Literature DB >> 20643025

Novel intraoperative near-infrared fluorescence camera system for optical image-guided cancer surgery.

J Sven D Mieog1, Alexander L Vahrmeijer, Merlijn Hutteman, Joost R van der Vorst, Maurits Drijfhout van Hooff, Jouke Dijkstra, Peter J K Kuppen, Rob Keijzer, Eric L Kaijzel, Ivo Que, Cornelis J H van de Velde, Clemens W G M Löwik.   

Abstract

Current methods of intraoperative tumor margin detection using palpation and visual inspection frequently result in incomplete resections, which is an important problem in surgical oncology. Therefore, real-time visualization of cancer cells is needed to increase the number of patients with a complete tumor resection. For this purpose, near-infrared fluorescence (NIRF) imaging is a promising technique. Here we describe a novel, handheld, intraoperative NIRF camera system equipped with a 690 nm laser; we validated its utility in detecting and guiding resection of cancer tissues in two syngeneic rat models. The camera system was calibrated using an activated cathepsin-sensing probe (ProSense, VisEn Medical, Woburn, MA). Fluorescence intensity was strongly correlated with increased activated-probe concentration (R2= .997). During the intraoperative experiments, a camera exposure time of 10 ms was used, which provided the optimal tumor to background ratio. Primary mammary tumors (n = 20 tumors) were successfully resected under direct fluorescence guidance. The tumor to background ratio was 2.34 using ProSense680 at 10 ms camera exposure time. The background fluorescence of abdominal organs, in particular liver and kidney, was high, thereby limiting the ability to detect peritoneal metastases with cathepsin-sensing probes in these regions. In conclusion, we demonstrated the technical performance of this new camera system and its intraoperative utility in guiding resection of tumors.

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Year:  2010        PMID: 20643025

Source DB:  PubMed          Journal:  Mol Imaging        ISSN: 1535-3508            Impact factor:   4.488


  18 in total

1.  Review of fluorescence guided surgery visualization and overlay techniques.

Authors:  Jonathan T Elliott; Alisha V Dsouza; Scott C Davis; Jonathan D Olson; Keith D Paulsen; David W Roberts; Brian W Pogue
Journal:  Biomed Opt Express       Date:  2015-09-03       Impact factor: 3.732

Review 2.  The clinical use of indocyanine green as a near-infrared fluorescent contrast agent for image-guided oncologic surgery.

Authors:  Boudewijn E Schaafsma; J Sven D Mieog; Merlijn Hutteman; Joost R van der Vorst; Peter J K Kuppen; Clemens W G M Löwik; John V Frangioni; Cornelis J H van de Velde; Alexander L Vahrmeijer
Journal:  J Surg Oncol       Date:  2011-04-14       Impact factor: 3.454

3.  Correlating molecular character of NIR imaging agents with tissue-specific uptake.

Authors:  Eric A Owens; Hoon Hyun; Joseph G Tawney; Hak Soo Choi; Maged Henary
Journal:  J Med Chem       Date:  2015-05-08       Impact factor: 7.446

4.  Compact Fluorescence and White Light Imaging System for Intraoperative Visualization of Nerves.

Authors:  Dan Gray; Evgenia Kim; Victoria Cotero; Paul Staudinger; Siavash Yazdanfar; Cristina Tan Hehir
Journal:  Proc SPIE Int Soc Opt Eng       Date:  2012-02-03

Review 5.  Repurposing Molecular Imaging and Sensing for Cancer Image-Guided Surgery.

Authors:  Suman B Mondal; Christine M O'Brien; Kevin Bishop; Ryan C Fields; Julie A Margenthaler; Samuel Achilefu
Journal:  J Nucl Med       Date:  2020-04-17       Impact factor: 10.057

6.  Synthesis and evaluation of a targeted nanoglobular dual-modal imaging agent for MR imaging and image-guided surgery of prostate cancer.

Authors:  Mingqian Tan; Zhen Ye; Daniel Lindner; Susann M Brady-Kalnay; Zheng-Rong Lu
Journal:  Pharm Res       Date:  2013-03-08       Impact factor: 4.200

7.  Ex vivo sentinel node mapping in colon cancer combining blue dye staining and fluorescence imaging.

Authors:  Boudewijn E Schaafsma; Floris P R Verbeek; Joost R van der Vorst; Merlijn Hutteman; Peter J K Kuppen; John V Frangioni; Cornelis J H van de Velde; Alexander L Vahrmeijer
Journal:  J Surg Res       Date:  2013-01-25       Impact factor: 2.192

Review 8.  Real-time fluorescence image-guided oncologic surgery.

Authors:  Suman B Mondal; Shengkui Gao; Nan Zhu; Rongguang Liang; Viktor Gruev; Samuel Achilefu
Journal:  Adv Cancer Res       Date:  2014       Impact factor: 6.242

9.  Dual-mode laparoscopic fluorescence image-guided surgery using a single camera.

Authors:  Daniel C Gray; Evgenia M Kim; Victoria E Cotero; Anshika Bajaj; V Paul Staudinger; Cristina A Tan Hehir; Siavash Yazdanfar
Journal:  Biomed Opt Express       Date:  2012-07-17       Impact factor: 3.732

10.  Characterization and evaluation of the artemis camera for fluorescence-guided cancer surgery.

Authors:  P B A A van Driel; M van de Giessen; M C Boonstra; T J A Snoeks; S Keereweer; S Oliveira; C J H van de Velde; B P F Lelieveldt; A L Vahrmeijer; C W G M Löwik; J Dijkstra
Journal:  Mol Imaging Biol       Date:  2015-06       Impact factor: 3.488

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