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Research ArticleNEUROINTERVENTION

Tumor Embolization via the Meningohypophyseal and Inferolateral Trunk in Patients with Skull Base Tumors Using the Distal Balloon Protection Technique

Kei Yamashiro, Motoharu Hayakawa, Kazuhide Adachi, Mitsuhiro Hasegawa and Yuichi Hirose
American Journal of Neuroradiology April 2024, DOI: https://doi.org/10.3174/ajnr.A8169
Kei Yamashiro
aFrom the Department of Neurosurgery (K.Y., M. Hayakawa), Fujita Health University Okazaki Medical Center, Okazaki, Aichi, Japan
bDepartment of Neurosurgery (K.Y., M. Hayakawa, K.A., Y.H.), Fujita Health University, Toyoake, Aichi, Japan
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Motoharu Hayakawa
aFrom the Department of Neurosurgery (K.Y., M. Hayakawa), Fujita Health University Okazaki Medical Center, Okazaki, Aichi, Japan
bDepartment of Neurosurgery (K.Y., M. Hayakawa, K.A., Y.H.), Fujita Health University, Toyoake, Aichi, Japan
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Kazuhide Adachi
bDepartment of Neurosurgery (K.Y., M. Hayakawa, K.A., Y.H.), Fujita Health University, Toyoake, Aichi, Japan
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Mitsuhiro Hasegawa
cTokyo D-tower Hospital (M. Hasegawa), Tokyo, Japan
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Yuichi Hirose
bDepartment of Neurosurgery (K.Y., M. Hayakawa, K.A., Y.H.), Fujita Health University, Toyoake, Aichi, Japan
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    FIG 1.

    Schematic representation of tumor embolization using the distal balloon protection technique. First, a GC is placed in the ICA (A). Then, the balloon catheter is guided to the proximity of the bifurcation of the ophthalmic artery (B). Next, a microcatheter is inserted into the MHT or ILT (C). If cannulation is difficult, the microcatheter is guided near the orifice of the MHT or ILT. The balloon is then inflated to occlude the internal carotid and ophthalmic arteries (D). The embolic particles are injected from the microcatheter into the MHT or ILT (E). BC indicates balloon catheter; MC, microcatheter.

  • FIG 2.
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    FIG 2.

    Schematic representation of aspiration and removal of embolic particle reflux into the internal carotid artery. In the GC method, embolic particles are aspirated and removed using the CG, while the ICA is occluded with a balloon (A). In the AC method, a GC different from the one used for embolization is placed in the common carotid artery (for convenience, the GC is depicted in the ICA), and the AC is guided to the vicinity of the meningohypophyseal or inferolateral trunk to aspirate and remove embolic particles (B). In the AC and FR method, after aspiration and removal of embolic particles by the aspiration method, the balloon GC is inflated to reverse blood flow in the ICA to remove embolic particles more reliably (C). BC indicates balloon catheter; BGC, balloon guide catheter.

  • FIG 3.
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    FIG 3.

    A case of tumor embolization via the MHT using the distal balloon protection technique. Preoperative tumor embolization was performed for a right falcotentorial meningioma through the right MHT (A and B). In this case, the microcatheter was guided to the vicinity of the orifice of the MHT because cannulation of the microcatheter into the MHT was not possible (C). Next, the ICA and ophthalmic artery were occluded with a balloon (C), and the MHT was embolized with embolic particles. After embolization, the AC was guided to the vicinity of the MHT to aspirate and remove the embolic particles. This step was followed by inflating the balloon GC and deflating the balloon catheter to reverse blood flow in the ICA to remove the embolic particles (D). Finally, complete embolization of the MHT was confirmed (E). Postoperative MR imaging showed no embolic cerebral infarction (F). The black arrow indicates the ophthalmic artery; black arrowhead, MHT; single asterisk, balloon catheter; double asterisk, balloon GC.

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Cite this article
Kei Yamashiro, Motoharu Hayakawa, Kazuhide Adachi, Mitsuhiro Hasegawa, Yuichi Hirose
Tumor Embolization via the Meningohypophyseal and Inferolateral Trunk in Patients with Skull Base Tumors Using the Distal Balloon Protection Technique
American Journal of Neuroradiology Apr 2024, DOI: 10.3174/ajnr.A8169

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Tumor Embolization via the Meningohypophyseal and Inferolateral Trunk in Patients with Skull Base Tumors Using the Distal Balloon Protection Technique
Kei Yamashiro, Motoharu Hayakawa, Kazuhide Adachi, Mitsuhiro Hasegawa, Yuichi Hirose
American Journal of Neuroradiology Apr 2024, DOI: 10.3174/ajnr.A8169
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  • Comprehensive analysis of the distribution of dural artery-derived tumor-feeding arteries in intracranial meningiomas
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    Acta Neurochirurgica 2025 167 1
  • Embolization of Posterior Fossa Meningiomas Supplied with Meningohypophyseal Trunk by Usingn-BCA and Dual Balloon Protection
    Jota Tega, Koichiro Takemoto, Takayuki Koga, Dai Kawano, Shintaro Yoshinaga, Hideaki Tanaka, Kei Yamashiro, Toshiyuki Enomoto, Hironori Fukumoto, Yoshinobu Horio, Hiromasa Kobayashi, Takashi Morishita, Mitsutoshi Iwaasa, Hiroshi Abe
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