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血管的远程非侵入性立体成像:一种新型多光谱对比度增强技术的首次体内实验结果。

Remote non-invasive stereoscopic imaging of blood vessels: first in-vivo results of a new multispectral contrast enhancement technology.

作者信息

Wieringa F P, Mastik F, Cate F J Ten, Neumann H A M, van der Steen A F W

机构信息

Erasmus MC, Department of Biomedical Engineering, Thorax Centre Rotterdam, Office Ee 2302, P.O. Box 1738, 3000 DR, Rotterdam, The Netherlands.

出版信息

Ann Biomed Eng. 2006 Dec;34(12):1870-8. doi: 10.1007/s10439-006-9198-1. Epub 2006 Oct 12.

Abstract

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 x 1024 for VIS & 640 x 512 for NIR produced 12 cycles/s (1 cycle = 1 VIS L&R-pair + 1 NIR L&R-pair). Decreasing image-size-settings (640 x 512 for VIS and 320 x 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.

摘要

我们描述了一种非接触式光学技术,通过组合不同光谱带的图像,选择性地增强各种色素沉着完整的人体皮肤下的浅表血管。两个配备复消色差镜头和双波段LED阵列的CMOS相机,同时将左(L)和右(R)图像数据传输到一台双处理器PC。两台相机通过在LED阵列发射带之间顺序切换,分别捕获可见范围(VIS,400 - 780 nm)内的彩色图像和近红外范围(NIR,910 - 920 nm)内的灰度图像。VIS图像尺寸设置为1280×1024,NIR图像尺寸设置为640×512时,产生12个周期/秒(1个周期 = 1对VIS的L&R图像 + 1对NIR的L&R图像)。减小图像尺寸设置(VIS为640×512,NIR为320×256)可将相机速度提高到25个周期/秒。通过算法将组织表面下方的对比度与表面阴影、反射等区分开来。因此,血管被选择性增强,并使用3D显示器或传统快门眼镜将其反向投影到立体VIS彩色图像中。作为首次可用性侦察,我们将这种定制的移动立体相机应用于几种临床场景:*采血;*深色皮肤中的静脉检查;*通过碘化物检测静脉;*静脉曲张和色素痣检查。与肉眼相比,我们的技术改善了血管可视化,并支持深度感知。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5921/1705509/e06f9247f6db/10439_2006_9198_Fig5_HTML.jpg

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