Cite

[1] S. N. Sravani, et al, ”Portable Subcutaneous Vein Imaging System”, International Journal of Biomedical and Clinical Engineering (IJBCE). Search in Google Scholar

[2] M. Lamperti, and M. Pittiruti, “II. Difficult peripheral veins: turn on the lights”, British journal of anaesthesia. Search in Google Scholar

[3] C. Ialongo, and B. Sergio, “Phlebotomy, a bridge between laboratory and patient”, Biochemia medica. Search in Google Scholar

[4] J. A. Ramos, “Venipuncture-related lateral antebrachial cutaneous nerve injury: what to know?”, Revista Brasileira de Anestesiologia. Search in Google Scholar

[5] S. Juric, et al, “Towards a low-cost mobile subcutaneous vein detection solution using near-infrared spectroscopy”, The Scientific World Journal. Search in Google Scholar

[6] S. Wray, et al, “Characterization of the near infrared absorption spectra of cytochrome aa3 and haemoglobin for the non-invasive monitoring of cerebral oxygenation”, Biochimica et Biophysica Acta (BBA)-Bioenergetics. Search in Google Scholar

[7] M. Miglinas, et al, “Cerebrovascular disease and cognition in chronic kidney disease patients”, Frontiers in cardiovascular medicine. Search in Google Scholar

[8] C.T. Pan, et al, “Vein pattern locating technology for cannulation: a review of the low-cost vein finder prototypes utilizing near infrared (NIR) light to improve peripheral subcutaneous vein selection for phlebotomy”, Sensors. Search in Google Scholar

[9] K. T. B. Weerasinghe, et al, “Using Near-Infrared Spectroscopy for Vein Visualization”, 2021 10th International Conference on Information and Automation for Sustainability (ICIAfS.10.1109/ICIAfS52090.2021.9606126 Search in Google Scholar

[10] Y. Ayoub, et al, “Diagnostic superficial vein scanner”, 2018 International Conference on Computer and Applications (ICCA.10.1109/COMAPP.2018.8460229 Search in Google Scholar

[11] M. Dhakshayani, and S. Yacin, “Economically affordable and clinically reliable vein finder”, Proceedings of the 30th Indian Engineering Congress, the 21st Century Engineering: The Make in India Pathway. Search in Google Scholar

[12] W. Fengtao, A. Behrooz, and M. Morris, “High-contrast subcutaneous vein detection and localization using multispectral imaging”, Journal of biomedical optics. Search in Google Scholar

[13] G. C., Meng, et al, “Prototype design for wearable veins localization system using near infrared imaging technique”, 2015 IEEE 11th international colloquium on signal processing & its applications (CSPA.10.1109/CSPA.2015.7225628 Search in Google Scholar

[14] S., K. Gayathri, G. J. Nigel, and S. Prabakar, “Low cost hand vein authentication system on embedded linux platform”, Int J Innovative Technol Exploring Eng. Search in Google Scholar

[15] F. Roemi, and M. Armada, “Multisensory system for the detection and localization of peripheral subcutaneous veins”, Sensors. Search in Google Scholar

[16] H. D. Zeman, G. Lovhoiden, and C. Vrancken, “Prototype vein contrast enhancer”, Optical Engineering. Search in Google Scholar

[17] V. C. Paquit, et al, “3D and multispectral imaging for subcutaneous veins detection”, Optics express. Search in Google Scholar

[18] N. S. Gnee, “A study of hand vein, neck vein and arm vein extraction for authentication”, 7th International Conference on Information, Communications and Signal Processing (ICICS. Search in Google Scholar

[19] K. K. Nundy, and S. Sanyal, “A low cost vein detection system using integrable mobile camera devices”, 2010 annual ieee india conference (INDICON.10.1109/INDCON.2010.5712670 Search in Google Scholar

[20] S. Juric, and Z. Borut, “An innovative approach to near-infrared spectroscopy using a standard mobile device and its clinical application in the real-time visualization of peripheral veins”, BMC medical informatics and decision making. Search in Google Scholar

[21] M. Qian, et al, “Vein Visualization Based on Deep Learning with a Smartphone”, 5th International Conference on Vision, Image and Signal Processing (ICVISP. Search in Google Scholar

[22] M., Wadhwani, et al, “Vein detection system using infrared light”, International Journal of Scientific & Engineering Research. Search in Google Scholar

[23] M. Yakno, M. S. Junita, and Z. I. Mohd, “Dorsal Hand Vein Image Enhancement Using Fusion of CLAHE and Fuzzy Adaptive Gamma”, Sensors. Search in Google Scholar

[24] P. L. Chithra and A. Kalaivani, “A Comparison of the Vein Patterns in Hand Images with other image enhancement techniques”, International Journal of Emerging Trends & Technology in Computer Science (IJETTCS). Search in Google Scholar

[25] M. Z. Yildiz, et al, “A novel encryption method for dorsal hand vein images on a microcomputer”, IEEE Access. Search in Google Scholar

[26] A. Subudhi, S. Pattnaik, and S. Sabut, “Blood vessel extraction of diabetic retinopathy using optimized enhanced images and matched filter”, Journal of Medical Imaging. Search in Google Scholar

[27] L. R. Dice, “Measures of the amount of ecologic association between species”, Ecology. Search in Google Scholar

[28] H. Ozkan, “Skin lesion border detection in dermoscopic images”, Electric Electronics, Computer Science, Biomedical Engineerings’ Meeting (EBBT. Search in Google Scholar

[29] Y. Wang, et al, “Shape-appearance constrained segmentation and separation of vein and artery in pulsatile tinnitus patients based on MR angiography and flow MRI”, Magnetic Resonance Imaging. Search in Google Scholar

[30] M. Meijs, et al, “Cerebral artery and vein segmentation in four-dimensional CT angiography using convolutional neural networks”, Radiology: Artificial Intelligence. Search in Google Scholar

[31] M. Meijs, and M. Rashindra, “Artery and vein segmentation of the cerebral vasculature in 4D CT using a 3D fully convolutional neural network”, Medical Imaging 2018: Computer-Aided Diagnosis.10.1117/12.2292974 Search in Google Scholar

[32] J. Egger, et al, “Aorta segmentation for stent simulation”, arXiv preprint arXiv. Search in Google Scholar

eISSN:
1339-309X
Language:
English
Publication timeframe:
6 times per year
Journal Subjects:
Engineering, Introductions and Overviews, other