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使用A型肉毒毒素治疗眉间纹时的优化美学效果:GLO 3 + 2:一种基于解剖学的精确技术。

Optimized Aesthetic Outcomes When Treating Glabellar Lines with Botulinum Toxin Type A: GLO 3 + 2: A Precise Technique Based on Anatomy.

作者信息

Solish Nowell, Kane Michael A C, Brown Jessica, Gallagher Conor J

机构信息

From the Division of Dermatology, University of Toronto, Toronto, Ontario, Canada.

Department of Plastic Surgery, Manhattan Eye, Ear, and Throat Hospital, New York, N. Y.

出版信息

Plast Reconstr Surg Glob Open. 2024 Mar 4;12(3):e5650. doi: 10.1097/GOX.0000000000005650. eCollection 2024 Mar.

Abstract

Good patient outcomes after treatment of the glabellar complex with botulinum toxin type A entail elimination of glabellar lines and maintenance of a natural eyebrow position. A precise injection technique that accurately targets the muscles that influence eyebrow position is required to reduce the risk of adverse aesthetic outcomes or unmasking an underlying eyelid ptosis. Here, we describe the glabellar lines optimization (GLO 3 + 2) injection anatomy technique, a precise five-point injection pattern that is based on current understanding of facial functional anatomy and which aims to minimize the risk of affecting nontargeted muscles. Injection sites above the brow or that do not target the precise location of the muscles in the glabellar complex are likely to inadvertently expose the frontalis to botulinum toxin type A and result in undesirable aesthetic outcomes. Because the frontalis is a strong determinant of aesthetic outcomes, it is important to consider the overall effects of the interactions between the eyebrow depressors and the opposing forces of the frontalis on brow outcomes in both the resting brow position and during dynamic brow movement.

摘要

用A型肉毒毒素治疗眉间复合体后获得良好的患者预后,需要消除眉间纹并维持自然的眉毛位置。为降低不良美学效果或暴露潜在眼睑下垂的风险,需要一种精确的注射技术,准确靶向影响眉毛位置的肌肉。在此,我们描述眉间纹优化(GLO 3+2)注射解剖技术,这是一种精确的五点注射模式,基于对面部功能解剖的当前理解,旨在将影响非靶向肌肉的风险降至最低。眉上方的注射部位或未靶向眉间复合体中肌肉精确位置的注射部位,可能会无意中使额肌暴露于A型肉毒毒素并导致不理想的美学效果。由于额肌是美学效果的重要决定因素,因此在静止眉位和动态眉运动期间,考虑眉下压肌与额肌的相反力量之间相互作用对眉部效果的总体影响非常重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/33d2/10911519/281ba03094b9/gox-12-e5650-g001.jpg

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