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Application of Indocyanine Green Videoangiography in Aneurysm Surgery: Evidence, Techniques, Practical Tips.

作者信息

Norat Pedro, Soldozy Sauson, Elsarrag Mazin, Sokolowski Jennifer, Yaǧmurlu Kaan, Park Min S, Tvrdik Petr, Kalani M Yashar S

机构信息

Department of Neurological Surgery, University of Virginia Health System, Charlottesville, VA, United States.

出版信息

Front Surg. 2019 Jun 20;6:34. doi: 10.3389/fsurg.2019.00034. eCollection 2019.


DOI:10.3389/fsurg.2019.00034
PMID:31281818
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6596320/
Abstract

Establishing blood vessel patency in neurovascular surgery is an essential component in treating cerebrovascular disorders. Given the difficulty in confirming complete obliteration of the aneurysm sac, ICG videoangiography has emerged as an intraoperative tool that provides neurosurgeons immediate feedback on the status of vessel flow, allowing for surgical modifications to be made without delay. ICG initially emerged as a tool for assessing hepatic, cardiac, and retinovascular function. It is an inert compound with a high affinity for plasma proteins and fluorescence properties making it the ideal candidate for assessment of vessel patency in neurovascular procedures. Requiring only a bolus peripheral vein injection and integration of a near-infrared imaging device into the surgical microscope, ICG can be visualized without disrupting operating room workflow or the surgical field. Quick response time, high-spatial resolution, and low complication rates are features of ICG videoangiography that prove advantageous when compared to the gold standard intra- and postoperative digital subtraction angiography (DSA). Despite this, ICG is not without limitations, specifically in the setting of atherosclerotic vessels, giant, and complex aneurysms. Additionally, there are instances where DSA may prove superior in detecting vessel stenosis and outflow obstruction, prompting the recommendation of ICG as an adjunct to, rather than complete replacement of DSA. In this article, the authors provide a brief overview of the biochemical properties and historical origins of ICG viedoangiography in addition to discussing its current application in aneurysm surgery.

摘要
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3688/6596320/43fd50527f95/fsurg-06-00034-g0003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3688/6596320/39ae2c565aae/fsurg-06-00034-g0001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3688/6596320/b3bf202b8c47/fsurg-06-00034-g0002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3688/6596320/43fd50527f95/fsurg-06-00034-g0003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3688/6596320/39ae2c565aae/fsurg-06-00034-g0001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3688/6596320/b3bf202b8c47/fsurg-06-00034-g0002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3688/6596320/43fd50527f95/fsurg-06-00034-g0003.jpg

相似文献

[1]
Application of Indocyanine Green Videoangiography in Aneurysm Surgery: Evidence, Techniques, Practical Tips.

Front Surg. 2019-6-20

[2]
Prospective evaluation of surgical microscope-integrated intraoperative near-infrared indocyanine green videoangiography during aneurysm surgery.

J Neurosurg. 2005-12

[3]
The role of microscope-integrated near-infrared indocyanine green videoangiography in the surgical treatment of intracranial dural arteriovenous fistulas.

J Neurosurg. 2015-4

[4]
Comparing indocyanine green videoangiography to the gold standard of intraoperative digital subtraction angiography used in aneurysm surgery.

J Neurosurg. 2012-11-16

[5]
A prospective comparative study of microscope-integrated intraoperative fluorescein and indocyanine videoangiography for clip ligation of complex cerebral aneurysms.

J Neurosurg. 2015-3

[6]
The utility and limitations of intraoperative near-infrared indocyanine green videoangiography in aneurysm surgery.

World Neurosurg. 2014-6-4

[7]
Intraoperative control of extracranial-intracranial bypass patency by near-infrared indocyanine green videoangiography.

J Neurosurg. 2005-4

[8]
[Effects of surgical microscope-based indocyanine green videoangiography during aneurysm surgery].

Zhonghua Yi Xue Za Zhi. 2009-1-20

[9]
Essentials in intraoperative indocyanine green videoangiography assessment for intracranial aneurysm surgery: conclusions from 295 consecutively clipped aneurysms and review of the literature.

Neurosurg Focus. 2014-2

[10]
The impact of microscope-integrated intraoperative near-infrared indocyanine green videoangiography on surgery of arteriovenous malformations and dural arteriovenous fistulae.

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[5]
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[6]
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[7]
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[8]
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[9]
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[10]
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本文引用的文献

[1]
The Application of FLOW 800 ICG Videoangiography Color Maps for Neurovascular Surgery and Intraoperative Decision Making.

World Neurosurg. 2019-2

[2]
Microsurgical Clipping of Intracranial Aneurysms Assisted by Neurophysiological Monitoring, Microvascular Flow Probe, and ICG-VA: Outcomes and Intraoperative Data on a Multimodal Strategy.

World Neurosurg. 2018-5

[3]
Indocyanine Green Videoangiography in Aneurysm Surgery: Systematic Review and Meta-Analysis.

Neurosurgery. 2018-8-1

[4]
Indocyanine Green Videoangiography for Surgery of a Ruptured Dissecting Aneurysm in the Precommunicating Anterior Cerebral Artery: A Technical Case Report.

Oper Neurosurg (Hagerstown). 2017-8-1

[5]
Keyhole Approach and Neuroendoscopy for Cerebral Aneurysms.

J Korean Neurosurg Soc. 2017-5

[6]
Intraoperative Fluorescence Imaging for Personalized Brain Tumor Resection: Current State and Future Directions.

Front Surg. 2016-10-17

[7]
Endoscopic Fluorescence Angiography with Indocyanine Green : A Preclinical Study in the Swine.

J Korean Neurosurg Soc. 2015-12

[8]
Indocyanine Green: Historical Context, Current Applications, and Future Considerations.

Surg Innov. 2016-4

[9]
Fluorescence in robotic surgery.

J Surg Oncol. 2015-9

[10]
Impact of indocyanine green videoangiography on rate of clip adjustments following intraoperative angiography.

Neurosurgery. 2014-10

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