Deployment of the Ophthalmic and Facial Angiosomes in the Upper Nose Overlaying the Nasal Bones.


Journal

Aesthetic surgery journal
ISSN: 1527-330X
Titre abrégé: Aesthet Surg J
Pays: England
ID NLM: 9707469

Informations de publication

Date de publication:
12 11 2021
Historique:
pubmed: 10 1 2021
medline: 25 11 2021
entrez: 9 1 2021
Statut: ppublish

Résumé

Nasal filler placement is associated with a high risk of blindness. The arterial supply to the upper nose overlaying the nasal bones is poorly understood. The aim of this study was to visualize and analyze the deployment of the ophthalmic and facial angiosomes in the upper nose to help prevent blindness following nasal filler injections. The arterial systems of 62 cadaveric heads were filled with lead oxide contrast agent, and computed tomography (CT) images were acquired and reconstructed in 3 dimensions. Twenty-six of the cadaveric noses examined demonstrated clear CT images of the facial and ophthalmic angiosomes in the upper nose. The Type 1 upper nose (15.4%) is supplied by 2 independent ophthalmic angiosomes that communicate indirectly through a choke anastomosis. The Type 2 upper nose (38.5%) is supplied by 2 ophthalmic angiosomes with a true anastomosis between them. The Type 3 upper nose (46.1%) is supplied by both ophthalmic and facial angiosomes with true anastomoses across the dorsal midline. These true anastomoses are mediated by the radix arcade in 46% of the noses and involve the dorsal nasal artery in 65% of the cases. The anastomoses all cross the upper dorsal midline and are directly linked to the ophthalmic angiosome. The deployment and anastomosis of the facial and ophthalmic angiosomes in the upper nose fall into 3 major patterns. About 85% of the noses have true anastomotic arteries that cross the upper dorsal midline and are directly linked to the ophthalmic circulation. Dorsum filler injection poses a significant risk of blindness.

Sections du résumé

BACKGROUND
Nasal filler placement is associated with a high risk of blindness. The arterial supply to the upper nose overlaying the nasal bones is poorly understood.
OBJECTIVES
The aim of this study was to visualize and analyze the deployment of the ophthalmic and facial angiosomes in the upper nose to help prevent blindness following nasal filler injections.
METHODS
The arterial systems of 62 cadaveric heads were filled with lead oxide contrast agent, and computed tomography (CT) images were acquired and reconstructed in 3 dimensions.
RESULTS
Twenty-six of the cadaveric noses examined demonstrated clear CT images of the facial and ophthalmic angiosomes in the upper nose. The Type 1 upper nose (15.4%) is supplied by 2 independent ophthalmic angiosomes that communicate indirectly through a choke anastomosis. The Type 2 upper nose (38.5%) is supplied by 2 ophthalmic angiosomes with a true anastomosis between them. The Type 3 upper nose (46.1%) is supplied by both ophthalmic and facial angiosomes with true anastomoses across the dorsal midline. These true anastomoses are mediated by the radix arcade in 46% of the noses and involve the dorsal nasal artery in 65% of the cases. The anastomoses all cross the upper dorsal midline and are directly linked to the ophthalmic angiosome.
CONCLUSIONS
The deployment and anastomosis of the facial and ophthalmic angiosomes in the upper nose fall into 3 major patterns. About 85% of the noses have true anastomotic arteries that cross the upper dorsal midline and are directly linked to the ophthalmic circulation. Dorsum filler injection poses a significant risk of blindness.

Identifiants

pubmed: 33421060
pii: 6075337
doi: 10.1093/asj/sjab003
doi:

Substances chimiques

Dermal Fillers 0

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

NP1975-NP1985

Commentaires et corrections

Type : CommentIn

Informations de copyright

© 2021 The Aesthetic Society. Reprints and permission: journals.permissions@oup.com.

Auteurs

Bing Cai (B)

Department of Plastic and Reconstructive Surgery, Department of Radiology, Guang Dong Second Provincial General Hospital, Guangzhou City, China.

Rong Yuan (R)

Department of Plastic and Reconstructive Surgery, Department of Radiology, Guang Dong Second Provincial General Hospital, Guangzhou City, China.

Guo-Zhang Zhu (GZ)

Department of Plastic and Reconstructive Surgery, Department of Radiology, Guang Dong Second Provincial General Hospital, Guangzhou City, China.

Wen-Feng Zhan (WF)

Department of Radiology, Guang Dong Second Provincial General Hospital, Guangzhou City, China.

Cheng-En Luo (CE)

Department of Plastic and Reconstructive Surgery, Department of Radiology, Guang Dong Second Provincial General Hospital, Guangzhou City, China.

Xiang-Xue Kong (XX)

Department of Plastic and Reconstructive Surgery, Department of Radiology, Guang Dong Second Provincial General Hospital, Guangzhou City, China.

Sheng-Kang Luo (SK)

Department of Plastic and Reconstructive Surgery, Department of Radiology, Guang Dong Second Provincial General Hospital, Guangzhou City, China.

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Classifications MeSH