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Side-viewing photoacoustic waveguide endoscopy

机译:侧视光声波导内窥镜检查

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Side-viewing hollow optical waveguides allow for minimally invasive endoscopy by concentrically guiding light and sound for photoacoustic generation and detection. Here, we characterize the side-viewing photoacoustic waveguide (PWG) endoscope by scanning 7.2?μm diameter carbon fiber threads within phantom tissues and animal tissues. Photoacoustic signals are carried along the 5.5 and 10.0?cm length of the PWG with minimal attenuation. Thus, this technology enables 360°, deep-tissue photoacoustic imaging. Photoacoustic signals were identified up to 8.0?mm from the PWG imaging window in an optically clear medium. The outer diameter of this device is measured as just over 1.0?mm, with the potential to be further miniaturized due to its unique design. The PWG is an ideal candidate for a myriad of pre-clinical and clinical applications where typical photoacoustic endoscopy systems are impractical, due to their size. Presented here, is the first side-viewing photoacoustic waveguide endoscope.
机译:侧视空心光波导允许通过同心引导光声和光声生成和检测的声音来实现微创内窥镜检查。这里,我们通过在体模组织和动物组织内扫描7.2μm直径的碳纤维螺纹来表征侧视光声波导(PWG)内窥镜。光声信号沿PWG的5.5和10.0°CM长度携带,具有最小的衰减。因此,该技术使360°,深组织光声成像能够实现。从光学清晰的介质中识别光声信号从PWG成像窗口识别为8.0Ωmm。该装置的外径被测量为超过1.0Ωmm,由于其独特的设计,可能进一步小型化。 PWG是由于其尺寸而言,典型的光声内窥镜检查系统是不切实际的,是典型光声内窥镜检查系统的理想候选者。在此提出,是第一侧视光声波导内窥镜。

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