showed more structural information compared with any single image collected.
机译:具有线性阵列传感器的光声显微镜可实现快速的二维横截面光声成像。遗憾的是,大多数超声换能器仅对非常窄的角度验收范围敏感,并且优先检测沿换能器的主轴的信号。这通常会限制光声显微镜从检测可以在任何方向上延伸的血管。引入旋转复合光声成像以克服检测用线性阵列换能器检测声信号的角度依赖性。设计集成系统以使用线性阵列换能器,电动旋转级和电动横向级来控制图像采集。组合以多个角位置获取的图像以形成旋转复合图像。我们发现,信噪比得到改善,而侧链和混响伪像基本上降低。此外,与收集的任何单个图像相比,小鼠切除的肾脏和后根肿瘤的旋转复合图像显示出更多的结构信息。

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