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Remote Non-invasive Stereoscopic Imaging of Blood Vessels: First In-vivo Results of a New Multispectral Contrast Enhancement Technology

机译:血管的远程非侵入性立体成像:一种新的多光谱对比度增强技术的体内结果

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摘要

We describe a contactless optical technique selectively enhancing superficial blood vessels below variously pigmented intact human skin by combining images in different spectral bands. Two CMOS-cameras, with apochromatic lenses and dual-band LED-arrays, simultaneously streamed Left (L) and Right (R) image data to a dual-processor PC. Both cameras captured color images within the visible range (VIS, 400–780 nm) and grey-scale images within the near infrared range (NIR, 910–920 nm) by sequentially switching between LED-array emission bands. Image-size-settings of 1280 × 1024 for VIS & 640 × 512 for NIR produced 12 cycles/s (1 cycle = 1 VIS L&R-pair + 1 NIR L&R-pair). Decreasing image-size-settings (640 × 512 for VIS and 320 × 256 for NIR) increased camera-speed to 25 cycles/s. Contrasts from below the tissue surface were algorithmically distinguished from surface shadows, reflections, etc. Thus blood vessels were selectively enhanced and back-projected into the stereoscopic VIS-color-image using either a 3D-display or conventional shutter glasses.As a first usability reconnaissance we applied this custom-built mobile stereoscopic camera for several clinical settings:• blood withdrawal;• vein inspection in dark skin;• vein detection through iodide;• varicose vein and nevi pigmentosum inspection.Our technique improves blood vessel visualization compared to the naked eye, and supports depth perception.
机译:我们描述了一种非接触式光学技术,可通过组合不同光谱带中的图像来选择性增强各种色素完整人体皮肤下方的浅层血管。两个带有复消色差透镜和双波段LED阵列的CMOS相机,将左(L)和右(R)图像数据同时传输到双处理器PC。通过顺序在LED阵列发射波段之间进行切换,这两个摄像机都捕获了可见范围内的彩色图像(VIS,400–780 nm)和近红外范围内的灰度图像(NIR,910–920 nm)。 VIS的1280×1024和NIR的640×512的图像大小设置产生12个周期/秒(1个周期= 1个VIS L&R对+ 1个NIR L&R对)。减小图像尺寸设置(VIS的640×512和NIR的320×256)将相机速度提高到25个周期/秒。从算法上将组织表面下方的对比度与表面阴影,反射等区别开来。因此,可以使用3D显示器或传统的快门眼镜选择性地增强血管并将其反投影到立体VIS彩色图像中。侦察我们将这种定制的移动式立体摄像机应用于几种临床情况:•抽血;•黑皮肤的静脉检查;•通过碘化物进行静脉检测;•静脉曲张和痣状色素检查。与裸露相比,我们的技术改善了血管可视化眼睛,并支持深度感知。

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