TY - JOUR
T1 - Vein visualization enhancement by dual-wavelength phase-locked denoising technology
AU - Ruan, Lihua
AU - Yin, Zhiqin
AU - Zhou, Shibing
AU - Zheng, Weibo
AU - Lu, Wei
AU - Zhang, Tao
AU - Wang, Shaowei
N1 - Publisher Copyright:
© 2024 World Scientific. All rights reserved.
PY - 2024/5/1
Y1 - 2024/5/1
N2 - Visual near-infrared imaging equipment has broad applications in various fields such as venipuncture, facial injections, and safety verification due to its noncontact, compact, and portable design. Currently, most studies utilize near-infrared single-wavelength for image acquisition of veins. However, many substances in the skin, including water, protein, and melanin can create significant background noise, which hinders accurate detection. In this paper, we developed a dual-wavelength imaging system with phase-locked denoising technology to acquire vein image. The signals in the effective region are compared by using the absorption valley and peak of hemoglobin at 700 nm and 940 nm, respectively. The phase-locked denoising algorithm is applied to decrease the noise and interference of complex surroundings from the images. The imaging results of the vein are successfully extracted in complex noise environment. It is demonstrated that the denoising effect on hand veins imaging can be improved with 57.3% by using our dual-wavelength phase-locked denoising technology. Consequently, this work proposes a novel approach for venous imaging with dual-wavelengths and phase-locked denoising algorithm to extract venous imaging results in complex noisy environment better.
AB - Visual near-infrared imaging equipment has broad applications in various fields such as venipuncture, facial injections, and safety verification due to its noncontact, compact, and portable design. Currently, most studies utilize near-infrared single-wavelength for image acquisition of veins. However, many substances in the skin, including water, protein, and melanin can create significant background noise, which hinders accurate detection. In this paper, we developed a dual-wavelength imaging system with phase-locked denoising technology to acquire vein image. The signals in the effective region are compared by using the absorption valley and peak of hemoglobin at 700 nm and 940 nm, respectively. The phase-locked denoising algorithm is applied to decrease the noise and interference of complex surroundings from the images. The imaging results of the vein are successfully extracted in complex noise environment. It is demonstrated that the denoising effect on hand veins imaging can be improved with 57.3% by using our dual-wavelength phase-locked denoising technology. Consequently, this work proposes a novel approach for venous imaging with dual-wavelengths and phase-locked denoising algorithm to extract venous imaging results in complex noisy environment better.
KW - Dual-wavelength
KW - phase-locked denoising
KW - vein visualization enhancement
UR - https://www.scopus.com/pages/publications/85190154706
U2 - 10.1142/S1793545823500335
DO - 10.1142/S1793545823500335
M3 - 文章
AN - SCOPUS:85190154706
SN - 1793-5458
VL - 17
JO - Journal of Innovative Optical Health Sciences
JF - Journal of Innovative Optical Health Sciences
IS - 3
M1 - 2350033
ER -