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Multimodal photoacoustic and optical coherence tomography scanner using an all optical detection scheme for 3D morphological skin imaging

机译:使用全光学检测方案的多模态光声和光学相干断层扫描仪用于3D形态皮肤成像

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摘要

A noninvasive, multimodal photoacoustic and optical coherence tomography (PAT/OCT) scanner for three-dimensional in vivo (3D) skin imaging is described. The system employs an integrated, all optical detection scheme for both modalities in backward mode utilizing a shared 2D optical scanner with a field-of-view of ~13 × 13 mm2. The photoacoustic waves were detected using a Fabry Perot polymer film ultrasound sensor placed on the surface of the skin. The sensor is transparent in the spectral range 590-1200 nm. This permits the photoacoustic excitation beam (670-680 nm) and the OCT probe beam (1050 nm) to be transmitted through the sensor head and into the underlying tissue thus providing a backward mode imaging configuration. The respective OCT and PAT axial resolutions were 8 and 20 µm and the lateral resolutions were 18 and 50-100 µm. The system provides greater penetration depth than previous combined PA/OCT devices due to the longer wavelength of the OCT beam (1050 nm rather than 829-870 nm) and by operating in the tomographic rather than the optical resolution mode of photoacoustic imaging. Three-dimensional in vivo images of the vasculature and the surrounding tissue micro-morphology in murine and human skin were acquired. These studies demonstrated the complementary contrast and tissue information provided by each modality for high-resolution 3D imaging of vascular structures to depths of up to 5 mm. Potential applications include characterizing skin conditions such as tumors, vascular lesions, soft tissue damage such as burns and wounds, inflammatory conditions such as dermatitis and other superficial tissue abnormalities.
机译:描述了用于三维体内(3D)皮肤成像的非侵入性,多模式光声和光学相干断层扫描(PAT / OCT)扫描仪。该系统采用共享的2D光学扫描仪,其视野为〜13×13 mm 2 ,在两种模式下均采用集成的全光学检测方案,用于两种模式。使用放置在皮肤表面的Fabry Perot聚合物薄膜超声传感器检测光声波。传感器在590-1200 nm的光谱范围内是透明的。这允许光声激发光束(670-680 nm)和OCT探测光束(1050 nm)穿过传感器头并进入下面的组织,从而提供了后向成像配置。 OCT和PAT的轴向分辨率分别为8和20 µm,横向分辨率为18和50-100 µm。与OCT光束的更长波长(1050 nm而不是829-870 nm)相比,该系统可提供比以前的组合式PA / OCT设备更大的穿透深度,并且可以通过层析成像而不是光声成像的光学分辨率模式进行操作。获取了鼠和人皮肤中脉管系统和周围组织微观形态的三维体内图像。这些研究证明了每种方式所提供的补充对比度和组织信息,可用于对血管结构进行3D高分辨率高分辨率成像,深度可达5毫米。潜在的应用包括表征皮肤状况,例如肿瘤,血管病变,软组织损伤(例如烧伤和伤口),炎性状况(例如皮炎)和其他浅表组织异常。

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