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用于面部动脉可视化的红外热增强三维飞行时间磁共振血管造影成像

Infrared Thermally Enhanced 3-Dimensional Time of Flight Magnetic Resonance Angiography Imaging for the Visualization of the Arteries of the Face.

作者信息

Hendrickx Benoit, Waked Karl, Mespreuve Marc

机构信息

Department of Plastic and Reconstructive Surgery, AZ Zeno, Knokke-Heist, Belgium.

Department of Plastic and Reconstructive Surgery, UZ Brussel, Jette, Belgium.

出版信息

Aesthet Surg J Open Forum. 2020 May 11;2(2):ojaa020. doi: 10.1093/asjof/ojaa020. eCollection 2020 Jun.

Abstract

BACKGROUND

The face is known for its extreme variation in vascular anatomy. Furthermore, the rapidly increasing number of filler treatments leads to an increase in severe filler-associated complications (such as skin necrosis and blindness) due to intra-arterial injection. Visualizing a patient's individual complete facial arterial anatomy in a contrast- and radiation-free way has not been published before. This innovative imaging technique could, therefore, enhance the safety of minimally invasive surgical procedures as it provides a harmless way to map the arteries of the face.

OBJECTIVES

Evaluate a newly developed imaging technique to visualize the arteries of the face in a noninvasive and radiation-free manner.

METHODS

The individual arterial facial anatomy of 20 volunteers was studied by an imaging technique, combining infrared (IR) facial warming and 3-dimensional (3D) time of flight (TOF) magnetic resonance angiography (MRA). The source and maximum intensity projection images were assessed by 2 investigators, familiar with the anatomy of the face.

RESULTS

The MRA technique visualized most of the main facial arteries, albeit in a variable way. The main facial branches of the external carotid artery (facial, angular, supralabial, and superficial temporal arteries) were illustrated well, whereas the visualization of the internal carotid branches (supratrochlear and supraorbital arteries) and nasal branches (dorsal nasal and lateral nasal arteries) was less consistent.

CONCLUSIONS

The combination of IR "heat-induced enhancement" and a 3D-TOF MRA sequence may actually be an important step toward the visualization of the variable facial vascular anatomy in a noninvasive, radiation-free, and contrast-free manner.

摘要

背景

面部血管解剖结构差异极大。此外,填充剂治疗数量的迅速增加导致因动脉内注射而引发的严重填充剂相关并发症(如皮肤坏死和失明)增多。此前尚未有以无造影剂和无辐射的方式可视化患者个体完整面部动脉解剖结构的报道。因此,这种创新的成像技术可以提高微创手术的安全性,因为它提供了一种无害的面部动脉成像方法。

目的

评估一种新开发的成像技术,以无创且无辐射的方式可视化面部动脉。

方法

采用一种结合红外(IR)面部加热和三维(3D)时间飞跃(TOF)磁共振血管造影(MRA)的成像技术,对20名志愿者的个体面部动脉解剖结构进行研究。由两名熟悉面部解剖结构的研究人员评估源图像和最大强度投影图像。

结果

MRA技术以可变方式可视化了大部分主要面部动脉。颈外动脉的主要面部分支(面动脉、内眦动脉、上唇动脉和颞浅动脉)显示良好,而颈内动脉分支(滑车上动脉和眶上动脉)和鼻部分支(鼻背动脉和鼻外侧动脉)的可视化效果不太一致。

结论

IR“热诱导增强”与3D-TOF MRA序列的结合实际上可能是朝着以无创、无辐射和无造影剂的方式可视化可变面部血管解剖结构迈出的重要一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f9b/7671261/0a1f20cd23f5/ojaa020f0001.jpg

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