Literature DB >> 23846468

Volumetric real-time tracking of peripheral human vasculature with GPU-accelerated three-dimensional optoacoustic tomography.

X Luis Dean-Ben, Ali Ozbek, Daniel Razansky.   

Abstract

Optoacoustic tomography provides a unique possibility for ultra-high-speed 3-D imaging by acquiring complete volumetric datasets from interrogation of tissue by a single nanosecond-duration laser pulse. Yet, similarly to ultrasound, optoacoustics is a time-resolved imaging method, thus, fast 3-D imaging implies real-time acquisition and processing of high speed data from hundreds of detectors simultaneously, which presents significant technological challenges. Herein we present a highly efficient graphical processing unit (GPU) framework for real-time reconstruction and visualization of 3-D tomographic optoacoustic data. By utilizing a newly developed 3-D optoacoustic scanner, which simultaneously acquires signals with a handheld 256-element spherical ultrasonic array system, we further demonstrate tracking of deep tissue human vasculature rendered at a rate of 10 volumetric frames per second. The flexibility provided by the handheld hardware design, combined with the real-time operation, makes the developed platform highly usable for both clinical imaging practice and small animal research applications.

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Year:  2013        PMID: 23846468     DOI: 10.1109/TMI.2013.2272079

Source DB:  PubMed          Journal:  IEEE Trans Med Imaging        ISSN: 0278-0062            Impact factor:   10.048


  36 in total

1.  Real-time GPU-accelerated processing and volumetric display for wide-field laser-scanning optical-resolution photoacoustic microscopy.

Authors:  Heesung Kang; Sang-Won Lee; Eun-Soo Lee; Se-Hwa Kim; Tae Geol Lee
Journal:  Biomed Opt Express       Date:  2015-11-02       Impact factor: 3.732

2.  Noninvasive real-time visualization of multiple cerebral hemodynamic parameters in whole mouse brains using five-dimensional optoacoustic tomography.

Authors:  Sven Gottschalk; Thomas Felix Fehm; Xosé Luís Deán-Ben; Daniel Razansky
Journal:  J Cereb Blood Flow Metab       Date:  2015-03-31       Impact factor: 6.200

3.  Universal hand-held three-dimensional optoacoustic imaging probe for deep tissue human angiography and functional preclinical studies in real time.

Authors:  Xosé Deán-Ben; Thomas Felix Fehm; Daniel Razansky
Journal:  J Vis Exp       Date:  2014-11-04       Impact factor: 1.355

4.  Trackerless panoramic optoacoustic imaging: a first feasibility evaluation.

Authors:  Suhanyaa Nitkunanantharajah; Christoph Hennersperger; Xose Luis Dean-Ben; Daniel Razansky; Nassir Navab
Journal:  Int J Comput Assist Radiol Surg       Date:  2018-03-15       Impact factor: 2.924

5.  Optoacoustic imaging at kilohertz volumetric frame rates.

Authors:  Ali Özbek; Xosé Luís Deán-Ben; Daniel Razansky
Journal:  Optica       Date:  2018       Impact factor: 11.104

6.  Listening to tissues with new light: recent technological advances in photoacoustic imaging.

Authors:  Tri Vu; Daniel Razansky; Junjie Yao
Journal:  J Opt       Date:  2019-09-09       Impact factor: 2.516

7.  Spatial Angular Compounding of Photoacoustic Images.

Authors:  Hyun Jae Kang; Muyinatu A Lediju Bell; Xiaoyu Guo; Emad M Boctor
Journal:  IEEE Trans Med Imaging       Date:  2016-02-18       Impact factor: 10.048

8.  Simultaneous visualization of tumour oxygenation, neovascularization and contrast agent perfusion by real-time three-dimensional optoacoustic tomography.

Authors:  Vladimir Ermolayev; Xose Luis Dean-Ben; Subhamoy Mandal; Vasilis Ntziachristos; Daniel Razansky
Journal:  Eur Radiol       Date:  2015-09-03       Impact factor: 5.315

Review 9.  Small-animal whole-body photoacoustic tomography: a review.

Authors:  Jun Xia; Lihong V Wang
Journal:  IEEE Trans Biomed Eng       Date:  2013-09-25       Impact factor: 4.538

10.  Volumetric Optoacoustic Tomography Differentiates Myocardial Remodelling.

Authors:  Moritz Wildgruber; Daniel Razansky; Ivana Ivankovic; Xosé Luís Déan-Ben; Helena Haas; Melanie A Kimm
Journal:  Mol Imaging Biol       Date:  2020-10       Impact factor: 3.488

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