Literature DB >> 27446690

Augmented reality based real-time subcutaneous vein imaging system.

Danni Ai1, Jian Yang1, Jingfan Fan1, Yitian Zhao1, Xianzheng Song1, Jianbing Shen2, Ling Shao3, Yongtian Wang1.   

Abstract

A novel 3D reconstruction and fast imaging system for subcutaneous veins by augmented reality is presented. The study was performed to reduce the failure rate and time required in intravenous injection by providing augmented vein structures that back-project superimposed veins on the skin surface of the hand. Images of the subcutaneous vein are captured by two industrial cameras with extra reflective near-infrared lights. The veins are then segmented by a multiple-feature clustering method. Vein structures captured by the two cameras are matched and reconstructed based on the epipolar constraint and homographic property. The skin surface is reconstructed by active structured light with spatial encoding values and fusion displayed with the reconstructed vein. The vein and skin surface are both reconstructed in the 3D space. Results show that the structures can be precisely back-projected to the back of the hand for further augmented display and visualization. The overall system performance is evaluated in terms of vein segmentation, accuracy of vein matching, feature points distance error, duration times, accuracy of skin reconstruction, and augmented display. All experiments are validated with sets of real vein data. The imaging and augmented system produces good imaging and augmented reality results with high speed.

Keywords:  (100.0100) Image processing; (100.3010) Image reconstruction techniques; (110.0110) Imaging systems; (110.3080) Infrared imaging; (170.0110) Imaging systems

Year:  2016        PMID: 27446690      PMCID: PMC4948614          DOI: 10.1364/BOE.7.002565

Source DB:  PubMed          Journal:  Biomed Opt Express        ISSN: 2156-7085            Impact factor:   3.732


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Review 4.  Augmented reality in anesthesia, pain medicine and critical care: a narrative review.

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5.  FPGA-Based Two-Dimensional Matched Filter Design for Vein Imaging Systems.

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6.  Multisensory System for the Detection and Localization of Peripheral Subcutaneous Veins.

Authors:  Roemi Fernández; Manuel Armada
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