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Bessel Beam Grueneisen photoacoustic Microscopy with Extended Depth of Field

机译:贝塞尔光束格法森光声显微镜与延长景深

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The short focal depth of a Gaussian beam limits the volumetric imaging speed of optical resolution photoacoustic microscopy (OR-PAM). A Bessel beam, which is diffraction-free, provides a long focal depth, but its side-lobes may deteriorate image quality when the Bessel beam is directly employed to excite photoacoustic signals in OR-PAM. Here, we present a nonlinear approach based on the Grueneisen relaxation effect to suppress the side-lobe artifacts in photoacoustic imaging. This method extends the focal depth of OR-PAM and speeds up volumetric imaging. We experimentally demonstrated a 1-mm focal depth with a 7-μm lateral resolution and volumetrically imaged a carbon fiber and red blood cell samples.
机译:高斯光束的短焦深度限制光学分辨率光声显微镜(或PAM)的体积成像速度。一种衍射无衍射的贝塞尔光束提供了长焦深,但是当贝塞尔光束直接用于在或-PAM中激发光声信号时,其侧瓣可能会劣化图像质量。在这里,我们提出了一种基于Grueneisen弛豫效果的非线性方法,以抑制光声成像中的侧瓣伪像。该方法扩展了或-PAM的焦深并加速体积成像。我们通过实验证明了具有7μm的侧面分辨率和体积成像的1mm焦深,碳纤维和红细胞样品。

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