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Feasibility of 830 nm laser imaging for vein localization in dark skin tissue?mimicking phantoms

机译:对静脉波长830纳米的激光成像的可行性本地化在深色皮肤组织?幻影

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Accessing blood vessels by medical professionals has been a challenge in healthcare centers worldwide. The main objective of this work is to investigate the localization of blood vessels in dark skin based on near infrared laser imaging. An 830 nm diode laser was used as a light source to irradiate dark skin mimicking optical phantoms. Phantoms were constructed to simulate dark skin with embedded polymer tubes filled with human blood to mimic subcutaneous veins. Appropriate image processing techniques were also used to enhance the detection and depth resolved differentiation of the vein phantoms. Results show that a linear regression model can represent the relation between the grey level in subcutaneous vein images and the depth of vessels down to 3 mm or deeper (n = 15, R-2 = 0.88, P 0.001). The effect of laser power on the system performance is also discussed. Analysis of the collected images demonstrates the feasibility of 830 nm laser imaging for differentiating vein depths under dark skin surface. The proposed method would enhance the localization of invisible subcutaneous veins. This, in turn, would further improve the success rate of related medical procedures such as blood sampling, drawing, in the dark skin population.
机译:由医学专家访问血管一直在挑战医疗中心在全球范围内。探讨血管的本地化基于近红外激光成像的黑皮肤。一个830纳米二极管激光器作为光源辐照黑皮肤模仿光幻影。与嵌入聚合物管充满黑皮肤人类血液模仿皮下静脉。适当的图像处理技术也用于提高探测深度和解决分化的静脉幻影。显示一个线性回归模型可以表示灰色的水平之间的关系皮下静脉图像和船只的深度到3毫米或更深层(n = 15, r2 = 0.88, P& 系统性能也进行了讨论。收集到的图像展示了可行性区分波长830纳米的激光成像的静脉深度下黑皮肤表面。方法将提高的本地化看不见的皮下静脉。将进一步提高相关的成功率医疗程序,如血液取样,绘画,黑皮肤人群。

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