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Miniature all-optical probe for photoacoustic and ultrasound dual-modality imaging

机译:微型全光探头,用于光声和超声双模态成像

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Photoacoustic (PA) imaging forms an image based on optical absorption contrasts with ultrasound (US) resolution. In contrast, US imaging is based on acoustic backscattering to provide structural information. In this study, we develop a miniature all-optical probe for high-resolution PA-US dual-modality imaging over a large imaging depth range. The probe employs three individual optical fibers (F1-F3) to achieve optical generation and detection of acoustic waves for both PA and US modalities. To offer wide-angle laser illumination, fiber Fl with a large numerical aperture (NA) is used for PA excitation. On the other hand, wide-angle US waves are generated by laser illumination on an optically absorbing composite film which is coated on the end face of fiber F2. Both the excited PA and backscattered US waves are detected by a Fabry-Perot cavity on the tip of fiber F3 for wide-angle acoustic detection. The wide angular features of the three optical fibers make large-NA synthetic aperture focusing technique possible and thus high-resolution PA and US imaging. The probe diameter is less than 2 mm. Over a depth range of 4 mm, lateral resolutions of PA and US imaging are 104-154 urn and 64-112 μm, respectively, and axial resolutions of PA and US imaging are 72-117 μm and 31-67 μm, respectively. To show the imaging capability of the probe, phantom imaging with both PA and US contrasts is demonstrated. The results show that the probe has potential for endoscopic and intravascular imaging applications that require PA and US contrast with high resolution.
机译:光声(PA)成像基于具有超声(US)分辨率的光吸收对比形成图像。相反,US成像基于声学反向散射以提供结构信息。在这项研究中,我们开发了一种微型全光探头,用于在较大成像深度范围内进行高分辨率PA-US双模态成像。该探头采用三根单独的光纤(F1-F3),以实现PA和US模态的光波生成和声波检测。为了提供广角激光照射,具有大数值孔径(NA)的光纤F1被用于PA激发。另一方面,在被覆在纤维F2的端面上的光吸收性复合膜上,通过激光照射产生广角的US波。激发的PA波和反向散射的US波均由光纤F3尖端上的Fabry-Perot腔进行检测,以进行广角声学检测。三根光纤的宽角度特性使大孔径NA合成孔径聚焦技术成为可能,从而实现了高分辨率的PA和US成像。探头直径小于2毫米。在4 mm的深度范围内,PA和US成像的横向分辨率分别为104-154 um和64-112μm,PA和US成像的轴向分辨率分别为72-117μm和31-67μm。为了显示探头的成像能力,演示了具有PA和US对比的幻像成像。结果表明,该探针具有用于需要高分辨率的PA和US造影剂的内窥镜和血管内成像应用的潜力。

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