Literature DB >> 22006913

Clinical translation of optical and optoacoustic imaging.

Vasilis Ntziachristos1.   

Abstract

Macroscopic optical imaging has rather humble technical origins; it has been mostly implemented by photographic means using appropriate filters, a light source and a camera yielding images of tissues. This approach relates to human vision and perception, and is simple to implement and use. Therefore, it has found wide acceptance, especially in recording fluorescence and bioluminescence signals. Yet, the difficulty in resolving depth and the dependence of the light intensity recorded on tissue optical properties may compromise the accuracy of the approach. Recently, optical technology has seen significant advances that bring a new performance level in optical investigations. Quantitative real-time multi-spectral optical and optoacoustic (photoacoustic) methods enable high-resolution quantitative imaging of tissue and disease biomarkers and can significantly enhance medical vision in diagnostic or interventional procedures such as dermatology, endoscopy, surgery, and various vascular and intravascular imaging applications. This performance is showcased herein and examples are given to illustrate how it is possible to shift the paradigm of optical clinical translation.

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Year:  2011        PMID: 22006913     DOI: 10.1098/rsta.2011.0270

Source DB:  PubMed          Journal:  Philos Trans A Math Phys Eng Sci        ISSN: 1364-503X            Impact factor:   4.226


  12 in total

1.  An adaptive filtered back-projection for photoacoustic image reconstruction.

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2.  [Preclinical imaging in animal models of radiation therapy].

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3.  A low memory cost model based reconstruction algorithm exploiting translational symmetry for photoacustic microscopy.

Authors:  Juan Aguirre; Alexia Giannoula; Taisuke Minagawa; Lutz Funk; Pau Turon; Turgut Durduran
Journal:  Biomed Opt Express       Date:  2013-11-12       Impact factor: 3.732

4.  Intraoperative diagnostics and elimination of residual microtumours with plasmonic nanobubbles.

Authors:  Ekaterina Y Lukianova-Hleb; Yoo-Shin Kim; Ihor Belatsarkouski; Ann M Gillenwater; Brian E O'Neill; Dmitri O Lapotko
Journal:  Nat Nanotechnol       Date:  2016-02-15       Impact factor: 39.213

Review 5.  Tissue distribution studies of protein therapeutics using molecular probes: molecular imaging.

Authors:  Simon-Peter Williams
Journal:  AAPS J       Date:  2012-03-31       Impact factor: 4.009

Review 6.  [The world of light in diagnostic medicine : Current developments in optical imaging].

Authors:  Ingrid Hilger
Journal:  Radiologie (Heidelb)       Date:  2022-05-20

7.  Topical application of activity-based probes for visualization of brain tumor tissue.

Authors:  Jennifer L Cutter; Nathan T Cohen; Jing Wang; Andrew E Sloan; Alan R Cohen; Ashok Panneerselvam; Mark Schluchter; Galia Blum; Matthew Bogyo; James P Basilion
Journal:  PLoS One       Date:  2012-03-13       Impact factor: 3.240

8.  Doxycycline Inducible Melanogenic Vaccinia Virus as Theranostic Anti-Cancer Agent.

Authors:  Lorenz Kirscher; Xosé Luis Deán-Ben; Miriam Scadeng; Angelika Zaremba; Qian Zhang; Christina Kober; Thomas Felix Fehm; Daniel Razansky; Vasilis Ntziachristos; Jochen Stritzker; Aladar A Szalay
Journal:  Theranostics       Date:  2015-06-15       Impact factor: 11.556

9.  Image analysis and processing methods in verifying the correctness of performing low-invasive esthetic medical procedures.

Authors:  Robert Koprowski; Slawomir Wilczyński; Arkadiusz Samojedny; Zygmunt Wróbel; Anna Deda
Journal:  Biomed Eng Online       Date:  2013-06-09       Impact factor: 2.819

10.  A novel method to quantify IRDye800CW fluorescent antibody probes ex vivo in tissue distribution studies.

Authors:  Sabrina Oliveira; Ruth Cohen; Marijke Stigter-van Walsum; Guus Ams van Dongen; Sjoerd G Elias; Paul J van Diest; Willem Mali; Paul Mp van Bergen En Henegouwen
Journal:  EJNMMI Res       Date:  2012-09-25       Impact factor: 3.138

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