Non-invasive multimodal optical coherence and photoacoustic tomography for human skin imaging

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作者
Zhe Chen
Elisabet Rank
Kristen M. Meiburger
Christoph Sinz
Andreas Hodul
Edward Zhang
Erich Hoover
Micheal Minneman
Jason Ensher
Paul C. Beard
Harald Kittler
Rainer A. Leitgeb
Wolfgang Drexler
Mengyang Liu
机构
[1] Medical University of Vienna,Center for Medical Physics and Biomedical Engineering
[2] Währinger Gürtel 18-20,Dipartimento di Elettronica e Telecomunicazioni
[3] AKH 4L,Department of Dermatology
[4] Biolab,Department of Medical Physics and Biomedical Engineering
[5] Politecnico di Torino,undefined
[6] Corso Duca degli Abruzzi 24,undefined
[7] Medical University of Vienna,undefined
[8] Währinger Gürtel 18-20,undefined
[9] AKH 7J,undefined
[10] University College London,undefined
[11] Gower Street,undefined
[12] WC1E 6BT,undefined
[13] Insight Photonic Solutions,undefined
[14] Inc.,undefined
[15] 2650 Crescent Drive,undefined
[16] Number 201,undefined
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摘要
The cutaneous vasculature is involved in many diseases. Current clinical examination techniques, however, cannot resolve the human vasculature with all plexus in a non-invasive manner. By combining an optical coherence tomography system with angiography extension and an all optical photoacoustic tomography system, we can resolve in 3D the blood vessels in human skin for all plexus non-invasively. With a customized imaging unit that permits access to various parts of patients’ bodies, we applied our multimodality imaging system to investigate several different types of skin conditions. Quantitative vascular analysis is given for each of the dermatological conditions to show the potential diagnostic value of our system in non-invasive examination of diseases and physiological processes. Improved performance of our system over its previous generation is also demonstrated with an updated characterization.
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