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首页> 外文期刊>Laser Physics: An International Journal devoted to Theoretical and Experimental Laser Research and Application >Coherent fiber bundle based integrated photoacoustic, ultrasound and fluorescence imaging (PAUSFI) for endoscopy and diagnostic bio-imaging applications
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Coherent fiber bundle based integrated photoacoustic, ultrasound and fluorescence imaging (PAUSFI) for endoscopy and diagnostic bio-imaging applications

机译:基于相干纤维束的集成光声,超声和荧光成像(PAUSFI),用于内窥镜和诊断性生物成像应用

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摘要

Recent research in diagnostic imaging and sensing focuses on deriving complementary information from the diagnosed site. From that perspective it is imperative to devise new imaging platforms where multiple distinct modalities are used either simultaneously or sequentially. Increased efforts have been devoted towards establishing such multi-modal imaging systems, which house and operate more than two imaging modalities within a single instrumentation set-up. In this context, we propose a novel multi-modal imaging platform using non-ionizing radiation that has been successfully conceptualized, established and experimentally demonstrated. This proposed GRIN lensed fiber-optic microscope and linear array transducer based PAUSFI (photoacoustic, ultrasound and fluorescence imaging) system makes use of non-ionizing radiation sources to map optical and acoustic heterogeneities (complementary information) along the depth of the tissue at multi-scale resolution (microscopic to mesoscopic). The fiber-optic assembly enables the system to perform minimally invasive remote light delivery and high resolution fluorescence and photoacoustic imaging of inaccessible areas of intact tissues or intra body cavities. It is expected that the proposed multi-modal imaging system could open up niches in bio-imaging research in the near future.
机译:诊断成像和感测的最新研究集中于从诊断部位获得补充信息。从这个角度来看,当务之急是设计新的成像平台,其中同时或顺序使用多种不同的模态。已经致力于建立这样的多模态成像系统,该系统在单个仪器装置中容纳和操作了两种以上的成像模态,因此人们加大了投入。在这种情况下,我们提出了一种使用非电离辐射的新型多模式成像平台,该平台已成功地概念化,建立并通过实验证明。该提议的基于GRIN透镜的光纤显微镜和线性阵列换能器基于PAUSFI(光声,超声和荧光成像)系统,利用非电离辐射源来绘制沿组织深度在多个位置的光学和声学异质性(互补信息)。标度分辨率(微观到中观)。光纤组件使系统能够对侵入的完整组织或体内腔体进行微创远程光传输以及高分辨率荧光和光声成像。预计拟议中的多模态成像系统将在不久的将来开拓生物成像研究领域。

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