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AJNR Awards, New Junior Editors, and more. Read the latest AJNR updates

Research ArticleNeurointervention

Microcatheter Originating Debris during Neuroendovascular Procedures: Mechanism of Dislodgement and Its Prevention

I. Kan, K. Karagiozov, S. Ito, S. Sato and Y. Murayama
American Journal of Neuroradiology October 2020, 41 (10) 1879-1881; DOI: https://doi.org/10.3174/ajnr.A6723
I. Kan
aFrom the Departments of Neurosurgery (I.K., K.K., Y.M.)
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K. Karagiozov
aFrom the Departments of Neurosurgery (I.K., K.K., Y.M.)
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S. Ito
bPathology (S.I., S.S.), The Jikei University Hospital, Tokyo, Japan
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S. Sato
bPathology (S.I., S.S.), The Jikei University Hospital, Tokyo, Japan
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Y. Murayama
aFrom the Departments of Neurosurgery (I.K., K.K., Y.M.)
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Abstract

SUMMARY: Embolic material dislodgement from microcatheters can potentially induce subclinical brain damage as evidenced by a delayed enhanced or other type of lesions. Some of the most frequently used microcatheters were investigated in vitro in different setups and combinations with different port insertions and rotating hemostatic valves. It was found that side port application increases injury to the catheter surface and debris dislodgement by conflicting with internal ledges in rotating hemostatic valves. This initial observation suggests the need for measures to remove the produced debris during such procedures.

ABBREVIATIONS:

DEL
delayed enhanced lesion
FTIR
Fourier-transform infrared
RHV
rotating hemostatic valve
  • © 2020 by American Journal of Neuroradiology
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American Journal of Neuroradiology: 41 (10)
American Journal of Neuroradiology
Vol. 41, Issue 10
1 Oct 2020
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I. Kan, K. Karagiozov, S. Ito, S. Sato, Y. Murayama
Microcatheter Originating Debris during Neuroendovascular Procedures: Mechanism of Dislodgement and Its Prevention
American Journal of Neuroradiology Oct 2020, 41 (10) 1879-1881; DOI: 10.3174/ajnr.A6723

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Microcatheter Originating Debris during Neuroendovascular Procedures: Mechanism of Dislodgement and Its Prevention
I. Kan, K. Karagiozov, S. Ito, S. Sato, Y. Murayama
American Journal of Neuroradiology Oct 2020, 41 (10) 1879-1881; DOI: 10.3174/ajnr.A6723
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