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通过增强现实技术可视化面部的个体动脉解剖结构——真皮填充剂注射过程中的一种有用且准确的工具。

Visualizing the Individual Arterial Anatomy of the Face Through Augmented Reality- A Useful and Accurate Tool During Dermal Filler Injections.

作者信息

Waked Karl, Mespreuve Marc, De Ranter Joris, Collard Barbara, Hahn Stephan, Hendrickx Benoit

出版信息

Aesthet Surg J Open Forum. 2022 Feb 18;4:ojac012. doi: 10.1093/asjof/ojac012. eCollection 2022.

Abstract

BACKGROUND

The arterial anatomy of the face is extremely variable. Despite numerous cadaver dissections and anatomical descriptions, the exact location of the superficial facial arteries remains unpredictable. This ignorance is a determining factor in the pathophysiology of intravascular filler injections, potentially causing skin necrosis and blindness.

OBJECTIVES

The main objective of this study is to evaluate the accuracy of an augmented reality (AR) application that visualizes the individual arterial anatomy of the face.

METHODS

A workflow was developed during which a magnetic resonance angiography (MRA) mapped the superficial arteries of the face. The images were further processed into an AR image that was visualized on the patient's face using a specifically designed smartphone application. The accuracy of the AR image and the position of each individual artery were analyzed using duplex ultrasound (US).

RESULTS

A total of 216 facial arteries were visualized in 20 patients. The superficial temporal (100%), supratrochlear (92.5%), facial (75%), and angular (82.5%) arteries were visualized the most. The inferior labial (17.5%), dorsal nasal (22.5%), and supraorbital (42.5%) arteries were the most difficult to visualize through MRA. The average deviation between the artery visible on the AR image and the location assessed by US was 0.30 mm (standard deviation = +/- 0.66 mm). There were no complications reported.

CONCLUSIONS

The combination of a risk-free MRA to map the individual arteries of the face and the processing into an AR image may be considered as a useful and accurate tool during dermal filler injections to potentially minimize the risk of intravascular filler injections.

摘要

背景

面部动脉解剖结构极具变异性。尽管有大量尸体解剖和解剖学描述,但面浅动脉的确切位置仍无法预测。这种认知不足是血管内填充剂注射病理生理学中的一个决定性因素,可能导致皮肤坏死和失明。

目的

本研究的主要目的是评估一种增强现实(AR)应用程序对面部个体动脉解剖结构可视化的准确性。

方法

开发了一种工作流程,在此过程中,磁共振血管造影(MRA)对面部浅动脉进行成像。图像进一步处理成AR图像,使用专门设计的智能手机应用程序在患者面部进行可视化。使用双功超声(US)分析AR图像的准确性和每条动脉的位置。

结果

20例患者共可视化216条面部动脉。颞浅动脉(100%)、滑车上动脉(92.5%)、面动脉(75%)和内眦动脉(82.5%)可视化率最高。通过MRA最难可视化的是下唇动脉(17.5%)、鼻背动脉(22.5%)和眶上动脉(42.5%)。AR图像上可见的动脉与US评估位置之间的平均偏差为0.30毫米(标准差=±0.66毫米)。未报告并发症。

结论

将无风险的MRA用于绘制面部个体动脉并处理成AR图像,可被视为在真皮填充剂注射过程中一种有用且准确的工具,有可能将血管内填充剂注射的风险降至最低。

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